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Field measurement & verification of residential duct leakage methods and CFD analysis of HVAC Mixing box.

机译:住宅管道泄漏方法的现场测量和验证以及HVAC混合箱的CFD分析。

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摘要

The research work in this thesis is subdivided to providing the initial results of the experimental work followed by simulation work at the end. The experimental work proposes a new measurement technique for measuring total and local leakages in ducts. The experimental work in this research tries to focus effort on finding the approximate locations of leaks in the HVAC residential duct systems to direct better the effort of duct sealing. This technique can provide several advantages over existing techniques. It will eventually have a greater potential to locate leaks so that retrofitting in ducts can be focused on leaky locations. Field studies were performed in 11 houses in Las Vegas. Out of these, 4 houses were selected for fixing the leakages in them and the tests were repeated on these houses to verify the duct leakage reduction and benefits. The proposed method can offer a more cost effective approach when compared to other methods in the future. It reduces the total leakage for different houses by 14.4% to 46.5% of the total initial leakage rate.;The second part of this thesis consists of performing a 3-D, k-epsilon turbulent CFD study of HVAC Mixing box. Return air is supplied from the top of the box and outside air supplied from the back of mixing box. The temperature and velocity profiles of air in the HVAC mixing box were analyzed. The effects of carbon dioxide concentration in the mixing box were also analyzed. The current CFD simulation results were compared to previous field measurements of temperature stratification in a mixing box published in the International Journal of Energy Research in 2001. The CFD results showed that within the experimental error given in the previous paper the CFD temperature distribution predictions were reasonably close to the experimental results indicating that a detailed CFD approach can be used for predictive purposes.
机译:本文的研究工作可以细分为提供实验工作的初步结果,最后提供仿真工作。实验工作提出了一种新的测量技术,用于测量管道中的总泄漏和局部泄漏。本研究中的实验工作试图将精力集中在寻找HVAC住宅管道系统中泄漏的大致位置上,以更好地指导管道密封工作。与现有技术相比,该技术可以提供多个优点。最终,它将具有更大的定位泄漏的潜力,因此管道的改造可以集中在泄漏的位置。在拉斯维加斯的11所房屋中进行了实地研究。其中,选择了4个房屋来修复其中的泄漏,并在这些房屋上重复测试以验证管道泄漏的减少和好处。与将来的其他方法相比,该方法可提供更具成本效益的方法。它将不同房屋的总泄漏量减少了总初始泄漏率的14.4%至46.5%。本论文的第二部分包括对HVAC混合箱进行3-D,kε湍流CFD研究。回流空气从箱体顶部供应,而外部空气从混合箱体背面提供。分析了HVAC混合箱中空气的温度和速度分布。还分析了混合箱中二氧化碳浓度的影响。当前的CFD模拟结果与之前在2001年国际能源研究杂志上发表的混合箱中的温度分层现场测量结果进行了比较。CFD结果表明,在前一篇论文给出的实验误差范围内,CFD温度分布预测是合理的接近实验结果,表明可以使用详细的CFD方法进行预测。

著录项

  • 作者

    Vadlamani, Uday.;

  • 作者单位

    University of Nevada, Las Vegas.;

  • 授予单位 University of Nevada, Las Vegas.;
  • 学科 Engineering Mechanical.
  • 学位 M.S.E.
  • 年度 2010
  • 页码 117 p.
  • 总页数 117
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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