论文著作

  年份: 文章类型:
  1. Weiting Jiang, Guoliang Ding, Hao Peng, Yifeng Gao, Kaijian Wang .Experimental and model research on nanorefrigerant thermal conductivity.HVAC&R Research, 2009, 15 (3): 651-669 . 2024. DOI:
  2. Shaohua Zhou, Feilong Zhan, Guoliang Ding .Experimental investigation on two-phase flow noise characteristics of R410A through electronic expansion valve of multi-split air conditioner.International Journal of Refrigeration, Volume 146, February 2023, Pages 327-340. 2023. DOI:
  3. Liyi Xie, Dawei Zhuang, Guoliang Ding .Stratification and heat transfer characteristics of partially miscible lubricating oil-refrigerant mixtures during pool boiling.Applied Thermal Engineering, Volume 215, October 2022, 118923. 2022. DOI:
  4. Feilong Zhan, Guoliang Ding, Lu Liu .Experimental investigation on water vapor permeability in porous dust layers on cold fin surface of heat exchanger.International Journal of Refrigeration, Volume 141, September 2022, Pages 43-53. 2022. DOI:
  5. Feilong Zhan, Guoliang Ding, Lu Liu .Experimental investigation on water vapor permeability in porous dust layers on cold fin surface of heat exchanger.International Journal of Refrigeration, Volume 141, September 2022, Pages 43-53. 2022. DOI:
  6. Faxian Zhou,Tianhong Lu, Dawei Zhuang, Guoliang Ding .Experimental study of condensation heat transfer characteristics on metal foam wrapped tubes under sloshing conditions.International Journal of Heat and Mass Transfer, Volume 176, September 2021, 121394. 2021. DOI:
  7. Guocheng Yang, Guoliang Ding, Jie Chen, Wengang Yang,  .Shell side condensation heat transfer characteristics of ethane/propane mixtures. .Applied Thermal Engineering, Volume 194, 25 July 2021, 117017. 2021. DOI:
  8. Guanghui Xia, Dawei Zhuang, GuoliangDing, Jingchao Lu, Weizhe Han, Hanyun Qi .A distributed parameter model for multi-row separated heat pipe with micro-channel heat exchangers.Applied Thermal Engineering, Volume 182, 5 January 2021, 116113. 2021. DOI:
  9. Jiawen Hu, Chengcheng Shan, Jianhong Wu, Aili Zhang, Guoliang Ding, Lisa X. Xu .A cooperative ceiling air supply method to satisfy personal thermal preferences in a discretionary indoor position.Journal of Building Engineering, September 2020, 101367.. 2020. DOI:
  10. Faxian Zhou, Dawei Zhuang, Tianhong Lu, Guoliang Ding .Observation and modeling of droplet shape on metal fiber with gravity effect. International Journal of Heat and Mass Transfer, Volume 161, November 2020, 120294. 2020. DOI:
  11. Guanghui Xia, Dawei Zhuang, Guoliang Ding, Jingchao Lu .A quasi-three-dimensional distributed parameter model of micro-channel separated heat pipe applied for cooling telecommunication cabinets.Applied Energy, Volume 276, 15 October 2020, 115544. 2020. DOI:
  12. Yifei Yang, Dawei Zhuang, Guoliang Ding, Feilong Zhan .Numerical model of dusty-water bridge forming between neighbor fins of fin-and-tube heat exchangers.International Journal of Refrigeration, Volume 117, September 2020, Pages 163-174. 2020. DOI:
  13. Faxian Zhou, Tianhong Lu, Guoliang Ding Guocheng Yang. .Experimental research on flow mode transition of falling film flow on metal foam wrapped tubes.Experimental Thermal and Fluid Science, Volume 118, 1 October 2020, 110154. 2020. DOI:
  14. Dawei Zhuang, Yifei Yang, Guoliang Ding, Xinyuan Du, Zuntao Hu .Optimization of Microchannel Heat Sink with Rhombus Fractal-like Units for Electronic Chip Cooling.International Journal of Refrigeration, Volume 116, August 2020, Pages 108-118. 2020. DOI:
  15. Chengcheng Shan, Jiawen Hu, Jianhong Wu, Aili Zhang, Guoliang Ding, Lisa X. Xu .Towards non-intrusive and high accuracy prediction of personal thermal comfort using a few sensitive physiological parameters.Energy and Buildings, Volume 207, 15 January 2020, 109594. 2020. DOI:
  16. Feilong Zhan, Guoliang Ding, Dawei Zhuang .Numerical model of particle deposition on wet fin surfaces of heat exchanger under dehumidifying conditions.International Journal of Heat and Mass Transfer, Volume 149, March 2020, 119258. 2020. DOI:
  17. Dawei Zhuang, Yifei Yang, Guoliang Ding, Feilong Zhan .Optimization of fin surface wettability for promoting the dust removal in heat exchangers under frosting-defrosting conditions.International Journal of Refrigeration, Volume 109, January 2020, Pages 143-153. 2020. DOI:
  18. Guoming Wu, Ziteng Yan, Dawei Zhuang, Guoliang Ding, Fali Cao, Jianjun Meng .Design method and application effects of embedded-clapboard distributor on refrigerant distribution among multi-tubes of micro-channel heat exchangers. International Journal of Refrigeration, Volume 119, November 2020, Pages 420-433. 2020. DOI:
  19. Zhongdi Duan, Guoliang Ding, Wenyong Tang, Tao Ren. .A thermodynamic model for predicting transient pressure evolution in response to venting and vaporization of liquefied gas under sudden release.Journal of Hazardous Materials, Volume 395, 5 August 2020, 122460 . 2020. DOI:
  20. Guoming Wu, Bo Yu, Tao Ren, Guoliang Ding .Modeling and experimental investigation on comprehensive performance of perforated wavy fins for heat pump type air conditioners at frosting and non-frosting conditions.Energy and Buildings, Volume 225, 15 October 2020, 110342. 2020. DOI:
  21. Zhiqiang Li, Guoliang Ding, Songtao Miao, Xiaolei Han .Development of novel air distributor for precise control of cooling capacity delivery in multi-compartment indirect cooling household refrigerators.International Journal of Refrigeration, Volume 119, November 2020, Pages 175-183. 2020. DOI:
