首页> 外文会议>ASME International Mechanical Engineering Congress and Exposition >THERMAL RADIATIVE TRANSPORT ENHANCEMENT VIA SURFACE PLASMON POLARITONS IN MICROSCALE CYLINDRICAL REGIONS BOUNDED BY A SURFACE ACTIVE CERAMIC
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THERMAL RADIATIVE TRANSPORT ENHANCEMENT VIA SURFACE PLASMON POLARITONS IN MICROSCALE CYLINDRICAL REGIONS BOUNDED BY A SURFACE ACTIVE CERAMIC

机译:通过表面活性陶瓷界定的微观圆柱区域中的表面等离子体极性恒温热辐射运输增强

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A Green function approach is used with the uctuation-dissipation theorem to theoretically model radiative heat transfer in microscale cylindrical geometries. The appropriate scalar Green function is presented by employing an impedance boundary condition. While z-independent elds are produced by axial line sources, it is proposed here that the qualitative results are applicable to thermal radiation within microscale spherical domains. An application of the theoretical result demonstrates the potential importance of surface phonon polariton modes in thermal radiation transport across porous surface-active ceramics.
机译:在微观圆柱形几何形状中的理论上模型辐射定理中使用绿色函数方法,以便理论上模型辐射传热。通过采用阻抗边界条件来提出适当的标量绿色功能。虽然Z-独立的ELD由轴线源产生,但是在此提出了定性结果适用于微观球形结构域内的热辐射。理论结果的应用示出了横跨多孔表面活性陶瓷在热辐射传输中的表面声子偏振片模式的潜在重要性。

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