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Experimental Study Of A Curved Rotating Heat Pipe

机译:弯曲旋转热管的实验研究

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A curved rotating heat pipe for use in motor and generator applications is studied experimentally. The heat pipe is built so that both the condenser and evaporator sections are parallel to the axis of rotation. The condenser section is close to the axis of rotation while the evaporator section can he placed in contact with off-axis heat sources in the rotating machine. The geometry is achieved by incorporating an S-shaped curve between the on-axis rotating condenser section and the off-axis revolving evaporator section. The curved rotating heat pipe allows for a direct coupling of the rotating condenser section to an on-axis stationary refrigeration system, while allowing the revolving evaporator section to intercept off-axis heat sources in the rotating machine. An experimental rotating heat pipe test apparatus was built and operated. The test data indicate that the working fluid continued to circulate, resulting in heat transfer with a high effective thermal conductivity, with the curved rotating heat pipe operating under the influence of centrifugal accelerations approaching 400g. Furthermore, the experimental results were used to validate a heat pipe thermal model that can be used in the design of rotating machines that rely on the curved rotating heat pipe as part of the thermal management system.
机译:实验研究了用于电动机和发电机的弯曲旋转热管。构造热管,使冷凝器和蒸发器部分都平行于旋转轴。冷凝器部分靠近旋转轴,而蒸发器部分可以与旋转机械中的轴外热源接触。通过在轴上旋转冷凝器部分和轴外旋转蒸发器部分之间合并S形曲线来实现几何形状。弯曲的旋转热管允许将旋转的冷凝器部分直接耦合到同轴固定式制冷系统,同时允许旋转的蒸发器部分拦截旋转机器中的轴外热源。建立并运行了实验性旋转热管测试设备。测试数据表明,工作流体继续循环,导致具有高有效热导率的热传递,而弯曲的旋转热管在离心加速度的作用下接近400g。此外,实验结果被用于验证热管热模型,该模型可用于依赖于弯曲旋转热管作为热管理系统一部分的旋转机设计中。

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