1. Analysis of energy matching performance between CCHP systems and users based on different operation strategies. (15th February 2019) Authors: Feng, Lejun; Dai, Xiaoye; Mo, Junrong; Ma, Yuezheng; Shi, Lin Journal: Energy conversion and management Issue: Volume 182(2019) Page Start: 60 Record Type: Journal Article View Content: Available online (eLD content is only available in our Reading Rooms) ↗
2. Analysis of energy-matching performance and suitable users of conventional CCHP systems coupled with different energy storage systems. (15th November 2019) Authors: Feng, Lejun; Dai, Xiaoye; Mo, Junrong; Shi, Lin Journal: Energy conversion and management Issue: Volume 200(2019) Page Start: Record Type: Journal Article View Content: Available online (eLD content is only available in our Reading Rooms) ↗
3. Analysis of simplified CCHP users and energy-matching relations between system provision and user demands. (April 2019) Authors: Feng, Lejun; Dai, Xiaoye; Mo, Junrong; Shi, Lin Journal: Applied thermal engineering Issue: Volume 152(2019) Page Start: 532 Record Type: Journal Article View Content: Available online (eLD content is only available in our Reading Rooms) ↗
4. Buoyancy effect on the mixed convection flow and heat transfer of supercritical R134a in heated horizontal tubes. (December 2019) Authors: Tian, Ran; Wei, Mingshan; Dai, Xiaoye; Song, Panpan; Shi, Lin Journal: International journal of heat and mass transfer Issue: Volume 144(2019) Page Start: Record Type: Journal Article View Content: Available online (eLD content is only available in our Reading Rooms) ↗
5. Chemical kinetics method for evaluating the thermal stability of Organic Rankine Cycle working fluids. (5th May 2016) Authors: Dai, Xiaoye; Shi, Lin; An, Qingsong; Qian, Weizhong Journal: Applied thermal engineering Issue: Volume 100(2016:May) Page Start: 708 Record Type: Journal Article View Content: Available online (eLD content is only available in our Reading Rooms) ↗
6. Chemical kinetics method for evaluating the thermal stability of Organic Rankine Cycle working fluids. (5th May 2016) Authors: Dai, Xiaoye; Shi, Lin; An, Qingsong; Qian, Weizhong Journal: Applied thermal engineering Issue: Volume 100(2016:May) Page Start: 708 Record Type: Journal Article View Content: Available online (eLD content is only available in our Reading Rooms) ↗
7. Comparison of capacity design modes and operation strategies and calculation of thermodynamic boundaries of energy-saving for CCHP systems in different energy supply scenarios. (15th May 2019) Authors: Feng, Lejun; Dai, Xiaoye; Mo, Junrong; Shi, Lin Journal: Energy conversion and management Issue: Volume 188(2019) Page Start: 296 Record Type: Journal Article View Content: Available online (eLD content is only available in our Reading Rooms) ↗
8. Comprehensive comparison of the applicability of internally ribbed and microfin tubes for TORC systems. (1st May 2022) Authors: Wang, Dabiao; Lu, Hang; Li, Lanlan; Fu, Shilin; Dai, Xiaoye; Shi, Lin Journal: International journal of heat and mass transfer Issue: Volume 186(2022) Page Start: Record Type: Journal Article View Content: Available online (eLD content is only available in our Reading Rooms) ↗
9. Corrigendum to "Standard thermodynamic properties for the energy grade evaluation of fossil fuels and renewable fuels" [Renew. Energy 147 (2020) 2160–2170]. (August 2020) Authors: Huang, Weijia; Zheng, Danxing; Chen, Xiaohui; Shi, Lin; Dai, Xiaoye; Chen, Youhui; Jing, Xuye Journal: Renewable energy Issue: Volume 155(2020) Page Start: 1445 Record Type: Journal Article View Content: Available online (eLD content is only available in our Reading Rooms) ↗
10. Coupling effect between heat flux distribution and buoyancy of supercritical CO2 heat transfer with nonuniform heat flux in parabolic-trough collector. (October 2022) Authors: Xu, Yunting; Tian, Ran; Dai, Xiaoye; Shi, Lin Journal: International journal of heat and mass transfer Issue: Volume 195(2022) Page Start: Record Type: Journal Article View Content: Available online (eLD content is only available in our Reading Rooms) ↗