Testing of an axially grooved and an arterial heat pipe was performed under ambient conditions. Steady-state axial temperature distribution as a function of heat input and sink temperature was determined. Variable inclination testing with 5 W input power was performed to determine the dryout angle. Horizontal testing with variable power input was performed to determine the capillary limit. The effective thermal conductivity of each heat pipe as a function of heat input and sink temperature was determined.;Numerical modelling of the axially grooved heat pipe tested was performed. Poiseuille number as a function of contact angle and attachment point was determined. A capillary limit model was developed based on the groove geometry and external heat pipe dimensions. The parametric study of attachment point and contact angle variation led to the prediction of maximum heat transfer. Satisfactory agreement was found between the experiment and numerical model.
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机译:液压测试设备的技术综合体ELEMENTS换热单元和热交换器的换热单元,用于液压系统的管道的夹紧装置,用于管道设备的液压测试的液压系统,用于弯曲管道的液压测试的安装液压系统MACHINE,液压测试台弯管机,方法液压测试弯管单元(RU),液压系统液压测试设备和热交换器单元STAND FOR DRY MACHINE换热单元(可选)