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Modeling Variable-Airflow Parallel Fan-Powered Terminal Units with a Mass and Energy Balance Approach

机译:利用质量和能量平衡方法对可变气流并联风扇供电终端单元进行建模

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摘要

In the research reported in this paper, a performance model capable of characterizing parallel fan-powered terminal units (FPTUs) in the variable-airflow operation was developed by assembling its component models (a heating coil, a mixer, and a variable-speed fan) in a mass and energy balance approach. Two configurations of parallel FPTUs with different heating coil locations were considered. In addition, the performance impact of the air leakage from the FPTU housing to the plenum space was captured by integrating a leakage fraction into the model development. To demonstrate the use of the developed model, sample calculation results with four air leakage levels are provided over heating and cooling operating ranges, along with the equations for the model implementation. Incorporating the variable-airflow operation and air leakage allows the developed model to accurately represent the performance of parallel FPTUs at realistic operating conditions. This cannot currently be achieved using existing building energy simulation tools due to the exclusion of the variable-speed fan and air leakage in the performance modeling.
机译:在本文报道的研究中,通过组装其组件模型(加热线圈,混合器和变速风扇),开发了一种能够在可变气流操作中表征并联风扇​​供电终端单元(FPTU)的性能模型。 ),以质量和能量平衡的方式进行。考虑了具有不同加热线圈位置的并行FPTU的两种配置。此外,通过将泄漏分数集成到模型开发中,可以捕获从FPTU壳体到增压室空间的空气泄漏对性能的影响。为了演示开发模型的使用,在加热和冷却操作范围内提供了具有四个空气泄漏水平的样本计算结果,以及用于模型实现的方程式。结合可变气流运行和空气泄漏,可以使开发的模型在实际运行条件下准确表示并行FPTU的性能。由于在性能模型中排除了变速风扇和漏气,因此当前无法使用现有的建筑能耗模拟工具来实现。

著录项

  • 来源
    《ASHRAE Transactions》 |2018年第1期|33-43|共11页
  • 作者

    Peng Yin; Dennis L. ONeal;

  • 作者单位

    Department of Mechanical Engineering at the University of Louisiana at Lafayette, Lafayette, LA.;

    School of Engineering and Computer Science at Baylor University, Waco, TX.;

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  • 正文语种 eng
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