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Flow analysis of centrifugal pump using CFX solver and remedies for cavitation mitigation

机译:使用CFX求解器的离心泵流量分析和缓解气蚀的补救措施

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In this scholarly thesis pertinent to the working of centrifugal pump, a CFD solver namely CFX is employed in order to simulate fluid flow characteristics with well-defined constraints and boundary conditions defining the problem. Stringent solid model is meticulously prepared encompassing the present day usage and constructional features of a centrifugal pump and is constrained with various boundary conditions having fixed domain in order to evaluate plots and results. To spearhead and facilitate this analysis program a numerical approximation tool with high degree of convergence rate called ANSYS 15.0 software is used. The ASNYS software avoids tedious calculations presumably impending in the design procedure and uses ultimate numerical tool to approximate the solution of the partial differential equations associated with continuity, momentum and energy phases of a flow problem in a 3-D model. This exquisite feature of ANSYS enables designer to optimize the design procedure in an iterative manner based on the final plots of post-processing phase. In addition, the scholarly writing also constitutes the appraisal of the most debilitating and painstaking problem retarding the efficiency of the centrifugal pump known as cavitation. Possible remedies for overcoming this problem will be indirectly inferred from the various plots and figures derived from the post-processing phase of the design process.
机译:在与离心泵工作有关的这篇学术论文中,使用CFD求解器CFX来模拟具有明确定义的约束和定义问题的边界条件的流体流动特性。严格的实体模型是精心设计的,涵盖了离心泵的当前使用和结构特征,并受具有固定域的各种边界条件的约束,以便评估图和结果。为了带头并简化此分析程序,使用了一种具有高收敛速度的数值逼近工具ANSYS 15.0软件。 ASNYS软件避免了可能在设计过程中进行的繁琐计算,并使用最终的数值工具来近似求解与3-D模型中的流动问题的连续性,动量和能量阶段相关的偏微分方程的解。 ANSYS的这一精妙功能使设计人员可以根据后期处理阶段的最终结果,以迭代方式优化设计流程。此外,该学术著作还构成了对最令人衰弱和最棘手的问题的评估,这些问题阻碍了离心泵被称为气蚀的效率。从设计过程的后处理阶段得出的各种图和图将间接推断出解决此问题的可能方法。

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