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Experimental investigation of ice slurry flow pressure drop in horizontal tubes

机译:水平管中冰浆流压降的实验研究

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Pressure drop behaviour of ice slurry based on ethanol-water mixture in circular horizontal tubes has been experimentally investigated. The secondary fluid was prepared by mixing ethyl alcohol and water to obtain initial alcohol concentration of 10.3% (initial freezing temperature -4.4 degrees C). The pressure drop tests were conducted to cover laminar and slightly turbulent flow with ice mass fraction varying from 0% to 30% depending on test conditions. Results from flow tests reveal much higher pressure drop for higher ice concentrations and higher velocities in comparison to the single phase flow. However for ice concentrations of 15% and higher, certain velocity exists at which ice slurry pressure drop is same or even lower than for single phase flow. It seems that higher ice concentration delay flow pattern transition moment (from laminar to turbulent) toward higher velocities. In addition experimental results for pressure drop were compared to the analytical results, based on Poiseulle and Buckingham-Reiner models for laminar flow, Blasius. Darby and Melson, Dodge and Metzner, Steffe and Tomita for turbulent region and general correlation of Kitanovski which is valid for both flow regimes. For laminar flow and low buoyancy numbers Buckingham-Reiner method gives good agreement with experimental results while for turbulent flow best fit is provided with Dodge-Metzner and Tomita methods. Furthermore, for transport purposes it has been shown that ice mass fraction of 20% offers best ratio of ice slurry transport capability and required pumping power. (C) 2008 Elsevier Inc. All rights reserved.
机译:实验研究了基于乙醇-水混合物的圆形水平管中冰浆的压降行为。通过将乙醇和水混合以达到10.3%的初始酒精浓度(初始冷冻温度-4.4摄氏度)来制备二次流体。进行压降测试以覆盖层流和微湍流,冰质量分数取决于测试条件,其变化范围从0%到30%。流动测试的结果表明,与单相流动相比,较高的冰浓度和较高的速度会产生更高的压降。但是,对于浓度为15%或更高的冰,存在一定速度,在该速度下,冰浆压降与单相流相同或更低。似乎更高的冰浓度会延迟流型过渡时刻(从层流到湍流)向更高的速度过渡。此外,基于Poiseulle和Buckingham-Reiner层流Blasius模型,将压降的实验结果与分析结果进行了比较。 Darby和Melson,Dodge和Metzner,Steffe和Tomita的湍流区域和Kitanovski的一般相关性对两种流动形式均有效。对于层流和低浮力数,白金汉-雷纳方法与实验结果具有很好的一致性,而对于湍流,道奇-梅茨纳和富田方法提供了最佳拟合。此外,出于运输目的,已经表明,冰质量分数为20%可提供最佳比例的冰浆运输能力和所需的泵送功率。 (C)2008 Elsevier Inc.保留所有权利。

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