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首页> 外文期刊>Sustainable Energy Technologies and Assessments >Performance analysis of a novel organic fluid filled regenerative heat exchanger used heat recovery ventilation (OHeX-HRV) system
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Performance analysis of a novel organic fluid filled regenerative heat exchanger used heat recovery ventilation (OHeX-HRV) system

机译:新型有机流体填充再生热交换器的性能分析使用热回收通风(OHEX-HRV)系统

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摘要

In this study, a novel organic fluid-filled regenerative heat exchanger used heat recovery ventilation (OHeX-HRV) system was designed. Five organic-based fluids (R11, R123, R245fa, n-Pentane and Isopentane) were selected by considering operating conditions. Indoor air exit temperature, outdoor air inlet temperature and recovered heat by regenerative heat exchanger were analysed depending on varying airspeeds (V-air = 1,2,3 m/s) and outdoor environment temperatures (0-40 degrees C). As a result of the study, it was observed that recovered heat decreased as the outdoor environment temperature approaches from 0 degrees C to comfort temperature of indoor environment (24 degrees C). In contrast, the amount of heat recovered increased as the outdoor environment temperature diverges from indoor comfort temperature. The amount of recovered energy increased directly related to increasing airspeed thanks to increasing air mass flow. Among selected working fluids, n-Pentane (10.812 kJ/kg) and Isopentane (10.716 kJ/kg) used OHeX-HRV system resulted in the highest energy recovery per unit air mass. From n-Pentane used OHeX-HRV system, hourly energy recovery was calculated as 426.22 kJ/h when airspeed was 3 m/s. After comprehensive analyses, it was concluded that n-Pentane which has also superiority in terms of safety and environmental impact showed the best heat recovering performance when used in proposed OHeX-HRV system.
机译:在该研究中,设计了一种新型有机流体填充的再生热交换器使用的热回收通风(OHEX-HRV)系统。通过考虑操作条件,选择五种有机基流体(R11,R123,R245FA,正戊烷和异戊烷)。根据不同的空速(V-AIR = 1,2,3 M / s)和室外环境温度(0-40℃),通过再生热交换器进行室内空气出口温度,室外空气入口温度和回收热。由于该研究的结果,观察到,随着室外环境温度从0°C接近室内环境(24摄氏度)的舒适温度,恢复的热量降低。相反,随着室外环境温度偏差,回收的热量增加增加。由于空气质量流量的增加,回收能量的量与增加的空速直接相关。在所选择的工作流体中,N-戊烷(10.812kJ / kg)和异戊烷(10.716kJ / kg)使用OCEX-HRV系统,导致每单位空气质量的最高能量回收。从N-戊烷使用的OHEX-HRV系统中,当空速为3米/秒时,每小时能量恢复计算为426.22 kJ / h。综合分析后,得出结论是,在安全和环境影响方面的优越性,在拟议的OHEX-HRV系统中使用时,N-戊烷也显示出最佳的热回收性能。

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