An Accurate Thermal Measurement Approach for Determining Fan Efficiencies Based on System Identification

S. Wiesche, Felix Reinker, R. Wagner, P. Epple, M. Fritsche, Hans J. Rußwurm
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引用次数: 1

Abstract

A novel thermal measurement approach is presented for the determination of fan efficiencies. This approach is not resting on a simple direct measurement of the occurring temperature difference but on a system identification based on the transient time signal of the involved temperature measurement device. The values of the system parameters can be identified after recording the transient response of the system to a step input, i. e. the fan is suddenly turned on. By means of a representative case study considering a centrifugal fan, the system identification and its relation to fan efficiency are presented. The outcome of the new thermal approach is compared with results of standardized fan performance tests and with results obtained by the direct temperature measurement method without system identification. It is shown that the direct temperature measurement provides typically poor data whereas the novel thermal approach leads to results which are well comparable with these obtained by standard performance test at the design point.
基于系统辨识的风机效率精确热测量方法
提出了一种新的风扇效率测量方法。这种方法不是基于对发生温差的简单直接测量,而是基于所涉及的温度测量装置的瞬态时间信号的系统识别。记录系统对阶跃输入的瞬态响应(即风扇突然打开)后,可以确定系统参数的值。以离心风机为例,给出了系统辨识及其与风机效率的关系。将新方法的结果与标准化风扇性能测试结果以及未经系统识别的直接测温方法的结果进行了比较。结果表明,直接温度测量通常提供较差的数据,而新的热方法导致的结果与在设计点通过标准性能测试获得的结果很好地比较。
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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