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Functional model and second law analysis method for energy efficient process design: Applications in HVAC systems design.

机译:节能过程设计的功能模型和第二定律分析方法:在HVAC系统设计中的应用。

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摘要

A method is developed for the conceptual design phase of Heating, Ventilating and Air Conditioning (HVAC) systems design. The main objectives of the method are to document HVAC process flow decisions without bias from equipment offerings, to evaluate the potential energy efficiency of HVAC process flow decisions independent of equipment selection, and to develop guidelines to increase the energy efficiency (reduce required work input) of HVAC systems.; Various functional and physical modeling methods are evaluated and requirements are generated for a new HVAC process flow model. A functional flow diagram is developed to document HVAC system process decisions, including intended component functions and the physical interactions between these functions independent of equipment selection.; Process flows are quantified and exergy (2nd Law of Thermodynamics) analysis is invoked to calculate the maximum efficiency (minimum work input) of each alternate functional flow diagram independent of equipment selection. The method assumes the equipment has zero exergy destruction (no internal losses unless so prescribed by flow conditions) and thus does not include losses dependent on equipment selection. Thus, the method distinguishes between the losses associated with the functional flow (process) decisions and those associated with equipment selection. Equipment selection hence proceeds with the functional flow diagram having the highest energy efficiency potential. Furthermore, the equipment independent functional flow efficiency serves as an efficiency benchmark to evaluate alternate equipment selections for each functional flow diagram.; Guidelines are developed based on exergy principles to increase HVAC system efficiency. The guidelines incorporate principles from exergy based design guidelines and current energy efficiency standards in engineering practice, such as ASHRAE 90.1 and others. Examples of heating, cooling and dehumidification systems are presented to illustrate the method. The examples illustrate the development of exergy flow schedules, exergy functional schedules, the evaluation of alternate designs and the implementation of the proposed exergy guidelines to improve system efficiency. Opportunities and future work required to apply the method in current HVAC design practice are discussed. Applications of this method to systems outside HVAC design are presented.
机译:为供暖,通风和空调(HVAC)系统设计的概念设计阶段开发了一种方法。该方法的主要目标是记录HVAC工艺流程决策,而不会因设备产品而产生偏差;评估HVAC工艺流程决策的潜在能效,而与设备选择无关,并制定提高能效的准则(减少所需的工作投入)暖通空调系统。评估了各种功能和物理建模方法,并针对新的HVAC工艺流程模型生成了需求。开发了功能流程图来记录HVAC系统过程决策,包括预期的组件功能以及这些功能之间的物理交互,而与设备选择无关。对工艺流程进行量化,并调用火用(热力学第二定律)分析,以计算与设备选择无关的每个替代功能流程图的最大效率(最小功输入)。该方法假定设备的火用破坏为零(除非流量条件规定,否则内部无损失),因此不包括取决于设备选择的损耗。因此,该方法区分了与功能流程(过程)决策相关的损耗和与设备选择相关的损耗。因此,设备选择以具有最高能效潜力的功能流程图进行。此外,与设备无关的功能流效率充当效率基准,以评估每个功能流程图的备选设备选择。基于火用原则制定指南以提高HVAC系统效率。该准则结合了基于火用的设计准则和工程实践中当前的能效标准(例如ASHRAE 90.1等)中的原则。介绍了加热,冷却和除湿系统的示例,以说明该方法。这些示例说明了火用流量表,火用功能表的开发,替代设计的评估以及拟议的火用准则的实施,以提高系统效率。讨论了在当前的HVAC设计实践中应用该方法所需的机会和未来的工作。介绍了该方法在HVAC设计之外的系统中的应用。

著录项

  • 作者

    Harutunian, Vigain.;

  • 作者单位

    The University of Texas at Austin.;

  • 授予单位 The University of Texas at Austin.;
  • 学科 Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 2003
  • 页码 299 p.
  • 总页数 299
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 机械、仪表工业;
  • 关键词

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