  22. Guoming Wu, Guoliang Ding, Tao Ren .A fast prediction method for maximum APF of heat pump type air conditioners based on a single group of experimental data.International Journal of Refrigeration, Volume 115, July 2020, Pages 126-138. 2020. DOI:
  23. Haitao Hu, Faxian Zhou, Zhancheng Lai, Guoliang Ding .Influence of surface wettability on liquid drainage characteristics of metal foams under sloshing conditions.International Journal of Refrigeration, Volume 106, 2019, Pages 188-200. 2019. DOI:
  24. Zhancheng Lai, Haitao Hu, Guoliang Ding .Influence of pore density on heat transfer and pressure drop characteristics of wet air in hydrophilic metal foams.Applied Thermal Engineering, Volume 159, 2019, Article 113897. 2019. DOI:
  25. Zhiqiang Li, Xianshun Zeng, Dan Zhao, Guoliang Ding .Schemes and effects on improvement of temperature uniformity inside indirect cooling wine cabinet.Applied Thermal Engineering, Volume 157, 2019, Article 113723. 2019. DOI:
  26. Faxian Zhou, Haitao Hu, Zhancheng Lai, Guoliang Ding .Experimental study on liquid drainage characteristics of metal foams under sloshing conditions.International Journal of Refrigeration, Volume 99, March 2019, Pages 351-362. 2019. DOI:
  27. Guanghui Xia, Dawei Zhuang, Guoliang Ding .Thermal management solution for enclosed controller used in inverter air conditioner based on heat pipe heat sink.International Journal of Refrigeration, Volume 99, March 2019, Pages 69-79. 2019. DOI:
  28. Yifei Yang, Dawei Zhuang, Guoliang Ding .Effect of surface wettability of fins on dust removal by condensate water.International Journal of Heat and Mass Transfer, Volume 130, March 2019, Pages 1260-1271. 2019. DOI:
  29. Lingnan Lin, Zheng Chang, Guoliang Ding .Resuspension of deposited nanoparticles during pool boiling.International Journal of Heat and Mass Transfer, Volume 130, March 2019, Pages 230-239. 2019. DOI:
  30. Zhongdi Duan, Tao Ren, Guoliang Ding .Suppression effects of micro-fin surface on the explosive boiling of liquefied gas under rapid depressurization.Journal of Hazardous Materials, Volume 365, 5 March 2019, Pages 375-385. 2019. DOI:
  31. Haitao Hu, Zhancheng Lai, Guoliang Ding .Influence of surface wettability on heat transfer and pressure drop characteristics of wet air in metal foam under dehumidifying conditions.International Journal of Thermal Sciences, Volume 135, January 2019, Pages 331-343. 2019. DOI:
  32. Haitao Hu, Chao Ding, Guoliang Ding, Jie Chen, Sicong Yu .Heat transfer characteristics of two-phase mixed hydrocarbon refrigerants flow boiling in shell side of LNG spiral wound heat exchanger.International Journal of Heat and Mass Transfer, Volume 131, March 2019, Pages 611-622. 2019. DOI:
  33. Guoming Wu, Tao Ren, Guoliang Ding, .Design and visualized validation of a distributor with uniform refrigerant distribution by forming annular flow.International Journal of Refrigeration, Volume 98, February 2019, Pages 238-248 . 2019. DOI:
  34. Haoran Sun, Haitao Hu, Guoliang Ding, Hui Chen, Lichun Wang .A general distributed-parameter model for thermal performance of cold box with parallel plate-fin heat exchangers based on graph theory.Applied Thermal Engineering, Volume 148, 5 February 2019, Pages 478-490. 2019. DOI:
  35. Zhan F , Zhuang D , Ding G , et al .Influence of wet-particle deposition on air-side heat transfer and pressure drop of fin-and-tube heat exchangers .International Journal of Heat and Mass Transfer, 2018, 124:1230-1244.. 2018. DOI:
  36. Lin L , Peng H , Ding G .Model for predicting particle size evolution during nanoparticle aggregation in refrigerant-oil mixture.International Journal of Heat and Mass Transfer, 2018, 119:91-104.. 2018. DOI:
  37. Hu H , Lai Z , Ding G  .Heat transfer and pressure drop characteristics of wet air flow in metal foam with hydrophobic coating under dehumidifying conditions.Applied Thermal Engineering, 2018, 132:651-664.. 2018. DOI:
  38. Lai Z , Hu H , Ding G .Effect of porosity on heat transfer and pressure drop characteristics of wet air in hydrophobic metal foam under dehumidifying conditions .Experimental Thermal and Fluid Science, 2018, 96:90-100.. 2018. DOI:
  39. Zhan F , Zhuang D , Ding G .An analytical model for predicting the particle-deposited fin efficiency .International Journal of Refrigeration, 2018, 92:235-245.. 2018. DOI:
  40. Guanghui Xia, Dan Zhao, Guoliang Ding, Dawei Zhuang, Feilong Zhan .A model for predicting air permeation between temperature-fluctuated refrigerated room and ambience through magnetic seal.International Journal of Refrigeration, Volume 91, July 2018, Pages 1-11. 2018. DOI:
  41. Zhancheng Lai, Haitao Hu, Guoliang Ding, Xiaomin Weng .Influence of pore density and porosity on the wet air flow in metal foam under different operation conditions.International Journal of Refrigeration, Volume 88, April 2018, Pages 117-128. 2018. DOI:
  42. Haoran Sun, Haitao Hu, Jingwei Wu, Guoliang Ding, Zhongyuan Lv .A theory-based explicit calculation model for variable speed scroll compressors with vapor injection.International Journal of Refrigeration, Volume 88, April 2018, Pages 402-412. 2018. DOI:
  43. Guocheng Yang, Haitao Hu, Guoliang Ding, Jie Chen .Influence of component proportion on heat transfer characteristics of ethane/propane mixture flow condensation in shell side of helically baffled shell-and-tube heat exchanger.Experimental Thermal and Fluid Science, Volume 97, October 2018, Pages 381-391. 2018. DOI:
  44. Haitao Hu, Guocheng Yang, Guoliang Ding, Jie Chen, Suyang Hu .Heat transfer characteristics of mixed hydrocarbon refrigerant flow condensation in shell side of helically baffled shell-and-tube heat exchanger.Applied Thermal Engineering, Volume 133, 25 March 2018, Pages 785-796. 2018. DOI:
