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A FSI-thermal model to analyze performance characteristics of hydrostatic turntable

机译:用于分析静液压转盘性能特性的FSI热模型

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Purpose This paper aims to study the performance of hydrostatic turntables by using fluid structure interaction (FSI) and thermal effect coupled model. Design/methodology/approach A novel fluid-structure-thermal coupled model is set up to study the problem. The FSI technique and computational fluid dynamics (CFD) method are used by this new model, and the thermal effects are also considered. Hydrostatic turntables with different system parameters (oil supply pressure, oil recess depth and surface roughness) are studied under different working conditions (rotational speeds of turntable and exerted external loads). Performance characteristics obtained from this FSI-thermal coupled model and conventional model are presented and compared. Findings Theoretical predictions are in good agreement with the experimental data. The results of new FSI-thermal coupled model are more accurate than those of the old conventional model. To acquire better performance of the system, the novel FSI-thermal model becomes necessary for different hydrostatic turntable systems. Originality/value This developed model is a useful tool for studying hydrostatic turntables. To get an improved performance, a proper selection of design parameters of the system based on FSI-thermal model is essential.
机译:目的本文旨在利用流体结构相互作用(FSI)和热效应耦合模型来研究静液位转盘的性能。设计/方法/方法采用新型流体结构 - 热耦合模型来研究问题。该新模型使用FSI技术和计算流体动力学(CFD)方法,也考虑了热效应。在不同的工作条件下研究了具有不同系统参数(供油压力,油凹槽深度和表面粗糙度)的静液压转盘(转盘的转速和施加外部负载)。提出并比较了从该FSI热耦合模型和传统模型获得的性能特征。调查结果理论上的预测与实验数据吻合良好。新的FSI-热耦合模型的结果比旧传统模型更准确。为了获得更好的系统性能,新颖的FSI-热模型对于不同的静液压转盘系统是必需的。原创性/值该开发模型是研究静液压转盘的有用工具。为了提高性能,基于FSI-热模型的系统的正确选择参数是必不可少的。

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