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Heat transfer reduction across the walls of refrigerated van trailers by the application of phase change material.

机译:通过使用相变材料,可减少冷藏厢式货车拖车壁的传热。

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摘要

The purpose of this thesis is to present the results obtained by incorporating phase change materials (PCMs) into the conventional insulated walls of commercial refrigerated van trailers (herein referred to as "refrigerated trucks"). The idea was to apply a building insulation technology (inclusion of PCMs) that was developed previously, at the University of Kansas, in the walls of refrigerated trucks. Although the technology had been applied to buildings, the concept is a novel one within the automotive industry. Although transportation experiences more dynamic challenges compared to its building counterpart, this analysis can open an interesting window for an innovative solution to an area of energy used in the transportation sector. In this research endeavor, two similar van trailer simulators were constructed and used to test the proposed technology under stationary environmental conditions. Both simulators were outfitted with the same number of measurement devices in the exact same locations. The technology was tested in similar days in terms of temperature and solar insolation. The relevant variables that were monitored were the heat flux across the walls of the simulators and temperatures, including surface and indoor air temperatures. Other relevant data, such as weather parameters (e.g., insolation) were also measured and recorded. The primary observation was how the peak heat flux and the total heat flow responded for the two simulators. The results obtained suggested that the van trailer simulator outfitted with PCMs had lower peak heat transfer rates by approximately 42.4% and total heat flow over a period of time one day by as much as 27.7%. Month-long results suggested that the reductions produced by the proposed technology were 43.8% for peak heat transfer rate and 26.3% for total heat transfer.;The refrigeration units that cool the insides of refrigerated trucks do so by burning fossil fuel, usually diesel. Any decrease in the refrigeration load requirements would eventually result in lower fuel consumption. The reduction in heat transfer rate (i.e., peak load) would assist in reducing the size of the cooling equipment, which could also result in cost savings.
机译:本文的目的是介绍通过将相变材料(PCM)掺入商用冷藏厢式货车的传统隔热壁(此处称为“冷藏卡车”)中获得的结果。这个想法是将一种以前在堪萨斯大学开发的建筑物保温技术(包括PCM)应用于冷藏卡车的墙壁上。尽管该技术已应用于建筑物,但该概念在汽车行业是一个新颖的概念。尽管与建筑相比,交通运输面临更多动态挑战,但该分析可以为交通运输领域所用能源领域的创新解决方案打开一个有趣的窗口。在这项研究工作中,构造了两个类似的货车拖车模拟器,并在固定的环境条件下对拟议的技术进行了测试。这两个模拟器在完全相同的位置配备了相同数量的测量设备。该技术已在相似的日子里进行了温度和日照方面的测试。监视的相关变量是穿过模拟器壁的热通量和温度,包括地面和室内空气温度。还测量并记录了其他相关数据,例如天气参数(例如,日照)。主要观察是两个模拟器的峰值热通量和总热流量如何响应。获得的结果表明,配备了PCM的厢式拖车模拟器的峰值传热率降低了约42.4%,一天的总热流降低了27.7%。长达一个月的研究结果表明,所提出的技术可将峰值传热率降低43.8%,将总传热率降低26.3%。制冷车厢内部的制冷装置通过燃烧化石燃料(通常为柴油)进行冷却。制冷负荷要求的任何降低最终都将导致更低的燃料消耗。传热速率(即峰值负荷)的降低将有助于减小冷却设备的尺寸,这也可以节省成本。

著录项

  • 作者

    Ahmed, Mashud.;

  • 作者单位

    University of Kansas.;

  • 授予单位 University of Kansas.;
  • 学科 Engineering Mechanical.;Energy.
  • 学位 M.S.
  • 年度 2009
  • 页码 125 p.
  • 总页数 125
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 机械、仪表工业;能源与动力工程;
  • 关键词

  • 入库时间 2022-08-17 11:37:53

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