  45. Guocheng Yang, Haitao Hu, Guoliang Ding, Jie Chen, Xiaodong Pang .Experimental investigation on heat transfer characteristics of two-phase propane flow condensation in shell side of helically baffled shell-and-tube condenser.International Journal of Refrigeration, Volume 88, April 2018, Pages 58-66. 2018. DOI:
  46. Zhiqiang Li, Dan Zhao, Guoliang Ding, Tao Ren, Xiaolei Han .Effect of enthalpy exchanger on reducing frost accumulation on evaporator in frost-free refrigerator.International Journal of Refrigeration, Volume 89, May 2018, Pages 51-60. 2018. DOI:
  47. Chao Ding, Haitao Hu, Guoliang Ding, Jie Chen, Sicong Yu .Influences of tube pitches on heat transfer and pressure drop characteristics of two-phase propane flow boiling in shell side of LNG spiral wound heat exchanger.Applied Thermal Engineering, Volume 131, 25 February 2018, Pages 270-283. 2018. DOI:
  48. Sun H , Ding G , Hu H , et al .A general simulation model for variable refrigerant flow multi-split air conditioning system based on graph theoryc. International Journal of Refrigeration, 2017, 82:22-35.. 2017. DOI:
  49. Peng H , Lin L , Ding G .Influence of fluorinated self-assembled monolayer on wetting dynamics during evaporation of refrigerant-oil mixture on metal surface.International Journal of Refrigeration, 2017, 79:76-88.. 2017. DOI:
  50. Hu H , Lai Z , Ding G , et al .Experimental investigation on water drainage characteristics of open-cell metal foams with different wettabilities.International Journal of Refrigeration, 2017, 79:101-113.. 2017. DOI:
  51. Hu H , Lai Z , Weng X , et al .Numerical model of dehumidifying process of wet air flow in open-cell metal foam.Applied Thermal Engineering, 2017, 113:309-321.. 2017. DOI:
  52. Zhongdi Duan, Tao Ren, Guoliang Ding .Experimental and modeling studies on the transient pressurization in response to boiloff vapor recondensation in liquefied gas storage tanks.Experimental Thermal and Fluid Science, Volume 88, November 2017, Pages 93-102. 2017. DOI:
  53. Zhongdi Duan, Tao Ren, Guoliang Ding, Jie Chen, Xiaoguang Mi .Liquid-migration based model for predicting the thermal performance of spiral wound heat exchanger for floating LNG.Applied Energy, Volume 206, 15 November 2017, Pages 972-982. 2017. DOI:
  54. Tingting Wang, Chao Ding, Guoliang Ding, Dan Zhao, Tao Ren .A fast calculation method of thermodynamic properties of variable-composition natural gas mixtures in the supercritical pressure region based on implicit curve-fitting.Journal of Natural Gas Science and Engineering, Volume 43, July 2017, Pages 96-109 . 2017. DOI:
  55. Lingnan Lin, Hao Peng, Zheng Chang, Guoliang Ding .Experimental investigation on TiO2 nanoparticle migration from refrigerant–oil mixture to lubricating oil during refrigerant dryout.International Journal of Refrigeration, Volume 77, May 2017, Pages 75-86 . 2017. DOI:
  56. Lingnan Lin, Hao Peng, Zheng Chang, Guoliang Ding .Experimental research on degradation of nanolubricant–refrigerant mixture during continuous alternation processes of condensation and evaporation.International Journal of Refrigeration, Volume 76, April 2017, Pages 97-108. 2017. DOI:
  57. Chao Ding, Haitao Hu, Guoliang Ding, Jie Chen, Sicong Yu .Experimental investigation on pressure drop characteristics of two-phase hydrocarbon mixtures flow in the shell side of LNG spiral wound heat exchangers.Applied Thermal Engineering, Volume 127, 25 December 2017, Pages 347-358. 2017. DOI:
  58. Chao Ding, Haitao Hu, Guoliang Ding, Jie Chen, Jianrui Li .Experimental investigation on downward flow boiling heat transfer characteristics of propane in shell side of LNG spiral wound heat exchanger.International Journal of Refrigeration, Volume 84, December 2017, Pages 13-25. 2017. DOI:
  59. Zhiqiang Li, Dan Zhao, Guoliang Ding, Tao Ren, Toshinori Noda .Improving defrosting performance by controlling frost distribution to match defrosting heat distribution in frost-free household refrigerators.International Journal of Refrigeration, Volume 77, May 2017, Pages 136-148. 2017. DOI:
  60. Zhiqiang Li, Dan Zhao, Guoliang Ding, Tao Ren, Toshinori Noda .Improving defrosting performance by controlling frost distribution to match defrosting heat distribution in frost-free household refrigerators.International Journal of Refrigeration, Volume 77, May 2017, Pages 136-148. 2017. DOI:
  61. Ding Chao, Hu Hai-tao, Ding Guoliang .Heat transfer and pressure drop characteristics of two-phase propane flow in shell side of LNG spiral wound heat exchanger.Energy Procedia, Volume 142, December 2017, Pages 3857-3862 . 2017. DOI:
  62. Peng H , Lin L , Ding G .Experimental research on wetting behavior of refrigerant–oil mixture on micro/nanostructured surface.International Journal of Refrigeration, 2016, 62:207-221.. 2016. DOI:
  63. Lin L , Peng H , Ding G .Influence of oil concentration on wetting behavior during evaporation of refrigerant-oil mixture on copper surface .[1] International Journal of Refrigeration, 2016, 61:23-36.. 2016. DOI:
  64. Zhuang D , Ding G , Hu H , et al .Condensing droplet behaviors on fin surface under dehumidifying condition Part I: Numerical model.Applied Thermal Engineering, 2016, 105:336-344.. 2016. DOI:
  65. Lin L , Peng H , Ding G .Experimental research on particle aggregation behavior in nanorefrigerant-oil mixture.Applied Thermal Engineering, 2016, 98: 944-953.. 2016. DOI:
  66. Yang Y , Zhuang D , Ding G , et al .A mathematic model for predicting the volume of water bridge retaining between vertical fin surfaces.International Journal of Refrigeration, 2016, 67:157-166.. 2016. DOI:
