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A study of the heat transfer characteristics of a compact spiral coil heat exchanger under wet-surface conditions

机译:紧凑螺旋盘管热交换器在湿表面条件下的传热特性研究

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摘要

The heat transfer characteristics and the performance of a spiral coil heat exchanger under cooling and dehumidifying conditions are investigated. The heat exchanger consists of a steel shell and a spirally coiled tube unit. The spiral-coil unit consists of six layers of concentric spirally coiled tubes. Each tube is fabricated by bending a 9.27 mm diameter straight copper tube into a spiral-coil of five turns. Air and water are used as working fluids. The chilled water entering the outermost turn flows along the spirally coiled tube, and flows out at the innermost turn. The hot air enters the heat exchanger at the center of the shell and flows radially across spiral tubes to the periphery. A mathematical model based on mass and energy conservation is developed and solved by using the Newton-Raphson iterative method to determine the heat transfer characteristics. The results obtained from the model are in reasonable agreement with the present experimental data. The effects of various inlet conditions of working fluids flowing through the spiral coil heat exchanger are discussed. (C) 2004 Elsevier Inc. All rights reserved.
机译:研究了螺旋盘管热交换器在冷却和除湿条件下的传热特性和性能。热交换器由钢壳和螺旋盘管组成。螺旋线圈单元由六层同心螺旋盘管组成。通过将直径9.27毫米的直铜管弯曲成五匝的螺旋线圈来制造每个管。空气和水用作工作流体。进入最外圈的冷冻水沿着螺旋盘管流动,并在最内圈流出。热空气在壳体的中央进入热交换器,并沿径向穿过螺旋管流向外围。建立了基于质量和能量守恒的数学模型,并通过使用牛顿-拉夫森迭代法确定传热特性进行求解。从模型中获得的结果与目前的实验数据基本吻合。讨论了流经螺旋盘管热交换器的工作流体的各种入口条件的影响。 (C)2004 Elsevier Inc.保留所有权利。

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