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首页> 外文期刊>HVAC&R research >Performance of a Run-Around System for HVAC Heat and Moisture Transfer Applications Using Cross-Flow Plate Exchangers Coupled with Aqueous Lithium Bromide
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Performance of a Run-Around System for HVAC Heat and Moisture Transfer Applications Using Cross-Flow Plate Exchangers Coupled with Aqueous Lithium Bromide

机译:使用错流板式换热器与溴化锂水溶液相结合的用于HVAC热量和水分传递应用的全能运行系统的性能

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摘要

A two-dimensional steady-state mathematical model is developed to study the heat and water vapor transport in a run-around heat and moisture exchanger coupled with a lithium bromide solution for air-to-air exchanger applications. A finite difference method is employed to solve the governing equations of the heat and moisture exchange, which gives the outlet air properties and effectiveness for selected operating conditions for each cross-flow exchanger. Using algorithms for the HVAC supply and exhaust exchangers coupled with a run-around liquid loop, the overall effectiveness of the run-around energy recovery system is shown to be dependent on the flow rate of both the pumped fluid and each airflow, the size and design of each exchanger, and the inlet operating conditions. It is shown that an overall effectiveness of 70% can be achieved when the run-around exchanger sizes and operating conditions are correctly chosen.
机译:建立了二维稳态数学模型,以研究在周转式热湿交换器中结合了溴化锂溶液的空气和空气交换器中的热量和水蒸气传输。采用有限差分法来求解热量和水分交换的控制方程式,从而为每个错流交换器提供了选定的运行条件下的出口空气特性和有效性。通过将HVAC供气和排气热交换器的算法与周转液体回路结合使用,表明周转能量回收系统的整体效率取决于泵送流体和每种气流的流量,大小和每个交换器的设计以及入口的工作条件。结果表明,正确选择环行换热器的尺寸和运行条件,可以达到70%的总体效率。

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