  67. Zhan F .Experimental investigation on particle deposition characteristics of wavy fin-and-tube heat exchangers .Applied Thermal Engineering, 2016, 99:1039-1047.. 2016. DOI:
  68. Yang Y , Zhuang D , Ding G, et al .Observation and description of the shape of water bridge retaining between vertical plane surfaces. International Journal of Refrigeration, 2016, 64:20-31. 2016. DOI:
  69. Zhuang D , Ding G , Hu H , et al .Condensing droplet behaviors on fin surface under dehumidifying condition. Part II: Experimental validation .Applied Thermal Engineering, 2016, 105:345-352.. 2016. DOI:
  70. Hu H , Weng X , Zhuang D , et al .Heat transfer and pressure drop characteristics of wet air flow in metal foam under dehumidifying conditions .Applied Thermal Engineering, 2016, 93:1124-1134.. 2016. DOI:
  71. Zhan F , Zhuang D , Ding G , et al .Numerical model of particle deposition on fin surface of heat exchanger.International Journal of Refrigeration, 2016, 72:27-40.. 2016. DOI:
  72. Zhan F .Experimental investigation on particle deposition characteristics of wavy fin-and-tube heat exchangers .Applied Thermal Engineering, 2016, 99:1039-1047.. 2016. DOI:
  73. Tingting Wang, Guoliang Ding, Tao Ren, Jie Chen, Hui Pu .A mathematical model of floating LNG spiral-wound heat exchangers under rolling conditions.Applied Thermal Engineering, 2016, 99: 959-969. 2016. DOI:
  74. Zhongdi Duan, Tao Ren, Guoliang Ding, Jie Chen, Hui Pu .A dynamic model for FLNG spiral wound heat exchanger with multiple phase-change streams based on moving boundary method.Journal of Natural Gas Science and Engineering, 2016, 34: 657-669. . 2016. DOI:
  75. Haitao Hu, Trygve Magne Eikevik, Petter Neksa, Armin Hafner, Guoliang Ding, Qingnan Huang, Jingjing Ye .Performance analysis of a R744 ground source heat pump system with air-cooled and water-cooled gas coolers.International Journal of Refrigeration, International Journal of Refrigeration, Volume 63, March 2016, Pages 72-86. 2016. DOI:
  76. 李剑锐,陈杰,浦晖 .绕管式换热器壳侧降膜流动和相变传热的数值模拟.第四届中国液化天然气论坛. 2015. DOI:
  77. Tingting Wang, Guoliang Ding, Zhongdi Duan, .A distributed-parameter model for LNG spiral wound heat exchanger based on graph theory.Applied Thermal EngineeringVolume 81, 25 April 2015, Pages 102-113. 2015. DOI:
  78. 段钟弟,任滔,丁国良 .分相的LNG多股流绕管式换热器动态模型.第四届中国液化天然气论坛. 2015. DOI:
  79. 孙浩然,任滔,丁国良 .一种产品数据交互式的变频压缩机理论模型.制冷学报. 2015. DOI:
  80. Lin L , Peng H , Ding G .Dispersion stability of multi-walled carbon nanotubes in refrigerant with addition of surfactant .Applied Thermal Engineering, 2015, 91:163-171.. 2015. DOI:
  81. Zhu Y , Peng H, Sun S , et al .Flow boiling of refrigerant in horizontal metal-foam filled tubes: Part 1-Two-phase flow pattern visualization .International Journal of Heat and Mass Transfer, 2015, 91:446-453.. 2015. DOI:
  82. Zhu Y , Hu H , Sun S , et al .Flow boiling of refrigerant in horizontal metal-foam filled tubes: Part 2-A flow-pattern based prediction method for heat transfer .International Journal of Heat and Mass Transfer, 2015, 91:502-511.. 2015. DOI:
  83. Peng H , Lin L , Ding G .Influences of primary particle parameters and surfactant on aggregation behavior of nanoparticles in nanorefrigerant.Energy, 2015, 89:410-420. 2015. DOI:
  84. Haitao Hu, Ruxu Zhang, Dawei Zhuang, Guoliang Ding, Wenjian Wei, Liang Xiang .Numerical model of two-phase refrigerant flow distribution in a plate evaporator with distributors.Applied Thermal Engineering, Volume 75, 22 January 2015, Pages 167-176. 2015. DOI:
  85. Lingnan Lin, Hao Peng, Guoliang Ding. .Influence of oil concentration on wetting behavior during evaporation of refrigerant–oil mixture on copper surface.International Journal of Refrigeration, Volume 61, January 2016, Pages 23-36. 2015. DOI:
  86. Hao Peng, Lingnan Lin, Guoliang Ding. .Experimental research on wetting behavior of refrigerant-oil mixture on micro/nanostructured surface.International Journal of Refrigeration, In Press, Accepted Manuscript, Available online 4 November 2015. 2015. DOI:
  87. Tingting Wang, Guoliang Ding , Jie Chen , .A distributed-parameter model for spiral wound LNG heat exchanger based on graph theory.. 2014. DOI:
  88. Guo-Cheng Yang, Qi-Yi Liu, Mao-Bin Hu .Phase transition and bistable phenomenon of granular flows down a chute with successive turnings.Physics Letters A. 2014. DOI:10.1016/j.physleta.2014.03.009
  89. Yang GC, Liu QY, Hu MB .Experiment Study and Optimization of Merging Granular Flow.Applied Mechanics and Materials . 2014. DOI:10.4028/www.scientific.net/AMM.487.400
  90. Qi Yi Liu, Guo Cheng Yang, Mao Bin Hu .Optimization of Granular Chute Flow with Two Bottlenecks.Applied Mechanics and Materials. 2014. DOI:10.4028/www.scientific.net/AMM.487.532
  91. 陈杰,段钟弟,浦晖 .A Simulation Tool for Coil-Wound Heat Exchanger in LNG Process.3rd Trondheim Gas Technology Conference. 2014. DOI:
  92. 孙浩然,任滔,李智强 .结合用户数据的空调器仿真平台构建.制冷技术. 2014. DOI:10.3969/j.issn.2095-4468.2014.04.108
  93. 孙浩然,任滔,丁国良 .一种基于产品实验数据的空调器仿真用变频压缩机模型.2014年中国家用电器技术大会论文集. 2014. DOI:
  94. 吴国明,任滔,丁国良 .宽翅片在5mm空调高温_T3_工况下的应用研究.中国家用电器会议论文集. 2014. DOI:
  95. 任滔,吴国明,丁国良 .Investigation_of_application_of_suctionline_heat_exchanger_in_R290_air_conditioner_with_small_diameter_tubes.普度会议论文集. 2014. DOI:
  96. Zhao D , Ding G , Xu Y , et al .Development of a stepped capillary tube as a low cost throttling device for a residential heat pump system.International Journal of Refrigeration, 2014, 42:36-47.. 2014. DOI:
  97. Hu H , Gao J , Ding G , et al .Fin design for an evaporator with small diameter microgroove tubes.HVAC&R Research, 2014, 20(7):790-797.. 2014. DOI:
