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Enhanced finned-tube condenser design and optimization.

机译:增强的翅片管冷凝器设计和优化。

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摘要

Finned-tube heat exchangers are widely used in space conditioning systems, as well as any other application requiring heat exchange between liquids and gases. Their most widespread use is in residential air conditioning systems. Residential systems dictate peak demand on the U.S. national grid, which occurs on the hot summer afternoons, and thereby sets the expensive infrastructure requirement of the nation's power plant and electrical distribution system. In addition to peak demand, residential air conditioners are major energy users that dominate residential electrical costs and environmental impact.; The only significant opportunity for electrical power use reduction of residential air conditioners is in technology improvement of the finned-tube heat exchangers, i.e., condenser and evaporator coils. With the oncoming redesign of these systems in the next five years to comply with the regulatory elimination of R-22 used in residential air conditioners today, improvement in the design technology of these systems is timely.; An air conditioner condenser finned-tube coil design optimization methodology is derived and shown to lead to improved residential air conditioner efficiency at fixed equipment cost. This nonlinear optimization of the 14 required design parameters is impractical by systematic experimental testing and iteration of tens of thousands condenser coils in an air conditioning system. The developed methodology and results can be used in the redesign of residential systems for the new mandated environmentally friendly refrigerants and to meet increasing regulatory minimum system efficiencies.; Additionally, plain fins and augmented fins, (louvered), are compared using the developed model and optimization scheme to show the effect of the augmentation on system performance. Furthermore, an isolated condenser model was developed using condenser entropy generation minimization as the figure of merit to minimize the model complexity and computation time. Isolated model optimizations are compared with the system model optimum designs.
机译:翅片管换热器广泛用于空间调节系统,以及任何其他需要在液体和气体之间进行热交换的应用。它们最广泛的用途是在住宅空调系统中。住宅系统决定了美国国家电网的高峰需求,该需求发生在炎热的夏季午后,从而对美国发电厂和配电系统的基础设施提出了昂贵的要求。除了需求高峰以外,住宅空调是主要的能源使用者,主导着住宅用电成本和环境影响。减少家用空调的电力使用的唯一重要机会是翅片管式热交换器,即冷凝器和蒸发器盘管的技术改进。随着未来五年这些系统即将进行重新设计,以符合法规对当今家用空调中使用的R-22的取消,这些系统的设计技术应及时改进。得出了空调冷凝器翅片管盘管设计的优化方法,并显示出以固定的设备成本提高了住宅空调效率的方法。通过系统的实验测试和空调系统中成千上万个冷凝器盘管的迭代,对14个所需设计参数的这种非线性优化是不切实际的。所开发的方法和结果可用于新的强制性环保制冷剂的居住系统的重新设计,并满足日益提高的法规要求的最低系统效率。此外,使用开发的模型和优化方案比较了普通散热片和增强散热片(百叶窗式),以显示增强对系统性能的影响。此外,使用冷凝器熵生成最小化作为品质因数开发了隔离的冷凝器模型,以最小化模型的复杂性和计算时间。将隔离的模型优化与系统模型优化设计进行比较。

著录项

  • 作者

    Stewart, Susan White.;

  • 作者单位

    Georgia Institute of Technology.;

  • 授予单位 Georgia Institute of Technology.;
  • 学科 Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 2003
  • 页码 201 p.
  • 总页数 201
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 机械、仪表工业;
  • 关键词

  • 入库时间 2022-08-17 11:44:40

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