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A feasible system integrating combined heating and power system with ground-source heat pump

机译:将热电联产系统与地源热泵相结合的可行系统

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摘要

A system integrating CHP (combined heating and power) subsystem based on natural gas and GSHP (ground-source heat pump subsystem) in series is proposed. By help of simulation software-Aspen Plus, the energy performance of a typical CHP&GSHP-S (S refers to 'in series') system was analyzed. The results show that the system can make a better use of waste heat in flue gas from CHP (combined heating and power subsystem). The total system energy efficiency is 123% and the COP (coefficient of performance) of GSHP (ground-source heat pump) subsystem is 5.3. A referenced CHP&GSHP-P (P refers to 'in parallel') system is used for comparison; its total system energy efficiency and COP of GSHP subsystem are 118.6% and 3.5 respectively. Compared with CHP&GSHP-P system with different operating parameters, the CHP&GSHP-S system can increase total system energy efficiency by 0.8-34.7%, with related output ratio of heat to power (R) from 1.9 to 18.3. Furthermore, the COP of GSHP subsystem can be increased between the range 3.6 and 6, which is much higher than that in conventional CHP&GSHP-P system. This study will be helpful for other efficient GSHP systems integrating if there is waste heat or other heat resources with low temperature.
机译:提出了一种基于天然气的CHP(热电联产)子系统和GSHP(地源热泵子系统)串联的系统。借助仿真软件Aspen Plus,分析了典型CHP&GSHP-S(S称为“串联”)系统的能源性能。结果表明,该系统可以更好地利用CHP(热电联产子系统)烟气中的废热。系统总能源效率为123%,GSHP(地源热泵)子系统的COP(性能系数)为5.3。参考的CHP&GSHP-P(P表示“并行”)系统用于比较;其总系统能效和GSHP子系统的COP分别为118.6%和3.5。与具有不同运行参数的CHP&GSHP-P系统相比,CHP&GSHP-S系统可将总系统能效提高0.8-34.7%,相关的热功率输出比(R)从1.9提高至18.3。此外,GSHP子系统的COP可以增加到3.6到6之间,这比常规的CHP&GSHP-P系统要高得多。如果有废热或其他低温热资源,该研究将对其他有效的GSHP系统集成提供帮助。

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