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Natural convection energy recovery loop analysis, part Ⅰ: energy and exergy studies by varying inlet air flow rate

机译:自然对流能量回收回路分析,第Ⅰ部分:各种进气流流量的能量和漏洞研究

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The natural convection energy recovery loop is analyzed experimentally in different airflow rates. The system was introduced previously as a prototype of the standalone air conditioning system and its transient and steady performance was verified. As a new generation of energy recovery tool between the building return and fresh air, the system is rated from the viewpoints of energy and exergy. Different forms of effectiveness and 2nd law efficiency are studied and their values extracted for inlet airflow rates of 2-6 m~3/h. The results show that the prominent factor that controls the system behavior is the concentration ratio from which the solution free- motion originated. The maximum sensible, latent, and total effectiveness of the system are 0.23,062, and 0.54 respectively and are for the airflow rate of 2m~3/h. It is confirmed that the number of a transfer unit (NTU) and capacity ratio (Cr*) are not independent and are varied oppositely to each other. By increasing the airflow rate, the mass flow rate and heat capacity rate of desiccant solution increase more than that of air streams. For flow rates less than 3.5m~3/h, external heat transfer is just enough to induce natural motion of desiccant and in this way the loop performance is similar to a forced convection energy transfer loop which exchanges heat and moisture only between the air streams.
机译:通过实验在不同的气流速率下进行自然对流能量回收回路。该系统以前作为独立空调系统的原型引入,验证了其瞬态和稳定的性能。作为建筑物回流和新鲜空气之间的新一代能量回收工具,从能量和出境的观点来看系统。研究了不同形式的有效性和第2律效率,并提取其值的入口气流率为2-6m〜3 / h。结果表明,控制系统行为的突出因子是浓度比从其自由运动起源的浓度比。系统的最大明智,潜伏和总有效性分别为0.23,062和0.54,用于气流率为2m〜3 / h。确认转移单元(NTU)和容量比(CR *)的数量不是独立的并且彼此相反地变化。通过增加气流率,干燥剂溶液的质量流量和热容率增加到空气流的大于空气流。对于小于3.5M〜3 / h的流速,外部传热仅足以诱导干燥剂的自然运动,以这种方式,环路性能类似于强制对流能量转移回路,该电源转移回路仅在空气流之间交换热量和湿度。

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