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Experimental verification of a virtual water flowmeter applicable to air conditioning systems

机译:适用于空调系统的虚拟水流量计的实验验证

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The main purpose of this research is to suggest a virtual water flowmeter applicable in hydraulic systems with low-cost sensors. Practical procedures for realizing virtual water flowmeters for constant flow pumps (i.e., Cases 1 and 2) and variable flow pumps (i.e., Cases 3 and 4) are proposed in this paper. In Case 1, for measuring the water flow rate through a constant flow pump, the pump head was measured and the water flow rate was estimated using the pump characteristic curve obtained from the manufacturer or by deriving an empirical model based on the field measurement data. In Case 2, the water flow rate through a valve with a constant flow pump was estimated by measuring the pressure head between the valve and the valve opening position. The valve characteristic curve can be obtained by deriving an empirical model based on the initial field test results. The water flow rate through the variable flow pump was calculated, using the pump affinity laws and an empirical model, by measuring the frequency (i.e., Case 3) or input power (i.e., Case 4). The initial setup and test procedures for virtual flowmeters are also proposed in this research for practical use in the field. To verify the proposed procedures, experiments were conducted using constant and variable flow pumps in a pilot system. It was found that the virtual water flowmeters showed 2.9% to 6.7% of root mean square error from Case 1 to Case 4, compared with an ultrasonic water flowmeter, through long-term experimental verification. (C) 2017 Elsevier B.V. All rights reserved.
机译:这项研究的主要目的是建议一种适用于带有低成本传感器的液压系统的虚拟水流量计。本文提出了实现恒定流量泵(案例1和2)和可变流量泵(案例3和4)的虚拟水流量计的实用程序。在情况1中,为了测量通过恒流泵的水流量,测量泵的扬程,并使用从制造商获得的泵特性曲线或通过基于现场测量数据得出经验模型来估算水流量。在情况2中,通过测量阀门与阀门打开位置之间的压头来估算通过恒流泵阀门的水流量。阀特性曲线可以通过基于初始现场测试结果得出经验模型来获得。通过使用泵亲和力定律和经验模型,通过测量频率(即案例3)或输入功率(即案例4),计算通过可变流量泵的水流量。这项研究中还提出了虚拟流量计的初始设置和测试程序,以供在现场实际使用。为了验证所提出的程序,在先导系统中使用恒流和可变流量泵进行了实验。通过长期的实验验证,发现与超声波水流量计相比,虚拟水流量计从案例1到案例4的均方根误差为2.9%至6.7%。 (C)2017 Elsevier B.V.保留所有权利。

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