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A microscale thermophoretic turbine driven by external diffusive heat flux

机译:一个微尺度thermophoretic涡轮驱动外部扩散热通量

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摘要

We propose a theoretical prototype of a micro-scale turbine externally driven by diffusive heat flux without the need for macroscopic particle flux, which is in sharp contrast to conventional turbines. The prototypes are described analytically and validated by computer simulations. Our results indicate that a micro-scale turbine composed of anisotropic blades can rotate unidirectionally in an external temperature gradient due to the anisotropic thermophoresis effect. The rotational direction and speed depend on the temperature gradient, the geometry and the thermophoretic properties of the turbine. The proposed thermophoretic turbines can be experimentally realized and implemented on micro-devices such as computer-chips to recover waste heat or to facilitate cooling.
机译:我们提出一个理论的原型微尺度涡轮机外部驱动扩散热通量不需要宏观粒子通量,锋利相比传统的涡轮机。描述分析和验证计算机模拟。微尺度涡轮机组成的各向异性叶片可以在外部单向旋转由于各向异性温度梯度热泳效应。和速度取决于温度梯度,几何的thermophoretic属性涡轮机。实验发现和实现电脑芯片恢复等状况废热或促进冷却。

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