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Developing a new frosting map to guide defrosting control for air-source heat pump units

机译:制定新的结霜图以指导空气源热泵机组的除霜控制

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The development of a new frosting map for air-source heat pumps (ASHPs) based on a temperature-humidity chart is reported in this paper. Through a parametric analysis, two boundary lines (a condensing line and a frosting line) were obtained, dividing the map into three regions: a non-frosting region, a condensing region and a frosting region. Using the simulation results from a generalized numerical model of frost growth, the frosting region was further divided into three indicative zones representing different frosting levels: a severe frosting zone, a moderate frosting zone (I, II) and a mild frosting zone (I, II). Lab and field tests were conducted in order to verify the correctness of the zoning and to obtain indicative defrosting intervals for ASHPs operated at different zones. Based on the test results and using the developed map, reference defrosting intervals were suggested for different frosting zones, and they can be used in conjunction with a conventional defrosting control method to avoid potential mal-defrosting. (C) 2015 Elsevier Ltd. All rights reserved.
机译:本文报道了基于温度-湿度图为空气源热泵(ASHP)开发新的结霜图的报道。通过参数分析,获得了两条边界线(冷凝线和结霜线),将地图分为三个区域:非结霜区域,冷凝区和结霜区域。使用来自霜冻生长的广义数值模型的模拟结果,将结霜区域进一步划分为三个代表不同结霜程度的指示性区域:严重结霜区域,中度结霜区域(I,II)和中度结霜区域(I,II) II)。为了验证分区的正确性并获得在不同区域运行的ASHP的指示除霜间隔,进行了实验室和现场测试。根据测试结果并使用开发的地图,建议为不同的结霜区域设置参考除霜间隔,并且可以将它们与常规除霜控制方法结合使用,以避免潜在的不良除霜。 (C)2015 Elsevier Ltd.保留所有权利。

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