Wang Peipei, Long Weiding. Numerical Analyses on Dynamic Thermal Performance of Small Energy Bus System[J]. Journal of refrigeration, 2015, 36(2).
DOI:
Wang Peipei, Long Weiding. Numerical Analyses on Dynamic Thermal Performance of Small Energy Bus System[J]. Journal of refrigeration, 2015, 36(2). DOI: 10.3969/j.issn.0253-4339.2015.02.059.
Numerical Analyses on Dynamic Thermal Performance of Small Energy Bus System
The energy bus system is a low carbon thermal energy system that can make integration of renewable energy sources or untapped energy sources for district heating and cooling. A small energy bus system was constructed by combining ground soil and surface water as low grade energy. The models of components in the system were developed according to theoretical analyses and test data of manufacturer
and the whole system was constructed by connecting various components on TRNSYS platform. The hourly and annual thermal performance of the system was simulated when it was applied to the Jinmao Chong Ming low-carbon experiment community . The result shows that the annual thermal coefficient of performance of the system is 3.5
while the thermal coefficient of performance for conventional systems is less than 1.5. Both energy saving rate and carbon reduction rate of the system are more than 20%. It can be seen that comprehensive benefits of renewable energy use and energy recovery are achieved in energy bus system.
Analyses of Exergy Change in Multi Heat Source Water Mixing and Heat Recovery Process of Energy Bus System
Experimental Study on the Effect of Loading Density on the Performance of a Closed Drying System Using Quasi-Two-Stage Heat Pump for Lentinus edodes
Comparative Study on Applicability of Plate Heat Exchanger and Mixed Water Pump in Constant-Temperature Water Chiller Controlled at Ultra-High Precision
Performance Analysis of CO2 Heat Pump System Based on Ejector and Integrated Mechanical Subcooling
Experimental Investigation of Heat Pump Water Heater Using CO2 Zeotropic Mixture with Large Temperature Glide for Waste Heat Recovery
Related Author
Long Weiding
Zeng Tao
Wu Weidong
Li Min
Wang Jing
Hou Yaxiang
Guo Weichen
Wang Zeng
Related Institution
College of Engineering in Germany
School of Energy and Power Engineering, University of Shanghai for Science and Technology
Shanghai Customs Electromechanical Products Testing Technology Center
Shanghai Architectural Design and Research Institute Co., Ltd.
Key Laboratory of Performance Evolution and Control for Engineering Structures of Ministry of Education, Tongji University