首页> 外文会议>ASME international mechanical engineering congress and exposition;IMECE2008 >STUDY ON HEAT TRANSFER OF GAS FLOW HEATED BY NANO-PROBE VIA DIRECT SIMULATION MONTE CARLO (DSMC)
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STUDY ON HEAT TRANSFER OF GAS FLOW HEATED BY NANO-PROBE VIA DIRECT SIMULATION MONTE CARLO (DSMC)

机译:通过直接模拟蒙特卡罗(DSMC)研究纳米探针加热的气流的传热

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Applications of heated tip/surface configuration for micro-ano- electromechanical systems (MEMS/NEMS) have been widely explored in these years. Since the small gaps in these MEMS/NEMS are comparable to the mean free path of gaseous molecules, the heat transfer via gaseous molecules from the heated tip to the substrate is fundamentally different from macroscopic conduction or convection heat transfer in gases. In this paper, the heat transfer of the rarefied gases heated by hot nano-tip is investigated by means of the Direct Simulation Monte Carlo (DSMC) method. The results show that both tip geometry and tip-substrate distance affect the heat flux density distribution. With the increase of the crossing-angle θ of the nano-tip, the heat flux tends to decrease, while the spatial resolution tends to improve. Moreover, the heat flux density and spatial resolution tend to decrease with the increase of distance between the nano-tip and the substrate. Simulation results provide valuable information for the rational design and optimization of the heated nano-probe for topography applications such as thermally assisted data storage.
机译:近年来,已对微/纳米机电系统(MEMS / NEMS)加热尖端/表面配置的应用进行了广泛的研究。由于这些MEMS / NEMS中的小间隙可与气态分子的平均自由程相媲美,因此通过气态分子从加热的尖端到基板的传热与气体中的宏观传导或对流传热根本不同。本文通过直接模拟蒙特卡洛法(DSMC)研究了被热纳米尖端加热的稀有气体的传热。结果表明,尖端的几何形状和尖端与基底的距离均会影响热通量密度分布。随着纳米尖端的交叉角θ的增大,热通量趋于减小,而空间分辨率趋于提高。此外,随着纳米尖端与基板之间的距离的增加,热通量密度和空间分辨率趋于降低。仿真结果为合理设计和优化诸如热辅助数据存储等地形应用的加热纳米探针提供了有价值的信息。

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