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Variable condition energy efficiency rating of a room air conditioner.

机译:室内空调的可变条件能效等级。

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摘要

Psychrometric testing of a Room Air Conditioner (RAC) has been undertaken using variable inlet conditions, rather than fixed inlet conditions common to current rating methods. The goals of the experiment are fourfold: (1) to develop a means of testing cooling capacity and efficiency with minimal time, effort and equipment, (2) to determine the experimental uncertainties inherent in such an approach, (3) to derive prediction equations for performance attributes of the test unit under ranges of inlet conditions, and (4) to apply the results of tests to a means of rating RAC's for specific localities based on local climate data.; The test method combines features of existing accepted tests for HVAC products, but differs by allowing indoor and outdoor inlet conditions of temperature and humidity to vary, and by influencing those conditions throughout ranges of interest using both output airflows from the test unit. Instead of collecting data at a few set points, as with current test standards, data has been collected to enable statistical analysis of the unit's performance over a continuum of conditions within a test time comparable to existing methods. Uncertainty analysis has been performed in accordance with ANSI/ASHRAE standard guidelines. Prediction equations for total and sensible cooling capacities and for energy efficiency ratio, based on outdoor and indoor dry-bulb temperatures and relative humidities, have been developed for the test unit. These performance models are used to compute ratings for the test unit for comparison to the manufacturer's ratings at standard conditions, and to synthesize ratings for varying climatic conditions for several cities in the United States.; The estimated rating of the test unit for standard test conditions agrees with the labeled rating within the range of error of the experiment. Further development of the distributed multi-point testing and rating technique can aid HVAC equipment designers in meeting growing challenges posed by expanding markets and evolving legislation regarding energy efficiency and refrigerant replacement. Improved ratings can enable product customization based on location of use, and consumers can make more informed choices when purchasing these appliances.
机译:室内空调(RAC)的风湿测试是使用可变的进气口条件进行的,而不是使用当前额定值方法常用的固定进气口条件进行的。实验的目标有四个方面:(1)开发一种以最少的时间,精力和设备来测试冷却能力和效率的方法;(2)确定这种方法固有的实验不确定性;(3)得出预测方程式在入口条件范围内,测试单元的性能属性;以及(4)将测试结果应用于根据当地气候数据对特定地区的RAC进行评级的方法。该测试方法结合了HVAC产品已接受的现有测试的功能,但不同之处在于,允许室内和室外的温度和湿度进入条件发生变化,并且使用测试单元的两种输出气流在整个目标范围内影响这些条件。与当前的测试标准不同,与其在几个设定点上收集数据,不如通过收集数据来对与现有方法相当的测试时间内连续条件下的设备性能进行统计分析。已根据ANSI / ASHRAE标准准则进行了不确定性分析。已针对测试单元开发了基于室外和室内干球温度和相对湿度的总制冷量和合理制冷量以及能效比的预测方程。这些性能模型用于计算测试单元的等级,以便与制造商在标准条件下的等级进行比较,并综合美国多个城市在不同气候条件下的等级。在标准误差条件下,测试单元在标准测试条件下的估计等级与标记等级一致。分布式多点测试和评级技术的进一步发展可以帮助HVAC设备设计人员应对不断扩展的市场以及不断发展的有关能效和制冷剂替代的法规所带来的日益严峻的挑战。改进的评级可以根据使用位置进行产品定制,并且消费者可以在购买这些设备时做出更明智的选择。

著录项

  • 作者

    Allsup, Carl B.;

  • 作者单位

    The University of Texas at San Antonio.$bMechanical Engineering & Biomechanics.;

  • 授予单位 The University of Texas at San Antonio.$bMechanical Engineering & Biomechanics.;
  • 学科 Engineering Mechanical.
  • 学位 M.S.
  • 年度 2008
  • 页码 95 p.
  • 总页数 95
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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