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Numerical study on the improvement of the hydrodynamic behavior of parallel bearings by surface texturing

机译:表面纹理改善平行轴承水动力性能的数值研究

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The first part of the paper is dedicated to a presentation of the numerical model which is used later on for the investigation of textured surfaces. Several comparisons between the algorithm and literature results were performed in order to achieve validation. The complementarity approach allows a simple resolution of the cavitation issue and precise results are delivered in a swift fashion.;Institut Pprime, UPR 3346, CNRS - Universite de Poitiers - ENSMA Departement Genie Mecanique et Systemes Complexes Poitiers, France; The first part of the paper is dedicated to a presentation of the numerical model which is used later on for the investigation of textured surfaces. Several comparisons between the algorithm and literature results were performed in order to achieve validation. The complementarity approach allows a simple resolution of the cavitation issue and precise results are delivered in a swift fashion.;Institut Pprime, UPR 3346, CNRS - Universite de Poitiers - ENSMA Departement Genie Mecanique et Systemes Complexes Poitiers, France; The first part of the paper is dedicated to a presentation of the numerical model which is used later on for the investigation of textured surfaces. Several comparisons between the algorithm and literature results were performed in order to achieve validation. The complementarity approach allows a simple resolution of the cavitation issue and precise results are delivered in a swift fashion.;Institut Pprime, UPR 3346, CNRS - Universite de Poitiers - ENSMA Departement Genie Mecanique et Systemes Complexes Poitiers, France; The first part of the paper is dedicated to a presentation of the numerical model which is used later on for the investigation of textured surfaces. Several comparisons between the algorithm and literature results were performed in order to achieve validation. The complementarity approach allows a simple resolution of the cavitation issue and precise results are delivered in a swift fashion.
机译:本文的第一部分专门介绍了数值模型,稍后将其用于研究纹理表面。为了实现验证,对算法和文献结果进行了几次比较。互补性方法可以简单地解决空化问题,并迅速提供精确的结果。;普里米尔研究所,UPR 3346,CNRS-普瓦捷大学-ENSMA系Genie Mecanique et Systemes Complexes Poitiers,法国;本文的第一部分专门介绍了数值模型,稍后将其用于研究纹理表面。为了实现验证,对算法和文献结果进行了几次比较。互补性方法可以简单地解决空化问题,并迅速提供精确的结果。;普里米尔研究所,UPR 3346,CNRS-普瓦捷大学-ENSMA系Genie Mecanique et Systemes Complexes Poitiers,法国;本文的第一部分专门介绍了数值模型,稍后将其用于研究纹理表面。为了实现验证,对算法和文献结果进行了几次比较。互补性方法可以简单地解决空化问题,并迅速提供精确的结果。;普里米尔研究所,UPR 3346,CNRS-普瓦捷大学-ENSMA系Genie Mecanique et Systemes Complexes Poitiers,法国;本文的第一部分专门介绍了数值模型,稍后将其用于研究纹理表面。为了实现验证,对算法和文献结果进行了几次比较。互补方法可以简单地解决气蚀问题,并以快速的方式提供精确的结果。

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