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STUDY OF CONDENSATION FLOW PATTERNS AND HEAT TRANSFER CHARACTERISTIC ON A HORIZONTAL TUBE BUNDLE

机译:水平管束中的冷凝流动模式和传热特性的研究

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The numerous studies on condensation flow patterns and heat transfer were focused on the horizontal inside single tube. A number of heat and mass transfer correlations are used for design of shellside condensers based on tubeside condensation flow regimes. Due to a complex geometry and measurement difficulty in a tube bundle, there are few publications reported on shellside condensation flow regime and heat transfer characteristics. To investigate the condensation flow patterns and heat and mass transfer mechanism at the different flow regimes, a horizontal shellside condenser was tested from a multipurpose condensation rig recently. The horizontal test bundle is made of 36 tubes with the staggered tube layout. The tube OD is 19 mm and the tube length is 1.0 m using stainless steel. Four visualization windows were placed on the front and back sides on the shell for photographing condensation flow patterns. Steam and steam/air mixture were used as the test fluids. The condensation flow patterns, condensate film thickness and droplets distribution were recorded using a high-speed digital camera at a wide range of condensation process conditions. The experimental data show that the condensation flow regime changes from the shear-controlled flow to gravity-controlled flow depending on the vapor and condensate loads, bundle location and the concentration of the non-condensable gas. These experimental data provide a fundamental approach for developing the heat and mass transfer correlateons at different shellside condensation patterns. This paper presents the experimental result on shellside condensation patterns associated with heat transfer characteristics.
机译:关于冷凝水流态和传热的大量研究集中在单管的水平内部。基于管侧冷凝流态,许多传热和传质相关性用于壳式冷凝器的设计。由于管束中的几何形状复杂且测量困难,很少有出版物报道壳侧冷凝水流态和传热特性。为了研究不同流态下的冷凝水流型和传热传质机理,最近在多功能冷凝器上对卧式壳式冷凝器进行了测试。水平测试管束由36根错开排列的试管组成。使用不锈钢,管的外径为19 mm,管的长度为1.0 m。四个可视化窗口分别放置在外壳的正面和背面,以拍摄冷凝水流型。蒸汽和蒸汽/空气混合物用作测试流体。使用高速数码相机在各种冷凝工艺条件下记录冷凝液流动模式,冷凝液膜厚和液滴分布。实验数据表明,凝结水流状态从剪切控制流变为重力控制流,这取决于蒸汽和凝结水负荷,管束位置和不可凝气体的浓度。这些实验数据为开发不同壳层冷凝模式下的传热和传质相关性提供了基本方法。本文介绍了与传热特性相关的壳层冷凝模式的实验结果。

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