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Experimental validation of multiphase flow models and testing of multiphase flow meters: a critical review of flow loops worldwide

机译:多相流模型的实验验证及多相流量计的测试:全球流动回路的关键综述

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Around the world, research into multiphase flow is performed by scientists with hugely diverse backgrounds: physicists, mathematicians and engineers from mechanical, nuclear, chemical, civil, petroleum, environmental and aerospace disciplines. Multiphase flow models are required to investigate the co-current or counter-current flow of different fluid phases under a wide range of pressure and temperature conditions and in several different configurations. To compliment this theoretical effort, measurements at controlled experimental conditions are required to verify multiphase flow models and assess their range of applicability, which has given rise to a large number of multiphase flow loops around the world. These flow loops are also used intensively to test and validate multiphase flow meters, which are devices for the in-line measurement of multiphase flow streams without separation of the phases However, there are numerous multiphase flow varieties due to differences in pressure and temperature, fluids, flow regimes, pipe geometry, inclination and diameter, so a flow loop cannot represent all possible situations. Even when experiments in a given flow loop are believed to be sufficiently exhaustive for a specific study area, the real conditions encountered in the field tend to be very different from those recreated in the research facility. This paper presents a critical review of multiphase flow loops around the world, highlighting the pros and cons of each facility with regard to reproducing and monitoring different multiphase flow situations. The authors suggest a way forward for new developments in this area.
机译:在世界各地,研究了多相流的研究是由科学家们进行的,科学家们与巨大的背景:来自机械,核,化学,民用,石油,环境和航空航天学科的物理学家,数学家和工程师。多相流动模型需要在宽范围的压力和温度条件下以及几种不同的配置下研究不同流体相的电流或反电流流动。为了恭维这种理论努力,需要在受控实验条件下进行测量来验证多相流模型,并评估其适用性范围,这对全世界的大量多相流动环产生了升高。这些流程环也用于测试和验证多相流量计,这些流量计是用于多相流动流的无接线测量而不分离相位的装置,因此由于压力和温度,流体的差异,存在许多多相流量变化。 ,流量制度,管几何形状,倾斜和直径,因此流循环不能表示所有可能的情况。即使在给定流量回路中的实验被认为足够详尽的特定研究区域时,该领域遇到的真正条件往往与在研究设施中重现的流域往往是截然不同的。本文介绍了世界各地的多相流循环的关键评论,突出了每个设施的优缺点,同时复制和监测不同的多相流动情况。作者建议了这一领域的新发展的前进方向。

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