  98. Hu H , Zhu Y , Peng H , et al. .Influence of tube diameter on heat transfer characteristics of refrigerant-oil mixture flow boiling in metal-foam filled tubes .International Journal of Refrigeration, 2014, 41(5):121-136.. 2014. DOI:
  99. Hu H , Zhu Y , Peng H , et al .Effect of tube diameter on pressure drop characteristics of refrigerant–oil mixture flow boiling inside metal-foam filled tubes .Applied Thermal Engineering, 2014, 62(2):433-443.. 2014. DOI:
  100. Zhuang D , Hu H , Ding G , et al .Numerical model for liquid droplet motion on vertical plain-fin surface.HVAC&R Research, 2014, 20(3):332-343.. 2014. DOI:
  101. Yu Zhu, Haitao Hu, Shuo Sun, GuoliangDing .Heat transfer measurements and correlation of refrigerant flow boiling in tube filled with copper foam.International Journal of Refrigeration, Volume 38, February 2014, Pages 215-226. 2014. DOI:
  102. Guoliang Ding, Tingting Wang, Jingdan Gao, .Developing simulation tools for design of low charge vapour compression refrigeration systems.. 2013. DOI:
  103. 杨果成,刘启一,胡茂彬 .具有双瓶颈的颗粒斜槽流:相变、双稳态和优化.2013年中国力学大会-颗粒材料计算力学与环境力学专题. 2013. DOI:
  104. Guo-Cheng Yang, Qi-Yi Liu, Mao-Bin Hu .Phase Transition and Optimization of Granular Flow Down a Chute with Successive Turning Points.SIAM Conference on Control and Its Applications. 2013. DOI:
  105. Guo-Cheng Yang, Qi-Yi Liu, Mao-Bin Hu .Experiment Study and Optimization of Merging Granular Flow.International Conference on Mechanical Structures and Smart Materials. 2013. DOI:
  106. Qi-Yi Liu, Guo-Cheng Yang, Mao-Bin Hu .Optimization of Granular Chute Flow with Two Bottlenecks.International Conference on Mechanical Structures and Smart Materials. 2013. DOI:
  107. 孙浩然,曾宪顺,赵丹 .飞艇浮力调节的气液相变系统设计.制冷技术. 2013. DOI:10.3969/j.issn.2095-4468.2013.04.201
  108. 孙浩然,段钟弟,丁国良 .采用适用于小管径空调器关联式的换热器仿真软件开发.上海市制冷学会2013年学术年会论文集. 2013. DOI:
  109. Ren T, Ding G, Wang T, et al .A general three-dimensional simulation approach for micro-channel heat exchanger based on graph theory.Applied Thermal Engineering, 2013, 59(1-2):660-674.. 2013. DOI:
  110. Hu H , Zhu Y , Ding G , et al .Effect of oil on two-phase pressure drop of refrigerant flow boiling inside circular tubes filled with metal foam .International Journal of Refrigeration, 2013, 36(2):516-526. 2013. DOI:
  111. Hu H , Peng H , Ding G .Nucleate pool boiling heat transfer characteristics of refrigerant/nanolubricant mixture with surfactant.International Journal of Refrigeration, 2013, 36(3):1045-1055.. 2013. DOI:
  112. Yu Zhu, Haitao Hu, Guoliang Ding, Shuo Sun, Yaolong Jing . Influence of metal foam on heat transfer characteristics of refrigerant-oil mixture flow boiling inside circular tubes.Applied Thermal Engineering, 2013, 50(1): 1246-1256.. 2013. DOI:
  113. Hai-Tao H .U . Effect of metal foam on heat transfer characteristics of refrigerant/oil mixture flow boiling inside tubes.Journal of Engineering Thermophysics, 2012, 50(1):1246-1256.. 2012. DOI:
  114. Zhu Y , Hu H T , Ding G L , et al .Heat transfer enhancement by metal foam during nucleate pool boiling of refrigerant/oil mixture at a wide range of oil concentration.HVAC&R RESEARCH, 2012, 18(3):377-389.. 2012. DOI:
  115. Guoliang Ding, Tao Ren, Yongxin Zheng, Yifeng Gao, Ji Song .Simulation-based design method for room air conditioner with smaller diameter diamter copper tubes.International Journal of Air-Conditioning and Refrigeration, 2012, Vol. 20, No. 3,Paper No. 1250012 (9 pages). 2012. DOI:
  116. Peng H , Ding G , Hu H , et al .Effect of nanoparticle size on nucleate pool boiling heat transfer of refrigerant/oil mixture with nanoparticles.International Journal of Heat & Mass Transfer, 2011, 54(9):1839-1850.. 2011. DOI:
  117. Zhu Y , Hu H , Ding G , et al .Influence of oil on nucleate pool boiling heat transfer of refrigerant on metal foam covers .International Journal of Refrigeration, 2011, 34(2):509-517.. 2011. DOI:
  118. Peng H , Ding G , Hu H .Influences of refrigerant-based nanofluid composition and heating condition on the migration of nanoparticles during pool boiling. Part II: Model development and validation.International Journal of Refrigeration, 2011, 34(8):1833-1845.. 2011. DOI:
  119. Peng H , Ding G , Hu H . Influences of refrigerant-based nanofluid composition and heating condition on the migration of nanoparticles during pool boiling. Part II: Model development and validation.International Journal of Refrigeration, 2011, 34(8):1833-1845.. 2011. DOI:
  120. Peng H , Ding G , Hu H .Effect of surfactant additives on nucleate pool boiling heat transfer of refrigerant-based nanofluid.Experimental Thermal and Fluid Science, 2011, 35(6):960-970.. 2011. DOI:
  121. Peng H , Ding G , Hu H  .Migration of carbon nanotubes from liquid phase to vapor phase in the refrigerant-based nanofluid pool boiling.Nanoscale Research Letters, 2011, 6(1):219-219.. 2011. DOI:
  122. Enxin Lin, Guoliang Ding, Dan Zhao, Yunhu Liao, Nan Yu, Jun Yamashita .Dynamic model for multi-compartment indirect cooling household refrigerator using Z-transfer function based cabinet model..International Journal of Thermal Sciences, 2011, 50 (7): 1308-1325. 2011. DOI:
  123. Hao Peng, Guoliang Ding, Haitao Hu .Influences of refrigerant-based nanofluid composition and heating condition on the migration of nanoparticles during pool boiling.Part I: Experimental measurement. International Journal of Refrigeration, 2011, 34 (8): 1823-1832. 2011. DOI:
  124. Hai-Tao Hu, Guo-Liang Ding, Xiang-Chao Huang, Bin Deng,Yi-Feng Gao .Experimental investigation and correlation of two-phase heat transfer of R410A/oil mixture flowboiling in a 5-mm microfin tube.Journal of Enhanced Heat Transfer, 2011, 18 (3): 209–220. 2011. DOI:
