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MEASUREMENT OF HEAT TRANSFER IN THE ENTRANCE REGION OF SMALL DIAMETER TUBES

机译:小直径管入口区域的传热测量

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摘要

Heat transfer coefficient in the entrance region of water flowing through micro-tubes with diameters of 962 μm and 123 μm was investigated in this study. Two temperature measurement methods, thermocouple and liquid crystal thermography (LCT), were used to measure the tube surface temperature. The experimental data showed that the Nu in the entrance region can be predicted well by conventional correlation while using the LCT to measure the temperature. Using the temperature measurements from the thermocouples attached to the surface, the Nu is found to be significantly higher than the prediction. This was believed to be due to the error in measurement of temperature. Simulation results also revealed that the measured temperature for a small diameter tube can be significantly decreased with a thermocouple attached to it. In transition flow, the wall temperature was also found to have a significantly fluctuation, as large as 2 °C, due to the unsteady flow conditions, while for fully established laminar as well as turbulent flow conditions, the fluctuation was measured to be less than 0.2 °C. The effect of viscous heating was negligible in the range of parameters investigated in this study.
机译:本文研究了流经直径分别为962μm和123μm的微管的水的入口区域的传热系数。使用热电偶和液晶热成像(LCT)这两种温度测量方法来测量管子表面温度。实验数据表明,在使用LCT测量温度的同时,通过常规相关可以很好地预测入口区域中的Nu。使用附着在表面的热电偶的温度测量值,发现Nu明显高于预测值。据信这是由于温度测量中的误差。仿真结果还表明,使用热电偶可以显着降低小直径管的测量温度。在过渡流中,由于不稳定的流动条件,还发现壁温有明显的波动,高达2°C,而对于完全建立的层流和湍流条件,测得的波动小于0.2°C。在这项研究中研究的参数范围内,粘性加热的影响可以忽略不计。

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