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The Effects of Surface Roughness on Heat Transfer between Two Contacting Particles

机译:表面粗糙度对两个接触颗粒之间传热的影响

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An investigation was carried out to draw a similarity between contact heat transfer and current for two contacting spherical particles where the results can be used for the discrete element method (DEM) simulation. The experimental work is presented in two conditions of mechanical contact phenomena i.e., static contact and dynamic contact, respectively. Nevertheless, for dynamical contact, it is hard to obtain heat transfer directly during the collision. Hence, the authors attempted to use current according to the analogy between heat transfer and current. This paper firstly examined the contact phenomena under the static contact condition. The analysis was based on the contact forces on the particles as well as the surface roughness parameters of the particles. It is found that contact heat transfer and current which flow through a spherical surface have a good similarity in the way they were affected by the surface roughness of the particles. Both contact heat transfer and current increase as surface roughness becomes large. However, this is not a common trend because larger surface roughness yields larger contact resistance. Using the similarity, a simple relation between contact heat transfer and current on two contacting particles (spheres) was introduced. This empirical relation can be used to estimate the heat transfer in dynamic contact condition
机译:进行了研究以得出两个接触球形颗粒的接触传热和电流之间的相似性,其中结果可用于离散元素方法(DEM)模拟。实验工作是在机械接触现象的两个条件下进行的,分别是静态接触和动态接触。然而,对于动态接触,很难在碰撞过程中直接获得热传递。因此,作者试图根据传热和电流之间的类比来使用电流。本文首先研究了静态接触条件下的接触现象。该分析基于颗粒上的接触力以及颗粒的表面粗糙度参数。发现接触热传递和流过球形表面的电流在它们受颗粒表面粗糙度影响的方式上具有良好的相似性。随着表面粗糙度变大,接触传热和电流都增加。然而,这不是普遍的趋势,因为较大的表面粗糙度会产生较大的接触电阻。利用相似性,介绍了两个接触粒子(球体)上的接触传热与电流之间的简单关系。该经验关系可用于估算动态接触条件下的热传递

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