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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Numerical investigation on fin-tube three-fluid heat exchanger for hybrid source HVAC&R systems
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Numerical investigation on fin-tube three-fluid heat exchanger for hybrid source HVAC&R systems

机译:混合源HVAC&R系统翅片管三流体热交换器的数值研究

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The energy consumption of HVAC&R systems is increasing rapidly, and application of hybrid source systems is an alternative solution. Utilizing three-fluid heat exchanger in hybrid source HVAC&R system can make the system more compact in construction, higher in thermal efficiency and lower in reliability risk. In this paper, a simulation model of a fin-tube three-fluid heat exchanger is built with distributed parameter method and validated by experimental data. Based on the demand of a new type of hybrid source system, the optimal circuit arrangement type and tube diameter are achieved. The heat transfer rates of the three fluids under different working conditions are investigated. The results also show that to ensure that cold fluid 1 is superheated in the outlet for the stable running of the system, flow rate and inlet pressure of the hot fluid and air inlet temperature should be higher than certain values, while flow rate and inlet pressure of cold fluid 1 should be lower than certain values. Air flow rate can be adjusted freely without range limit. This paper will help the design of fin-tube three-fluid heat exchanger and promote its application in HVAC&R systems. (C) 2015 Elsevier Ltd. All rights reserved.
机译:HVAC&R系统的能耗正在迅速增加,而混合动力源系统的应用是一种替代解决方案。在混合源HVAC&R系统中使用三流体热交换器可以使系统结构更紧凑,热效率更高,可靠性风险更低。本文采用分布参数法建立了翅片管三流体换热器的仿真模型,并通过实验数据进行了验证。根据新型混合动力源系统的需求,获得了最佳的电路布置类型和管径。研究了三种流体在不同工作条件下的传热速率。结果还表明,为了确保冷流体1在出口中过热,以使系统稳定运行,热流体的流量和入口压力以及进气温度应高于特定值,而流量和入口压力冷流体1的流量应低于某些值。空气流量可以自由调节,不受范围限制。本文将有助于翅片管三流体热交换器的设计,并促进其在HVAC&R系统中的应用。 (C)2015 Elsevier Ltd.保留所有权利。

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