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Experimental investigation of energy dissipation in the multi-cylinder Couette-Taylor system with independently rotating cylinders

机译:具有独立旋转圆柱的多缸耦合 - 泰勒系统能量耗散的实验研究

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The paper presents the results of an experimental study of the process of dissipative heating of fluid in a multicylinder Couette-Taylor system with independently rotating smooth cylinders. The task was set to solve the problem of direct conversion of wind energy into heat. The flow regimes and generation of heat energy at relatively low cylinder revolutions F 5 Hz were studied. This range corresponds to velocities of cylinder rotation, achieved by the wind turbine at moderate wind load. Rotation of only one cylinder with the braked second cylinder and their counter-rotation are considered. The second regime can be successfully implemented in the schemes of kinetic wind energy conversion without additional mechanical transmissions and reduction gears from two wind wheels. Water-glycerine solutions in a wide range of changes in their viscosity were used as a working fluid. It is shown that the specific thermal power released in the heat generator can be about 1 MW/m(3), and this indicates the competitiveness of such devices among the designs of renewable energy resources.
机译:本文介绍了一种多圈子Coute-Taylor系统中流体耗散过程的实验研究的结果,其具有独立旋转光滑圆筒。该任务被设定为解决风能直接转化为热量的问题。研究了流动制度和相对低气缸旋转F <5Hz的热能产生。该范围对应于气缸旋转的速度,通过风力涡轮机实现中等风荷载。仅考虑仅具有制动第二汽缸的一个气缸的旋转及其反向旋转。第二种制度可以在动能的风能转换方案中成功实现,而无需额外的机械传动和来自两个风轮的减速齿轮。在粘度的各种变化范围内的水 - 甘油溶液用作工作流体。结果表明,热发生器中释放的特定热功率可以是大约1mW / m(3),这表明了这种装置在可再生能源设计中的竞争力。

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