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Cooling load reduction through the use of stratification techniques in high bay industrial buildings.

机译:通过在高架工业厂房中使用分层技术来减少冷却负荷。

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摘要

Air conditioning of the work place is essential to health, comfort, and productivity. In an effort to reduce the cost of industrial air conditioning systems, some designers have tried to design systems that utilize the principle of thermal stratification. In these systems the building is usually divided into two horizontal zones. The lower zone, ten feet above the floor, is cooled while the upper zone is not. Three systems designed for stratification were tested and found not to produce the cooling load savings anticipated.; The thesis here is that two phenomena caused the poor performance. The first phenomenon is the fact that a supply diffuser or register acts as a low velocity jet and induces air into the primary air stream from the upper hot volume of the plant as well as the lower cool volume. The second phenomenon is that a return opening draws air from the center of a sphere and so pulls as much air from the upper volume as from the lower. Based on these concepts the objective of this research is to determine whether alternative designs can achieve the desired stratification.; The first phase of the research tested, in a one third scale chamber, various locations of supply and return grilles to see which combination created the greatest stratification. A combination supply-return device was found to create the largest difference in temperature from floor to ceiling while maintaining the lowest temperature in the lower level. This device was next tested in one room in an 18 foot high building using as control an identical room using normal thermal stratification techniques. The test room used from 30 to 50% less energy than the control room. Smoke tests showed that the supply-return device created a horizontal curtain of air which caused all of the return air to be drawn from the cool lower volume of the room.; In the third phase, the use of radiant cooling panels was tested in the chamber and their performance compared to the supply-return device. Radiant cooling panels were found to perform 8% better than the supply-return units.; A computer program which predicts the amount of stratification was written and is included. The program was tested against the test chamber data with good results.
机译:工作场所的空调对于健康,舒适和生产力至关重要。为了降低工业空调系统的成本,一些设计人员试图设计利用热分层原理的系统。在这些系统中,建筑物通常分为两个水平区域。较低的区域(距离地面十英尺)被冷却,而上方的区域则不被冷却。测试了三个设计用于分层的系统,发现没有达到预期的冷却负荷节省。这里的论点是两种现象导致性能下降。第一个现象是供气扩散器或调风器充当低速射流,将空气从工厂较高的热风量和较低的冷风量引入一次气流中。第二种现象是,回流孔从球体的中心抽吸空气,因此从上部空间抽吸的空气与从下部空间抽吸的空气一样多。基于这些概念,本研究的目的是确定替代设计是否可以实现所需的分层。研究的第一阶段在三分之一刻度的隔间中测试了送风和回风格栅的各个位置,以查看哪种组合产生了最大的分层。发现一种组合的供气回水装置可在地板与天花板之间产生最大的温差,同时将最低温度保持在较低水平。接下来在18英尺高的建筑物中的一个房间中测试该设备,并使用正常的热分层技术将同一房间用作对照。测试室的能耗比控制室低30%至50%。烟雾测试表明,回风装置产生了水平的空气幕,导致所有回风都从房间较低的较低空间中抽出。在第三阶段中,在室内对辐射冷却板的使用进行了测试,并比较了其与供气返回装置的性能。辐射散热板的性能比回电板好8%。编写并包含了一个计算机程序,该程序可预测分层的数量。根据测试室数据对程序进行了测试,结果良好。

著录项

  • 作者

    Olivieri, Joseph Bernard.;

  • 作者单位

    Wayne State University.;

  • 授予单位 Wayne State University.;
  • 学科 Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 1988
  • 页码 193 p.
  • 总页数 193
  • 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 11:50:48

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