Experimental investigation on pressure drop characteristics of two-phase hydrocarbon mixtures flow in the shell side of LNG spiral wound heat exchangers
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Experimental investigation on pressure drop characteristics of two-phase hydrocarbon mixtures flow in the shell side of LNG spiral wound heat exchangers

机译:液晶螺旋缠绕热交换器壳侧两相烃混合物流动压降特性的实验研究

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HighlightsNew two-phase pressure drop data for shell side of spiral wound heat exchanger were obtained.Ethane/propane mixtures pressure drop characteristics were analyzed.Pressure drop decreases with increasing ethane molar ratio at vapor quality lower than 0.4.Pressure drop increases with increasing ethane molar ratio at vapor quality larger than 0.6.A pressure drop correlation with good accuracy was proposed.AbstractThe pressure drop characteristics of two-phase hydrocarbon mixtures flow in the shell side of spiral wound heat exchangers is a key factor in the application of such exchangers in liquefied natural gas (LNG) process. A cryogenic experimental rig was established to obtain pressure drop data and observe flow patterns in the present study. As main components of the working fluids at the shell side, ethane and propane mixtures were chosen as the tested fluid. The experimental conditions include ethane/propane molar ratios of 0:100, 10:90, 30:70, 60:40, mass fluxes of 40–80kg (m2·s)?1and vapor qualities of 0.2–0.9, respectively. The results show that, the frictional pressure drop increases with increasing mass flux and vapor quality; at the vapor qualities lower than 0.4, the frictional pressure drop decreases with increasing ethane molar ratio, while at the vapor qualities larger than 0.6, the frictional pressure drop increases with increasing ethane molar ratio. A correlation of pressure drop was developed covering 98% of the experimental data within a deviation of ±25%.]]>
机译:<![cdata [ 亮点 获得了螺旋缠绕热交换器的壳侧的新两相压降数据。 ethane /丙烷混合物分析压降特性。 压降随着蒸气质质量的增加而增加,乙烷摩尔比低于0.4。 压降增加将乙烷摩尔比大于0.6的蒸气质量。 < CE:PARA ID =“P0025”查看=“全部”>提出了与良好准确度的压力下降相关性。 抽象 两相烃混合物的压降特性螺旋缠绕热交换器的壳侧是在液化天然气(LNG)过程中这种交换器应用的关键因素。建立了低温实验钻机,以获得压力下降数据并观察本研究中的流动模式。作为壳侧的工作流体的主要成分,选择乙烷和丙烷混合物作为测试流体。实验条件包括乙烷/丙烷摩尔比0:100,10:90,30:70,60:70,60:40,质量助量为40-80kg(m 2 ·s)?1 分别为0.2-0.9的蒸气质量。结果表明,随着质量磁通量和蒸气质量的增加,摩擦压降增加增加;在低于0.4的蒸气质量下,摩擦压降随着乙烷摩尔比的增加而降低,而在大于0.6的蒸汽质量下,摩擦压降随着乙烷摩尔比的增加而增加。覆盖压降的相关性覆盖±25%的实验数据的98%。 ]]>

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