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首页> 外文期刊>Thermal science >EXPERIMENTAL INVESTIGATION OF TRANSCRITICAL CO_2 HEAT PUMP FOR SIMULTANEOUS WATER COOLING AND HEATING
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EXPERIMENTAL INVESTIGATION OF TRANSCRITICAL CO_2 HEAT PUMP FOR SIMULTANEOUS WATER COOLING AND HEATING

机译:跨式CO_2热泵同时冷却与供热的实验研究

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摘要

This paper presents the experimental performances of a transcritical CO_2 heat pump prototype for simultaneous water cooling and heating applications. System behavior and performances such as cooling capacity, heating capacity, and system coefficient of performance (COP) have been studied experimentally for various operating parameters such as water mass flow rate, water inlet temperature for both evaporator and gas cooler, and expansion valve opening. Performance is also compared with previous test data. Test indicates that the expansion valve opening has a significant effect as well near the full valve closing condition (up to 20°). Study shows that both the water mass flow rate and inlet temperature have significant effect on svstem performances. Test results show that, at gas cooler pressure of 90 bar, the effect of evaporator water mass flow rate on the system performances is more pronounced (COP increases 0.6 for I kg min.) compared to the gas cooler water mass flow rate (COP increases 0.4 for I kg min.) and the effect of gas cooler water inlet temperature is more significant (COP decreases 0.48 for given ranges) compared to the evaporator water inlet temperature (COP increases 0.43 for given ranges).
机译:本文介绍了跨临界CO_2热泵原型同时用于水冷却和加热应用的实验性能。对于各种运行参数,例如水质量流量,蒸发器和气体冷却器的进水温度以及膨胀阀开度,已通过实验研究了系统性能和性能,例如冷却能力,加热能力和系统性能系数(COP)。性能也与以前的测试数据进行了比较。测试表明,在完全关闭阀的状态(最大20°)附近,膨胀阀的开度也有很大影响。研究表明,水的质量流量和进水温度对系统性能都有重要影响。测试结果表明,在气体冷却器水压为90 bar的情况下,与气体冷却器水质量流率(COP增大)相比,蒸发器水质量流率对系统性能的影响更为明显(COP升高0.6 kg / kg)。对于每千克千克热量至少为0.4),与蒸发器进水温度(给定范围COP增加0.43)相比,气体冷却器进水温度的影响更显着(给定范围COP降低0.48)。

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