Optimal Control Strategy for Parallel Fan-Powered VAV Systems

N. Nassif, Iffat Ridwana, M. Tahmasebi, P. Ebrahimi
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引用次数: 1

Abstract

Corresponding Author: Nabil Nassif Department of Civil and Architectural Engineering and Construction Management, University of Cincinnati, USA Email: nassifnl@ucmail.uc.edu Abstract: ASHRAE Guideline 36 recommends resetting the Supply Air Temperature (SAT) for Variable Air Volume (VAV) systems to balance fan power, heating and cooling loads and zone reheat requirements. This is achieved by employing a trim and response algorithm in conjunction with using the outside air temperature and readings from zone cooling loops. However, resetting the SAT for the VAV systems with parallel fan-powered terminal units according to Guideline 36 recommendations may not produce the best performance. Reducing the reheat requirement in parallel fan-powered terminal units can be done by increasing the air recirculating at the zone level rather than at the system level. This will allow keeping the system level SAT as cold as possible to reduce fan airflow for the zones in cooling with no or little effect on heating requirement for the zones in heating. Therefore, this study evaluates SAT control strategies and fan-powered terminal airflow rates to maximize total energy efficiency. Multiple airflow rate designs and operational variables such as the size of the fan-powered terminal unit and minimum airflow rate set point are included in this study. The simulation results for a typical small commercial building in various locations show that the new resetting method with local zone air recirculation enhancement can significantly reduce fan energy use with little effect on the heating requirement. The result may significantly improve the guideline related to the sequence of operation in a parallel fan-powered terminal unit.
并联风机供电变风量系统的最优控制策略
摘要:ASHRAE指南36建议重新设置变风量(VAV)系统的送风温度(SAT),以平衡风扇功率、冷热负荷和区域再热要求。这是通过结合使用外部空气温度和区域冷却回路的读数,采用修剪和响应算法来实现的。然而,根据指南36的建议,重新设置带有并联风扇供电终端单元的变风量系统的SAT可能不会产生最佳性能。减少并联风机驱动终端单元的再热需求可以通过增加区域级别而不是系统级别的空气再循环来实现。这将允许保持系统水平SAT尽可能低,以减少冷却区域的风扇气流,而对加热区域的加热要求没有或很少影响。因此,本研究评估了SAT控制策略和风扇驱动的终端气流速率,以最大限度地提高总能源效率。在本研究中包含了多种气流率设计和运行变量,如风机驱动终端的尺寸和最小气流率设定点。对不同地点的典型小型商业建筑的模拟结果表明,增强局部区域空气再循环的新复位方法可以显著降低风机能耗,且对采暖需求影响不大。该结果可显著改善与并联风扇供电终端单元中操作顺序有关的准则。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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