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CONDENSATION HEAT TRANSFER OF SOLIMAN FLOW PATTERN IN MINI-CHANNEL

机译:迷你通道中Soliman流动模式的冷凝传热

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摘要

The condensation heat transfer for R134a in the two kinds of in-tube three-dimensional (3-D) micro-fin tubes with different geometries is experimentally investigated. Based on the flow pattern observations, the flow patterns in the Soliman flow regime map are divided into two-flow regimes; one with the vapor-shear-dominant annular regime and the other with the gravitational-force-dominant stratified-wavy regime. In the annular regime, the heat transfer coefficients of the two kinds of in-tube 3-D micro-fin tubes decreases as the vapor quality decreases. The regressed condensation heat transfer correlation from the experimental data of the annular flow region is obtained. The dispersibility of the experimental data is inside the limits of ±25%. In the stratified-wavy regime, the average heat transfer coefficient of the two kinds of in-tube 3-D micro fin tubes increases as the mass flux increases and the number of micro fins in the 3-D micro-fin tube is not the controlling factor for performance of a condensation heat transfer. The regressed condensation heat transfer correlation of the stratified-wavy flow regime is experimentally obtained. The dispersibility of the experimental data is inside the limits of ±22%. Combined with the criteria of flow pattern transitions, the correlations can be used for the design of a condenser with 3-D micro fin tubes
机译:实验研究了R134a在两种不同几何形状的管内三维(3-D)微翅片管中的冷凝传热。基于流型观测,将索利曼流态图中的流型分为两种流态。一个具有以蒸气剪切为主的环形结构,另一个具有以重力为主导的分层波浪结构。在环形状态下,两种管内3-D微翅片管的传热系数随着蒸汽质量的降低而降低。从环形流动区域的实验数据中获得回归的冷凝传热相关性。实验数据的分散性在±25%的范围内。在分层波浪状态下,两种管内3-D微翅片管的平均传热系数随着质量通量的增加而增加,并且3-D微翅片管中的微翅片数量不是冷凝传热性能的控制因素。通过实验获得了分层波状流态的回归冷凝传热相关性。实验数据的分散性在±22%的范围内。结合流型转换的准则,相关性可用于设计带有3-D微翅片管的冷凝器

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