  125. Han W, Ding G .Numerical modeling of refrigerants flowing through short tube orifices.HVAC&R Research, 2010, 16(5):691-705.. 2010. DOI:
  126. Peng H , Ding G , Hu H , et al .Influence of carbon nanotubes on nucleate pool boiling heat transfer characteristics of refrigerant–oil mixture.International Journal of Thermal Sciences, 2010, 49(12):2428-2438.. 2010. DOI:
  127. Peng H , Ding G , Hu H , et al .Nucleate pool boiling heat transfer characteristics of refrigerant/oil mixture with diamond nanoparticles.International Journal of Refrigeration, 2010, 33(2):347-358.. 2010. DOI:
  128. Hu H , Ding G , Wei W , et al .Heat transfer characteristics of refrigerant-oil mixtures flow boiling in a horizontal C-shape curved smooth tube.International Journal of Refrigeration, 2010, 33(5):932-943.. 2010. DOI:
  129. Jiang W , Ding G , Peng H , et al .Modeling of nanoparticles’ aggregation and sedimentation in nanofluid.Current Applied Physics, 2010, 10(3):934-941.. 2010. DOI:
  130. Pu H , Ding G L , Ma X K , et al .Long-term performance of air-side heat transfer and pressure drop for finned tube evaporators of air conditioners under intermittent operation conditions .International Journal of Refrigeration, 2010, 33(1):107-115.. 2010. DOI:
  131. Pu H , Ding G , Hu H , et al .Effect of salt spray corrosion on air-side performance of finned-tube heat exchanger with hydrophilic coating under dehumidifying conditions.HVAC & R Research, 2010, 16(3):257-272.. 2010. DOI:
  132. Xiangchao Huang, Guoliang Ding, Haitao Hu, Yu Zhu, Hao Peng, Yifeng Gao, Bin Deng .Influence of oil on flow condensation heat transfer of R410A inside 4.18mm and 1.6mm inner diameter horizontal smooth tubes.International Journal of Refrigeration, 2010, 33 (1): 158-169. 2010. DOI:
  133. Answer to comments by M.M. Awad on ‘‘Experimental investigation and correlation of two-phase frictional pressure drop of R410A-oil mixture flow boiling in a 5 mm microfin tube’’ .Answer to comments by M.M. Awad on ‘‘Experimental investigation and correlation of two-phase frictional pressure drop of R410A-oil mixture flow boiling in a 5 mm microfin tube’’.International Journal of Refrigeration, 2010, 33 (1): 207-208. 2010. DOI:
  134. Haitao Hu, Guoliang Ding .Answer to comments by M.M. Awad on "Measurement and correlation of frictional two-phase pressure drop of R410A/POE oil mixture flow boiling in a 7 mm straight micro-fin tube".Applied Thermal Engineering, 2010 (2-3), 30: 262. 2010. DOI:
  135. Xiangchao Huang, Guoliang Ding, Haitao Hu, Yu Zhu, Yifeng Gao, Bin Deng .Condensation heat transfer characteristics of R410A–oil mixture in 5 mm and 4 mm outside diameter horizontal microfin tubes.Experimental Thermal and Fluid Science, 2010, 34: 845–856. 2010. DOI:
  136. Xiangchao Huang, Guoliang Ding, Haitao Hu, Yu Zhu, Yifeng Gao, Bin Deng .Two-phase frictional pressure drop of R410A–oil mixture flow condensation inside 4.18 mm and 1.6 mm I.D. horizontal smooth tubes.HVAC&R Research, 2010, 16 (4): 453-470. 2010. DOI:
  137. Xiangchao Huang, Guoliang Ding, Haitao Hu, Yu Zhu, Yifeng Gao, Bin Deng .Flow condensation pressure drop characteristics of R410A-oil mixture inside small diameter horizontal microfin tubes.International Journal of Refrigeration, 2010, 33 (7): 1356-1369. 2010. DOI:
  138. Hui Pu, Guo-liang Ding, Hai-tao Hu, Yi-feng Gao .Effect of salt spray corrosion on air-side hydrophilicity and thermal-hydraulic performance of copper-fin heat exchangers.Heat and Mass Transfer, 2010, 46 (8-9): 859-867. 2010. DOI:
  139. Yifeng Gao, Bin Deng, Guoliang Ding, Haitao Hu, Xiangchao Huang .Pressure characteristics of R410A-oil mixture flow boiling in small smooth tubes.International Journal of Air-Conditioning and Refrigeration, 2010, 18 (2): 109-116. 2010. DOI:
  140. Ding G , Han W , Zhao D , et al .Extension of the implicit curve-fitting method for fast calculation of thermodynamic properties of subcooled refrigerants.HVAC&R Research, 2009, 15(5):875-888.. 2009. DOI:
  141. Zhao D , Ding G , Wu Z .Extension of the implicit curve-fitting method for fast calculation of thermodynamic properties of refrigerants in supercritical region.International Journal of Refrigeration, 2009, 32(7):1615-1625.. 2009. DOI:
  142. Zhang W , Zhang C , Ding G .On three forms of momentum equation in transient modeling of residential refrigeration systems.International Journal of Refrigeration, 2009, 32(5):938-944.. 2009. DOI:
  143. Ma X , Ding G , Zhang Y , et al .Airside characteristics of heat, mass transfer and pressure drop for heat exchangers of tube-in hydrophilic coating wavy fin under dehumidifying conditions .International Journal of Heat & Mass Transfer, 2009, 52(19-20):4358-4370.. 2009. DOI:
  144. Ding G , Peng H , Jiang W , et al .The migration characteristics of nanoparticles in the pool boiling process of nanorefrigerant and nanorefrigerant–oil mixture.International Journal of Refrigeration, 2009, 32(1):114-123.. 2009. DOI:
  145. Peng H , Ding G , Jiang W , et al .Measurement and correlation of frictional pressure drop of refrigerant-based nanofluid flow boiling inside a horizontal smooth tube.International Journal of Refrigeration, 2009, 32(7):1756-1764.. 2009. DOI:
  146. Peng H , Ding G , Jiang W , et al .Heat transfer characteristics of refrigerant-based nanofluid flow boiling inside a horizontal smooth tube.International Journal of Refrigeration, 2009, 32(6):1259-1270.. 2009. DOI:
  147. Pu H , Ding G , Ma X , et al .Effects of biofouling on air-side heat transfer and pressure drop for finned tube heat exchangers.International Journal of Refrigeration, 2009, 32(5):1032-1040.. 2009. DOI:
