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Experimental Investigation of Heat Transfer Enhancement Mechanism for Self-rotating Cleaning Twisted-tape Tube

机译:自转清洁扭带管传热增强机理的实验研究

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The turbulent characteristics of the flow in a tube with self-rotating cleaning plastic twisted tape have been investigated experimentally by using Laser Doppler Velocimeter. The results show the flow in the tube is spiral motion following the self-rotating plastic twisted tape. Axial velocity is higher in the annular area near the tube wall than that of the central area of the tube, and the axial turbulence is stronger than that of the smooth tube; the tangential velocity increases as the radius increase, and the tangential turbulence is very high. According to the turbulent characteristics of the flow, convective heat transfer enhancement mechanism is analyzed initially for the self-rotating twisted-tape tube. It is found that the spiral motion of the fluid formed by forced eddy and parallel axial flow and the increase of axial velocity in the annular area near the wall tube will enhance the vibration of boundary and the mixture between the boundary fluid flow and central fluid flow, also make the boundary's thickness thin. The results will provide experimental base for the further theory research of heat transfer enhancement mechanism inside the tube with self-rotating cleaning plastic twisted tape.
机译:使用激光多普勒测速仪对带有自旋转清洁塑料扭带的试管中流体的湍流特性进行了实验研究。结果表明,自旋转的塑料缠绕带之后,管中的流动呈螺旋运动。管壁附近的环形区域的轴向速度高于管中心区域的轴向速度,轴向湍流强于光滑管的轴向湍流。切线速度随着半径的增加而增加,并且切线湍流非常高。根据流动的湍流特性,首先分析了自旋转扭曲带管的对流传热增强机理。研究发现,由强迫涡流和平行轴向流形成的流体的螺旋运动以及壁管附近环形区域中轴向速度的增加将增强边界以及边界流体与中心流体之间的混合物的振动。 ,也可以使边界的厚度变薄。该结果将为进一步研究自旋转清洁塑料扭带在管内传热机理的进一步研究提供实验依据。

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