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Cost effective combined axial fan and throttling valve control of ventilation rate

机译:具有成本效益的组合式轴流风扇和节流阀的通风率控制

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摘要

This paper is concerned with Proportional-Integral-Plus (PIP) control of ventilation rate in mechanically ventilated agricultural buildings. In particular, it develops a unique fan and throttling valve control system for a 22m3 test chamber, representing a section of a livestock building or glasshouse, at the Katholieke Universiteit Leuven. Here, the throttling valve is employed to restrict airflow at the outlet, so generating a higher static pressure difference over the control fan. In contrast with previous approaches, however, the throttling valve is directly employed as a second control actuator, utilising airflow from either the axial fan or natural ventilation. The new combined fan/valve configuration is compared with a commercially available PID-based controller and a previously developed scheduled PIP design, yielding a reduction in power consumption in both cases of up to 45%.
机译:本文涉及对机械通风的农业建筑中的通风率进行比例积分加法(PIP)控制。特别是,它为鲁汶的凯索里耶克大学的22 m3测试室开发了一套独特的风扇和节流阀控制系统,该测试室代表了牲畜建筑物或温室的一部分。在此,节流阀用于限制出口处的气流,从而在控制风扇上产生更高的静压差。然而,与先前的方法相比,节流阀利用来自轴流风扇或自然通风的气流直接用作第二控制致动器。将新的组合式风扇/阀配置与市售的基于PID的控制器和先前开发的预定PIP设计进行了比较,两种情况下的功耗均降低了45%。

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