  148. Jiang W , Ding G , Peng H .Measurement and model on thermal conductivities of carbon nanotube nanorefrigerants.International Journal of Thermal Sciences, 2009, 48(6):1108-1115.. 2009. DOI:
  149. Ke-zhi Yu, Guo-liang Ding, Tian-ji Chen .Experimental investigation on a vertical display cabinet with central air supply.Energy Conversion and Management, 2009, 50( 9): 2257-2265. 2009. DOI:
  150. Guoliang Ding, Haitao Hu, Xiangchao Huang, Bin Deng, Yifeng Gao .Experimental investigation and correlation of two-phase frictional pressure drop of R410A–oil mixture flow boiling in a 5 mm microfin tube.International Journal of Refrigeration, 2009, 32 (1): 150-161. 2009. DOI:
  151. Guoliang Ding, Xiaokui Ma, Ping Zhang, Weizhe Han, Shinichi Kasahara, Takahiro Yamaguchi .Practical methods for measuring refrigerant mass distribution inside refrigeration system.International Journal of Refrigeration, 2009, 32 (2): 327-334. 2009. DOI:
  152. Xiaokui Ma, Guoliang Ding, Ping Zhang, Weizhe Hana, Shinichi Kasahara, Takahiro Yamaguchi .Experimental validation of void fraction models for R410A air conditioners.International Journal of Refrigeration, 2009, 32 (5): 780-790. 2009. DOI:
  153. Haitao Hu, Guoliang Ding, Xiangchao Huang, Bin Deng, Yifeng Gao .Measurement and correlation of flow-boiling heat transfer of a R-410A/oil mixture inside a 4.18 mm straight smooth tube.HVAC&R Research, 2009, 15 (2): 287-314. 2009. DOI:
  154. Ke-zhi Yu, Guo-liang Ding, Tian-ji Chen .A correlation model of thermal entrainment factor for air curtain in a vertical open display cabinet.Applied Thermal Engineering, 29 (14-15): 2904-2913. 2009. DOI:
  155. Hai-tao Hu, Guo-liang Ding, Xiang-chao, Huang, Bin Deng, Yi-feng Gao .Pressure drop during horizontal flow boiling of R410A/oil mixture in 5 mm and 3 mm smooth tubes.Applied Thermal Engineering, 2009, 29 (16): 3353-3365. 2009. DOI:
  156. Wu Z , Ding G , Wang K , et al .Application of a genetic algorithm to optimize the refrigerant circuit of fin-and-tube heat exchangers for maximum heat transfer or shortest tube .International Journal of Thermal Sciences, 2008, 47(8):985-997.. 2008. DOI:
  157. Wu Z, Ding G, Wang K, et al .Knowledge-based evolution method for optimizing refrigerant circuitry of fin-and-tube heat exchangers.HVAC&R Research, 2008, 14 (3): 435-452. 2008. DOI:
  158. Wu Z , Ding G , Wang K , et al .An extension of a steady-state model for fin-and-tube heat exchangers to include those using capillary tubes for flow control.HVAC&R Research, 2008, 14(1):85-101.. 2008. DOI:
  159. Wei W , Ding G , Hu H , et al .Influence of lubricant oil on heat transfer performance of refrigerant flow boiling inside small diameter tubes. Part I: Experimental study.[1] Experimental Thermal & Fluid Science, 2008, 32(1):67-76.. 2008. DOI:
  160. Haitao Hu, Guoliang Ding, Wenjian Wei, Zhence Wang, Kaijian Wang .Heat transfer characteristics of R410A-oil mixture flow boiling inside a 7 mm straight smooth tube.Experimental Thermal and Fluid Science, 2008, 32 (3): 857–869. 2008. DOI:
  161. Ke-zhi Yu, Guo-liang Ding, Tian-ji Chen . Modified two-fluid model for air curtains in open vertical display cabinets.International Journal of Refrigeration, 2008, 31 (3): 472 – 482. 2008. DOI:
  162. Hai-tao Hu, Guo-liang Ding, Kai-jian Wang .Measurement and correlation of frictional two-phase pressure drop of R410A/POE oil mixture flow boiling in a 7 mm straight micro-fin tube.Applied Thermal Engineering, 2008, 28 (11-12): 1272-1283. 2008. DOI:
  163. Haitao Hu, Guoliang Ding, Kaijian Wang .Heat transfer characteristics of R410A–oil mixture flow boiling inside a 7mm straight microfin tube.International Journal of Refrigeration, 2008, 31 (6): 1081- 1093. 2008. DOI:
  164. Haitao Hu, Guoliang Ding, Wenjian Wei, Zhence Wang, Kaijian Wang .Measurement and correlation of frictional pressure drop of R-410A/oil mixture flow boiling in a 7 mm straight smooth tube.HVAC&R Research, 2008, 14 (5): 763-781. 2008. DOI:
  165. Ding G, Wu Z , Wang K , et al .Extension of the applicable range of the implicit curve-fitting method for refrigerant thermodynamic properties to critical pressure.International Journal of Refrigeration, 2007, 30(3):418-432.. 2007. DOI:
  166. Ding G .Recent developments in simulation techniques for vapour-compression refrigeration systems.International Journal of Refrigeration, 2007, 30(7):1119-1133.. 2007. DOI:
  167. Wei W , Ding G , Wang K .Measurement and correlation of two-phase frictional performance of refrigerant-oil mixtures inside small tubes.HVAC&R RESEARCH, 2007, 13(2):397-411.. 2007. DOI:
  168. Ma X , Ding G , Zhang Y , et al. .Airside heat transfer and friction characteristics for enhanced fin-and-tube heat exchanger with hydrophilic coating under wet conditions.[1] International Journal of Refrigeration, 2007, 30(7):1153-1167.. 2007. DOI:
  169. Ma X , Ding G , Zhang Y , et al .Effects of hydrophilic coating on air side heat transfer and friction characteristics of wavy fin and tube heat exchangers under dehumidifying conditions .Energy Conversion & Management, 2007, 48(9):2525-2532.. 2007. DOI:
  170. Dong-ping Huang, Guo-liang Ding, Hans Quack .Theoretical analysis of deposition and melting process during throttling high pressure CO2 into atmosphere.Applied Thermal Engineering, 2007, 27, 1295-1302. 2007. DOI:
  171. Dongping Huang, Guoliang Ding, Hans Quack .Experimental observation and empirical estimation of formation of solid carbon dioxide in safety valves for refrigerating system.HVAC&R Research 2007, 13 (1): 77-92. 2007. DOI:
  172. Dongping Huang, Hans Quack, Guo-liang Ding .Experimental study of throttling of carbon dioxide refrigerant to atmospheric pressure.Applied Thermal Engineering, 2007, 27, 1911-1922. 2007. DOI:
