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Experimental study of the pressure reset control strategy for energy-efficient fan operation - Part 2: Variable air volume ventilation system with decentralized fans

机译:节能风扇运行的压力复位控制策略的实验研究-第2部分:分散风扇的可变风量通风系统

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This paper is the second part of a two-part series which investigates the energy saving potentials in a novel mechanical ventilation system by replacing terminal dampers with decentralized fans. The present study (Part 2) proposes a method to control the main fan as well as the decentralized fans in such a way that the system is balanced for different demand requests. The control method comprises two levels, zone level and system level control, and is based on measuring static pressure in the duct system similar to the energy-efficient control proposed for the conventional ventilation system in Part 1. Two identical experimental mock-ups, one with the dampers and one with the decentralized fans were used in a laboratory environment to evaluate the performance of the novel ventilation system and to compare the two ventilation systems from power use point of view. Experimental results indicate the ability of the proposed method to control the ventilation system with decentralized fans. The measured power use of the two ventilation systems was almost the same for the range of tested total airflow rates, except when the total airflow rate was rather low. Calculations, however, reveal an energy saving potential of around 30% depending on the efficiency of the main fan. (C) 2018 Elsevier B.V. All rights reserved.
机译:本文是一个由两部分组成的系列文章的第二部分,该系列文章探讨了一种新型机械通风系统的节能潜力,该技术是通过用分散式风扇代替终端风门来实现的。本研究(第2部分)提出了一种控制主风扇和分散风扇的方法,以使系统针对不同的需求需求进行平衡。该控制方法包括区域控制和系统控制两个级别,并且基于测量管道系统中的静压的方法,类似于第1部分中为常规通风系统提出的节能控制。两个相同的实验模型,一个在实验室环境中,使用带有风门的风阀和带有分散风扇的风阀来评估新型通风系统的性能,并从用电角度比较两种通风系统。实验结果表明,该方法具有控制分散风扇通风系统的能力。在测试的总风量范围内,两个通风系统的测得的电力使用量几乎相同,除非总风量相当低。但是,计算结果表明,根据主风扇的效率,节能潜力约为30%。 (C)2018 Elsevier B.V.保留所有权利。

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