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Flow characteristics by particle image velocimetry in liquefied natural gas vaporizer model with several baffles

机译:带有多个折流板的液化天然气气化器模型中的颗粒图像测速流动特性

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摘要

Shell-and-tube vaporizers are the most commonly used and dominated types of vaporizers in liquefied natural gas (LNG) realm. Due to efficient performance, shell-side flow in this type of vaporizers has received considerable attention and has been investigated extensively. However, the detailed flow structure in the shell needs to be determined for reliable and effective design. Therefore, the objective of this study was to clarify the flow structure in shell by particle image velocimetry (PIV). Experiments were conducted using two types of model; 15% baffle cut having inlet and outlet positions in the direction of 90° to the cut and 30% baffle cut having inlet and outlet positions in the direction of 180° to the cut. Each test section is 169 mm in inner diameter and 344.6 mm in length. The flow features were characterized in different baffle cuts with regards to the velocity vector field and velocity distribution. The results show that the flow characteristics of 15% baffle cut type vaporizer are comparable to those of 30% baffle cut type vaporizer.
机译:壳管式蒸发器是液化天然气(LNG)领域中最常用和占主导地位的蒸发器。由于高效的性能,这种类型的蒸发器中的壳侧流受到了广泛的关注,并得到了广泛的研究。然而,为了可靠和有效的设计,需要确定壳体中的详细流动结构。因此,本研究的目的是通过粒子图像测速仪(PIV)阐明壳中的流动结构。实验使用两种类型的模型进行: 15%的挡板切口的入口和出口位置与切口成90°方向,而30%的挡板切口的入口和出口位置与切口成180°方向。每个测试部分的内径为169毫米,长度为344.6毫米。在不同的折流切口处,关于速度矢量场和速度分布,对流动特征进行了表征。结果表明,15%折流式蒸发器的流动特性与30%折流式蒸发器的流动特性相当。

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