首页> 外文期刊>Special topics & reviews in porous media >INERTIA EFFECTS IN POROUS SQUEEZE FILM BIOBEARING WITH ROUGH SURFACES LUBRICATED BY A POWER-LAW FLUID
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INERTIA EFFECTS IN POROUS SQUEEZE FILM BIOBEARING WITH ROUGH SURFACES LUBRICATED BY A POWER-LAW FLUID

机译:强力流体润滑的粗糙表面在多孔挤压膜生物中的惯性效应

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The flow of a power-law lubricant in a squeeze film biobearing with one porous wall is considered. Generally, the biobearing may be modelled by two curvilinear rough surfaces and the porous wall adherent to the curved nonporous surface. The flow in the biobearing clearance is considered with inertia and the Navier-Stokes and Poisson equations which are uncoupled by using the Morgan-Cameron approximation. Using the Christensen stochastic model of a surface roughness, a closed-form solution is obtained. A step biobearing is discussed as an example. It is shown that the inertia effects, power-law exponents, and surface roughness influence the biobearing performance considerably.
机译:考虑了幂律润滑剂在具有一个多孔壁的挤压膜生物轴承中的流动。通常,生物承载可以通过两个曲线的粗糙表面和附着在弯曲的无孔表面上的多孔壁来建模。考虑到生物轴承间隙中的流动具有惯性,并且通过使用Morgan-Cameron近似将Navier-Stokes和Poisson方程解耦。使用表面粗糙度的Christensen随机模型,可以获得封闭形式的解决方案。以阶梯式生物承载为例进行讨论。结果表明,惯性效应,幂律指数和表面粗糙度对生物承载性能有很大影响。

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