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INVESTIGATION OF THE NATURAL CONVECTION BOUNDARY CONDITION IN MICROFABRICATED STRUCTURES

机译:微制订结构中自然对流边界条件的研究

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Heat loss through surrounding air has important thermal effect on microfabricated structures. This effect is generally modeled as a natural convection boundary condition. However, how to determine the convective coefficient (h) at microscales is a debate. In this paper, a micro heater is fabricated on a suspended thin film membrane. The natural convection is investigated using the 3-omega measurements and complex analytical modeling. It is found that h seems larger than that at larger scales; however, it is also proved that the increased h is actually contributed by heat conduction instead of heat convection. A method of determining the phenomenal h that can be used for microfabricated structures is proposed by using the heat conduction shape factor.
机译:通过周围空气的热损失对微制造结构具有重要的热效果。这种效果通常被建模为自然对流边界条件。但是,如何确定微观阶段的对流系数(h)是争论。在本文中,在悬浮的薄膜膜上制造了微加热器。使用3-Omega测量和复杂的分析建模研究了自然对流。结果发现H似乎比较大尺度更大;然而,还证明了增加的H实际上是通过导热而不是热对流贡献。通过使用导热形状因子提出了确定可用于微羧结构的现象H的方法。

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