  173. Ke-zhi Yu, Guo-liang Ding, Tian-ji Chen. .Simulation of air curtains for vertical display cases with a two-fluid model.Applied Thermal Engineering 27 (2007) 2583–2591. 2007. DOI:
  174. Wenjian Wei, Guoliang Ding, Haitao Hu and Kaijian Wang .Influence of lubricant oil on heat transfer performance of refrigerant flow boiling inside small diameter tubes.Part I: Experimental study. Experimental Thermal and Fluid Science, 2007, 32 (1): 67-76. 2007. DOI:
  175. Wenjian Wei, Guoliang Ding, Haitao Hu and Kaijian Wang .Influence of lubricant oil on heat transfer performance of refrigerant flow boiling inside small diameter tubes.Part II: Correlations. Experimental Thermal and Fluid Science, Experimental Thermal and Fluid Science, 2007, 32 (1): 77-84. 2007. DOI:
  176. Ding G.  .Simulation technology for refrigeration and air conditioning appliances.Chinese Science Bulletin, 2006, 51(16):1913-1928.. 2006. DOI:
  177. Junwei Hu, Guoliang Ding .Effect of deflecting ring on noise generated by outdoor set of a split-unit air conditioner.International Journal of Refrigeration, 2006, 29 (3): 505-513. 2006. DOI:
  178. Zhili Lu, Guoliang Ding .Temperature and time-sharing running combination control strategy of two-circuit cycle refrigerator-freezer with parallel evaporators.Applied Thermal Engineering, 2006, 26: 1208-1217. 2006. DOI:
  179. Junwei Hu, Guoliang Ding .Effect of the air outlet louver on the noise generated by the outdoor set of a split-unit air conditioner.Applied Thermal Engineering, 2006, 26: 1735-1745. 2006. DOI:
  180. Ding G, Wu Z, Liu J, et al .An implicit curve-fitting method for fast calculation of thermal properties of pure and mixed refrigerants.International Journal of Refrigeration, 2005, 28(6):921-932.. 2005. DOI:
  181. Guoliang Ding, Long Fu. .Performance analysis and improvement of air-to-water chiller for application in wide ambient temperature range.Applied Thermal Engineering, 2005, 25: 135-145. 2005. DOI:
  182. Liu J, Wei W, Ding G, et al .A general steady state mathematical model for fin-and-tube heat exchanger based on graph theory.International Journal of Refrigeration, 2004, 27(8):965-973.. 2004. DOI:
  183. Zhang C, Ding G .Approximate analytic solutions of adiabatic capillary tube.International Journal of Refrigeration, 2004, 27(1):17-24.. 2004. DOI:
  184. Guo-Liang Ding, Chun-Lu Zhang, Tao Zhan .An approximate integral model with an artificial neural network for heat exchangers.Heat Transfer-Asia Research, 2004, 33(3): 153-160 . 2004. DOI:
  185. Guoliang Ding, Chunlu Zhang, Zhili Lu .Dynamic simulation of natural convection bypass two-circuit cycle refrigerator–freezer and its application - Part I: Component models.Applied Thermal Engineering, 2004, 24 (10): 1513–1524. 2004. DOI:
  186. Zhili Lu, Guoliang Ding, Chunlu Zhang .Dynamic simulation of natural convection bypass two-circuit cycle refrigerator–freezer and its application - Part II: System simulation and application.Applied Thermal Engineering, 2004, 24 (10): 1525–1533. 2004. DOI:
  187. Ding Guo-Liang, Qiao Hong-Tao, Lu, Zhi-Li .Ways to improve thermal uniformity inside a refrigerator. .Applied Thermal Engineering, 2004, 24(13): 1827-1840. 2004. DOI:
  188. P. C. Zhao, L. Zhao, G. L. Ding, C. L. Zhang .Temperature matching method of selecting working fluids for geothermal heat pumps.Applied Thermal Engineering, 2003, 23(2), 179-195. 2003. DOI:
  189. L. Zhao, T.J Zhang, Q. Zhang, G.L. Ding .Influence of two systematic parameters on the geothermal heat pump system operation.Renewable Energy, 2003, 28(1):35-43. 2003. DOI:
  190. Chunlu Zhang, Guoliang Ding .A stable series expansion method for calculating thermal response factors of multi-layer walls.Building and Environment, 2003, 38: 699-705. 2003. DOI:
  191. Zhao L, Zhao LL, Zhang Q, Ding GL .Theoretical and basic experimental analysis on load adjustment of geothermal heat pump systems. Energy Conversion and Management, 2003, 44 (1): 1-9. 2003. DOI:
  192. Zhao, P.C.; Ding, G.L.; Zhang, C.L.; Zhao, L .Simulation of a geothermal heat pump with non-azeotropic mixture.Applied Thermal Engineering, 2003, 23 (12): 1515-1524. 2003. DOI:
  193. Long Fu, Guoliang Ding and Chunlu Zhang .Dynamic simulation of air-to-water dual-mode heat pump with screw compressor.Applied Thermal Engineering, 2003, 23 (13): 1629-1645. 2003. DOI:
  194. Guoliang Ding, Chunlu Zhang, Hao Liu .A fast simulation model combining with artificial neural networks for fin-and-tube condenser.Heat Transfer – Asian Research, 2002, 31(7): 551-557. 2002. DOI:
  195. Long Fu, Guoliang Ding, Zujian Su, Guoquan Zhao .teady-state simulation of screw liquid chillers.Applied Thermal Engineering, 2002, 22 (15): 1731–1748. 2002. DOI:
  196. Chunlu Zhang, Guoliang Ding .A novel thermal response factor method for the dynamic load calculation of buildings.Journal of Asian Architecture and Building Engineering, 2002, 1(1): 75-79. 2002. DOI:
  197. P.C. Zhao, L. Zhao, G.L. Ding , C.L. Zhang .Experimental research on geothermal heat pump system with non-azeotropic working fluids.Applied Thermal Engineering, 2002, 22 (15) 1749–176. 2002. DOI:
  198. Zhang C, Ding G .Modified general equation for the design of capillary tubes.Journal of Fluids Engineering-Transactions of the ASME, 2001, 123(4):914-919.. 2001. DOI:
  199. Ding G, Zhang C, Zhan T, et al .Compound fuzzy model for thermal performance of refrigeration compressors.Chinese Science Bulletin, 2000, 45(14):1319-1322.. 2000. DOI:
  200. Ding G, Zhang C, Li H, et al .An approximate analytic model for flow through capillary tubes.Chinese Science Bulletin, 1999, 44(7):668-670.. 1999. DOI: