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Prevention of Compressor Short Cycling in Direct-Expansion (DX) Rooftop Units-Part 2: Field Investigation

机译:防止直接膨胀(DX)屋顶单元中的压缩机短循环-第2部分:现场调查

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摘要

An advanced control algorithm was demonstrated in a companion paper (Pang and Liu 2011). It aims to address the compressor short-cycling challenge associatedwith traditional direct-expansion rooftop unit (DXRTU) operation. This paper presents the results of implementing this advanced control algorithm in a real building. The comparison between system performance of the improved control algorithm and the conventional control algorithm is also demonstrated. A newly installed DX RTU was selected, and field investigation showed that the conventional control algorithms caused serious compressor short cycling. By implementing the advanced control algorithm, the compressor short cycling was completely eliminated, resulting in a 15% total electricity savings.
机译:伴随论文中演示了一种先进的控制算法(Pang and Liu 2011)。它旨在解决与传统的直接膨胀式屋顶单元(DXRTU)操作相关的压缩机短循环挑战。本文介绍了在实际建筑物中实施此高级控制算法的结果。还演示了改进控制算法与常规控制算法在系统性能上的比较。选择了新安装的DX RTU,现场调查表明,传统的控制算法会导致严重的压缩机短循环。通过实施先进的控制算法,压缩机的短循环得以完全消除,从而节省了15%的总电量。

著录项

  • 来源
    《ASHRAE Transactions》 |2011年第2期|p.677-685|共9页
  • 作者

    Xiufeng Pang; Mingsheng Liu;

  • 作者单位

    Building Technologies Department, Lawrence Berkeley National Laboratory, Berkeley, CA;

    Architectural Engineering Department, University of Nebraska, Lincoln, NE;

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  • 原文格式 PDF
  • 正文语种 eng
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