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Performance standards for walk-in coolers and freezers in the United States as a function of local weather conditions.

机译:根据当地天气条件,美国步入式冷藏柜和冰柜的性能标准。

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摘要

Walk-in coolers and freezers are medium (∼35º F) and low (∼-10º F to -20º F) temperature commercial food preservation equipment, with high market demand. There is considerable potential for energy savings through implementation of energy efficiency measures such as high-efficiency evaporator/condenser fan motors, feedback control systems, automatic door closers, strip curtains, suction line insulation, optimized envelope insulation design, high efficiency lighting, hot gas defrost, evaporator fan controllers, etc. However, minimum efficiency standards for walk-in coolers and freezers have not yet been developed. Development of performance based standards for walk-in coolers and freezers is tantamount to establishing an effective market system in order to achieve energy savings.;Development of minimum energy efficiency standards and performance based rating methods requires energy consumption data and cooling capacity data for various walk-in refrigeration system components as functions of the dry-bulb and wet-bulb temperatures of the ambient air surrounding the walk-in box and the condensing unit. In this project, walk-in cooler and freezer models were developed and their performance was simulated using Pack Calculation II software (Danfoss, 2009), in an effort to determine the annual energy consumption and total cooling for a set of representative climatic zones in the United States. Using this data, a performance metric, referred to as the Annual Energy Efficiency Ratio (AEER), was developed to estimate the annual energy efficiency of walk-in coolers and freezers.;A simplified testing method based on two representative condensing temperatures to calculate AEER was developed and demonstrated in this research project, based on the hourly ambient temperature data of twelve representative climatic zones in the United States of America. This technique can also be applied to any geographical location with climatic conditions similar to the twelve locations analyzed in this project. This simplified testing method will provide manufacturers with a practical and cost effective technique to test the annual performance of the walk-in refrigeration equipment and to improve operating efficiency. AEER values of walk-in freezer and cooler designs estimated in the current project using the proposed simulation technique closely matched with EER values published in the Federal Register Vol. 75, No.1, Jan 2010, Department of Energy.
机译:步入式冷藏柜和冷冻柜是中温(〜35ºF)和低温(〜-10ºF至-20ºF)的商用食品保鲜设备,市场需求很高。通过实施节能措施,例如高效的蒸发器/冷凝器风扇电机,反馈控制系统,自动闭门器,条形窗帘,吸气管道绝缘,优化的外壳绝缘设计,高效照明,热气,有巨大的节能潜力除霜,蒸发器风扇控制器等。但是,尚未为步入式冷却器和冷冻机制定最低效率标准。制定用于步入式冷却器和冰柜的基于性能的标准等同于建立有效的市场体系以实现节能。;制定最低能效标准和基于性能的评级方法需要各种行走的能耗数据和冷却能力数据内置式制冷系统的组件取决于随身携带盒和冷凝单元周围环境空气的干球温度和湿球温度。在该项目中,开发了步入式冷却器和冷冻器模型,并使用Pack Calculation II软件(Danfoss,2009年)对它们的性能进行了模拟,以期确定该区域一组典型气候区的年能耗和总冷却量。美国。利用这些数据,开发了一种性能度量标准,称为年度能效比(AEER),以估算步入式冷藏柜和冰柜的年度能效。;一种基于两个代表性冷凝温度的简化测试方法,用于计算AEER基于美国12个代表性气候带的每小时环境温度数据,在本研究项目中进行了开发和演示。该技术还可以应用于气候条件类似于该项目中分析的十二个位置的任何地理位置。这种简化的测试方法将为制造商提供一种实用且具有成本效益的技术,以测试步入式制冷设备的年度性能并提高运行效率。使用建议的模拟技术,在当前项目中估算的步入式冷冻机和冷却器设计的AEER值与联邦纪事卷中公布的EER值非常匹配。 75,No.1,2010年1月,能源部。

著录项

  • 作者单位

    University of Missouri - Kansas City.;

  • 授予单位 University of Missouri - Kansas City.;
  • 学科 Chemistry Physical.;Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 2011
  • 页码 116 p.
  • 总页数 116
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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