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Investigation on the swirlmeter performance in low pressure wet gas flow

机译:低压湿气流中旋流仪性能的研究

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摘要

Wet gas flow is a subset of gas-liquid two-phase flow, and the swirlmeter has been used in wet gas flow metering more and more recently. The swirlmeter performance in low pressure wet gas flow was investigated. It is found that the entrained liquid present in a gas stream tends to induce a negative bias in the gas flow rate reading of swirlmeter comparing with equal gas flow rate. When the Lockhart-Martinelli parameter X, which is closely related to the liquid fraction, is bigger than a threshold value, the swirlmeter will not properly work due to the disappearing of vortex precession. It is also found that the liquid-induced gas flow rate reading errors of swirlmeter are dependent on X and the gas densiometric Froude number Fr_(g). A correlation for swirlmeter in low pressure wet gas flow is proposed, and it corrects the liquid-induced gas flow rate errors to an accepted accuracy under the tested conditions. It implies that the swirlmeter with the proposed correlation and the known liquid fraction may be used to meter the gas flow rate in wet gas applications with a relatively low liquid fraction.
机译:湿气流是气液两相流的子集,并且旋流计已越来越多地用于湿气流量计量中。研究了旋流仪在低压湿气流中的性能。发现与相等的气体流量相比,存在于气流中的夹带液体倾向于在旋流仪的气体流量读数中引起负偏压。当与液体分数密切相关的洛克哈特·马丁尼参数X大于阈值时,由于旋涡旋进消失,涡旋计将无法正常工作。还发现旋流计的液体引起的气体流速读取误差取决于X和气体密度弗劳德数Fr_(g)。提出了旋流仪在低压湿气流中的相关性,并在测试条件下将液体引起的气体流量误差校正到可接受的精度。这意味着具有建议的相关性和已知液体分数的旋流仪可用于测量液体分数相对较低的湿气应用中的气体流速。

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