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A study on the performance of the airside heat exchanger under frosting in an air source heat pump water heater/chiller unit

机译:空气源热泵冷热水机组结霜时空气侧热交换器的性能研究

摘要

Air source heat pump water heater/chiller (ASHPWHC) units, a cooling and heating source for buildings becomes increasingly popular. However, when such a unit is operated as a heating source under low ambient temperature in winter, the formation of frost on the surface of its airside heat exchanger becomes problematic, leading to the degradation of the heat exchanger's performance or even the shutdown of a unit. Therefore it is necessary to have a detailed investigation on the operational characteristic of the airside heat exchanger in an ASHPWHC unit under frosting in order to optimize its structural layout, thus increasing its energy efficiency and operational reliability. This paper first reports on the development of a distributed mathematical model of the airside heat exchanger under frosting in an ASHPWHC unit. The model, firstly seen in open literature, consists of a frosting sub-model and a heat exchanger sub-model. This is followed by an evaluation of operational characteristics of the airside heat exchanger under frosting in an ASHPWHC unit using the model developed. In addition, the impacts of frosting on the operational performance of an ASHPWHC unit were also evaluated. The discussions of optimizing the structural layout of finned tubes used in an airside heat exchanger and improving defrosting control measures are also included in analyzing the simulated results.
机译:空气源热泵热水器/制冷机(ASHPWHC)单元,一种用于建筑物的冷却和加热源,变得越来越流行。然而,当这种单元在冬季在低环境温度下用作加热源时,其空气侧热交换器表面上的霜的形成变得成问题,导致热交换器的性能降低甚至关闭。 。因此,有必要对结霜条件下的ASHPWHC单元中的空气侧热交换器的运行特性进行详细研究,以优化其结构布局,从而提高其能源效率和运行可靠性。本文首先报道了ASHPWHC机组结霜时空气侧热交换器的分布式数学模型的发展。该模型首先在公开文献中看到,由结霜子模型和热交换器子模型组成。然后,使用开发的模型评估ASHPWHC装置结霜时空气侧热交换器的运行特性。此外,还评估了结霜对ASHPWHC机组运行性能的影响。对模拟结果进行分析时,还讨论了优化空气侧热交换器中使用的翅片管的结构布局并改善除霜控制措施的讨论。

著录项

  • 作者

    Yao Y; Jiang Y; Deng S; Ma Z;

  • 作者单位
  • 年度 2004
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 入库时间 2022-08-20 20:56:15

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