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Pressure-Loss Correlations for Designing Foam Proportioning Systems

机译:设计泡沫配比系统的压力损失相关性

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Aspirating and compressed-air foam systems incorporate proportioners or pumps designed to draw a sufficient rate of foam concentrate into the flowing stream of water. The selection of relevant piping follows from the engineering correlations linking the pressure loss with the flow rate of a concentrate, for specified temperature (usually 20℃) and pipe size. Undocumented reports exist in industry that such correlations are often inaccurate, resulting in the design of underperforming suppression systems. To illustrate the problem, we introduce two correlations, sourced from industry and developed for the same alcohol-resistant concentrate, which describe, respectively, effective viscosity and pressure loss as functions of flow rate and pipe diameter. We then investigate the internal consistency of each data set. We demonstrate that neither of the data sets displays internal consistency, and suggest possible errors in data processing and unit conversion that might have led to the observed discrepancies. We correct the original data to produce correlations that are internally consistent and are characterised by realistic rheology. We then investigate three other pressure-loss correlations (one for Newtonian and two for non-Newtonian concentrates), obtained from a different manufacturer, to demonstrate the widespread existence of inaccurate correlations in industry.
机译:吸气和压缩空气泡沫系统装有比例混合器或泵,设计成可将足够比例的泡沫浓缩物吸入流动的水流中。对于指定的温度(通常为20℃)和管道尺寸,应根据工程关联将压力损失与浓缩液的流量联系起来,从而选择相关的管道。在行业中,没有记录的报告表明这种相关性常常是不准确的,从而导致性能不佳的抑制系统的设计。为了说明该问题,我们介绍了两种相关性,它们是从工业中获得的,并且是针对同一耐酒精浓缩物开发的,分别描述了有效粘度和压力损失与流量和管径的关系。然后,我们调查每个数据集的内部一致性。我们证明了这两个数据集均未显示内部一致性,并建议了可能导致观察到的差异的数据处理和单位转换中的可能错误。我们校正原始数据以产生内部一致且具有现实流变学特征的相关性。然后,我们研究了从另一家制造商处获得的其他三个压力损失相关性(一个用于牛顿浓缩物,另一个用于非牛顿浓缩物),以证明工业中存在不准确的相关性。

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