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Local heat transfer coefficient for pool boiling of R-134a and R-123 on smooth and enhanced tubes

机译:R-134a和R-123在光滑管和增强管上的池沸腾的局部传热系数

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摘要

The current paper presents experimental investigation of nucleate pool boiling of R-134a and R-123 on enhanced and smooth tubes. The enhanced tubes used were TBIIHP and TBIILP for R-134a and R-123, respectively. Pool boiling data were taken for smooth and enhanced tubes in a single tube test section. Data were taken at a saturation temperature of 4.44 °C. Each test tube had an outside diameter of 19.05 mm and a length of 1 m. The test section was water heated with an insert in the water passage. The insert allowed measurement of localwater temperatures down the length of the test tube. Utilizing this instrumentation, local heat transfer coefficients were determined at five locations along the test tube. The heat flux range was 4-135 kW/m² for the TBIIHP tube and 5-60 kW/m² for the TBIILP tube. The resulting heat transfer coefficient range was 6,270-23,268 W/m².°C and 6,748-23,338 W/m².°C for both tubes, respectively. For smooth tube testing, the heat flux ranges were 7.3-130.7 kW/m² and 7.5-60.7 kW/m² for R-134a and R-123, respectively; with resulting heat transfer coefficient ranges of 1,798.9-11,379 kW/m².°C and 535.4-3,181.8 kW/m².°C. The study provided one of the widest heat flux ranges ever examined for these types of tubes and showed significant structure to the pool boiling curve that had not beentraditionally observed. Additionally, this paper presented an investigation of enhanced tubes pool boiling models.
机译:目前的论文提出了在增强和光滑管上R-134a和R-123的核池沸腾的实验研究。使用的增强管分别是用于R-134a和R-123的TBIIHP和TBIILP。在单管测试部分中获取光滑和增强管的池沸腾数据。数据是在4.44°C的饱和温度下获取的。每个试管的外径为19.05 mm,长度为1 m。将测试部分用水插入通道中的插入物中加热。插入件允许在试管的长度范围内测量局部水温。利用这种仪器,沿着试管的五个位置确定了局部传热系数。 TBIIHP管的热通量范围为4-135 kW /m²,TBIILP管的热​​通量范围为5-60 kW /m²。两种管子的传热系数范围分别为6,270-23,268 W /m²。°C和6,748-23,338 W /m²。°C。对于光滑管测试,R-134a和R-123的热通量范围分别为7.3-130.7 kW /m²和7.5-60.7 kW /m²;传热系数范围为1,798.9-11,379 kW /m²。°C和535.4-3,181.8 kW /m²。°C。该研究为这些类型的管提供了有史以来最宽的热通量范围之一,并显示了未传统观察到的显着的池沸腾曲线结构。此外,本文介绍了增强型管池沸腾模型的研究。

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