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Exploring heating performance of gas engine heat pump with heat recovery 被引量:3
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作者 董付江 刘凤国 +2 位作者 李先庭 尤学一 赵冬芳 《Journal of Central South University》 SCIE EI CAS CSCD 2016年第8期1931-1936,共6页
In order to evaluate the heating performance of gas engine heat pump(GEHP) for air-conditioning and hot water supply, a test facility was developed and experiments were performed over a wide range of engine speed(1... In order to evaluate the heating performance of gas engine heat pump(GEHP) for air-conditioning and hot water supply, a test facility was developed and experiments were performed over a wide range of engine speed(1400-2600 r/min), ambient air temperature(2.4-17.8 ℃) and condenser water inlet temperature(30-50℃). The results show that as engine speed increases from 1400 r/min to 2600 r/min, the total heating capacity and energy consumption increase by about 30% and 89%, respectively; while the heat pump coefficient of performance(COP) and system primary energy ratio(PER) decrease by 44% and 31%, respectively. With the increase of ambient air temperature from 2.4 ℃ to 17.8 ℃, the heat pump COP and system PER increase by 32% and 19%, respectively. Moreover, the heat pump COP and system PER decrease by 27% and 15%, respectively, when the condenser water inlet temperature changes from 30 ℃ to 50 ℃. So, it is obvious that the effect of engine speed on the performance is more significant than the effects of ambient air temperature and condenser water inlet temperature. 展开更多
关键词 gas engine heat pump coefficient of performance primary energy ratio heating mode heat recovery
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Experimental investigation of effect of refrigerant gases,compressor lubricant and operating conditions on performance of a heat pump
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作者 AFSHARI Faraz SÖZEN Adnan +2 位作者 KHANLARI Ataollah TUNCER Azim Doğuş ALI Hafiz Muhammad 《Journal of Central South University》 SCIE EI CAS CSCD 2021年第11期3556-3568,共13页
In the field of heat pumps,there are a number of parameters that affect the performance and efficiency of the apparatus,which have been the subject of studies by individual researchers in the literature.This study des... In the field of heat pumps,there are a number of parameters that affect the performance and efficiency of the apparatus,which have been the subject of studies by individual researchers in the literature.This study describes an experimental method in order to investigate the effects of some significant parameters on heat pump performance.In this regard,a laboratory heat pump setup has been utilized to operate in different working conditions for achieving an appropriate estimation to find out effects of mentioned parameters such as refrigerant type and charge amount,compressor oil viscosity,compressor cooling fan,secondary fluids temperature and flow rate.Different refrigerants have been selected and used as circulating fluid in the installed heat pump.Although this work has been devoted to a detailed attempt to recognize the effects of various parameters on the coefficient of performance(COP) value,an appropriate method has been carried out to survey the obtained results by using economic analysis.It was revealed that one of the main parameters is refrigerant charge amount which has a notable effect on COP.The temperature of the heat source was also tested and the performance of the system increased by more than 11% by employing mentioned modifications and various operating conditions.In addition,by selecting a low viscosity compressor oil,the system performance increased by 18%.This improvement is more than 6% for the case that cooling fan is installed to cool the compressor element. 展开更多
关键词 heat pump efficiency coefficient of performance(COP) performance compressor oil charge amount
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回收余热的空气源热泵热水器的性能模拟及试验研究 被引量:5
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作者 彭斌 王永强 《北京工业大学学报》 CAS CSCD 北大核心 2021年第12期1303-1310,1394,共9页
空气源热泵机组在较低的环境温度时,会出现结霜、制热量下降等问题.而余热空气源热泵系统以40℃低温余热作为低温热源,不仅避免了结霜、制热量下降等问题,而且回收了低温余热资源.通过构建空气源热泵系统的数学模型,揭示余热流量、温度... 空气源热泵机组在较低的环境温度时,会出现结霜、制热量下降等问题.而余热空气源热泵系统以40℃低温余热作为低温热源,不仅避免了结霜、制热量下降等问题,而且回收了低温余热资源.通过构建空气源热泵系统的数学模型,揭示余热流量、温度及冷水温度对系统性能的影响规律,并搭建试验平台验证数学模型的结果.结果显示,在热风温度为45℃、风量为4 500 m;/h时,系统的各项性能指标参数达到最佳值;随冷水温度的升高,系统性能系数(coefficient of performance, COP)的变化不明显;在冷水温度为10℃时,压比的偏差最大值为12.5%.回收余热的空气源热泵系统的性能模拟结果为低温余热的回收利用提供了一定的理论指导. 展开更多
关键词 空气源热泵 结霜 余热回收 数学模型 性能系数(coefficient of performance COP) 制热量
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