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Development of an advanced heat exchanger model for steady state and frosting conditions.

机译:开发了用于稳态和结霜条件的高级换热器模型。

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摘要

Air-to-refrigerant fin-and-tube heat exchangers are a key component in the heating, air conditioning and refrigeration industry. Considering their dominance, the industry has focused immensely on employing computer modeling in their design and development. Recently, advances in manufacturing capabilities, heat exchanger technology coupled with the move towards new environment-friendly refrigerants provide unprecedented challenges for designers and opportunities for researchers. In addition, the field of Computational Fluid Dynamics (CFD) has assumed a greater role in the design of heat exchangers.;This research presents the development of an advanced heat exchanger model and design tool which aims to provide greater accuracy, design flexibility and unparalleled capabilities compared to existing heat exchanger models. The heat exchanger model developed here achieves the following. (1) Account for tube-to-tube conduction along fins, which is known to degrade the performance of heat exchangers, especially in carbon dioxide gas coolers.;(2) Study and develop heat exchangers with arbitrary fin sheets, which meet performance as well as packaging goals with minimal consumption of resources (3) Allow engineers to integrate CFD results for air flow through a heat exchanger, which the modeling tool employs to develop its air propagation sequence leading to improved accuracy over existing models which assume normal air flow propagation (4) Function in a quasi-steady state mode for the purpose of simulating frost accumulation and growth on heat exchangers, and completely simulate local heat transfer degradation, as well as blockage of flow passage on air side.;Additionally, the heat exchanger model was used to investigate gains that are enabled due to the presence of cut fins in carbon dioxide gas coolers and develop design guidelines for engineers. Finally, this dissertation analyzes the implications of minimum entropy generation on heat exchanger performance criteria of heat capacity and pressure drop, as well as evaluates the ability of entropy generation minimization as a design objective. This also serves as the first step toward an expert knowledge-based system for guiding engineers towards better designs, during the process of heat exchanger design.
机译:空气制冷剂翅片管热交换器是供热,空调和制冷行业的关键组件。考虑到它们的主导地位,该行业在其设计和开发中非常重视采用计算机建模。最近,随着制造能力的提高,热交换器技术以及向新型环保制冷剂的发展,为设计师带来了前所未有的挑战,并为研究人员提供了机遇。此外,计算流体动力学(CFD)领域在热交换器的设计中扮演着更重要的角色;该研究提出了一种先进的热交换器模型和设计工具的开发,旨在提供更高的精度,设计灵活性和无与伦比的性能与现有换热器型号相比的能力。这里开发的热交换器模型实现了以下目的。 (1)考虑沿散热片的管对管传导,已知这会降低热交换器的性能,尤其是在二氧化碳气体冷却器中;(2)研究和开发具有任意散热片的热交换器,这些热交换器满足以下要求以及以最少的资源消耗实现包装目标(3)允许工程师集成通过热交换器的气流的CFD结果,该建模工具利用该CFD结果来开发其空气传播顺序,从而比假定正常空气传播的现有模型提高了准确性(4)以准稳态模式运行,以模拟热交换器上的霜冻积累和生长,并完全模拟局部传热退化以及空气侧流动通道的阻塞。用于研究由于二氧化碳气体冷却器中存在切鳍而获得的收益,并为工程师制定了设计指南。最后,本文分析了最小熵产生对换热器热容量和压降性能指标的影响,并以最小化熵产生为设计目标。这也是朝着基于专家知识的系统迈出的第一步,该系统可指导工程师在换热器设计过程中进行更好的设计。

著录项

  • 作者

    Singh, Varun.;

  • 作者单位

    University of Maryland, College Park.;

  • 授予单位 University of Maryland, College Park.;
  • 学科 Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 224 p.
  • 总页数 224
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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