首页> 外文会议>ASME Fluids Engineering Division Conference >HYDRAULIC DESIGN VALIDATION OF THE SUCTION INTAKE OF A VERTICAL CENTRIFUGAL PUMP STATION, BY USE OF COMPUTATIONAL FLUID DYNAMIC (CFD) ANALYSIS
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HYDRAULIC DESIGN VALIDATION OF THE SUCTION INTAKE OF A VERTICAL CENTRIFUGAL PUMP STATION, BY USE OF COMPUTATIONAL FLUID DYNAMIC (CFD) ANALYSIS

机译:通过使用计算流体动态(CFD)分析,垂直离心泵站吸气的液压设计验证

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The correct operation of vertical centrifugal pumps is strongly dependent on the design of the entire pump intake system, which includes the suction sump and the associated piping. From the hydraulic point of view, the sump or pump intake design is one of the most critical aspect the designer is facing with: an incorrect sump dimensioning can determine the onset of detrimental fluid dynamic phenomena like pulsation, cavitation and a vortical activity which can easily lead to the appearance of undesired vibration of the entire pump structure. Basic guidelines for the sump and the intake pipeline design have been well established over the years and are now widely published. They include recommendations for the definition of the main sump dimensions, together with the minimum submergence as well as recommended typical velocities approaching the pump suction bell. When shape and dimensions are not standard, it is very often required to perform an experimental investigation of the sump characteristics with a scaled model to evaluate the hydraulic behavior of the intake system and, if necessary, provide indications for changes in the system layout to meet the required criteria. In the recent years, CFD has become a well established tool for the design validation of all pumps components. Nevertheless, numerical simulation applied to intake systems has not yet received the deserved attention, most probably due to the massive computational resources required for the modelization of complex intake structures. With the more extensive availability of powerful computers and advanced computational codes, this is not anymore an obstacle. In this respect, the numerical simulation can be seen as a realistic and more economical alternative to model testing. The paper presents an application of the CFD analysis to the hydraulic evaluation of a pump station intake. In the absence of a model test and thanks to a not complex geometry of the sump under investigation, the numerical results can be easily compared to the expected results obtained with the more traditional methods (i.e. Hydraulic Institute) for a basic validation of the numerical simulation. Eventually, the exercise claims to be a contribution to the rising debate on the applicability of numerical simulation to this kind of applications.
机译:垂直离心泵的正确操作强烈取决于整个泵进气系统的设计,包括吸入贮槽和相关管道。从液压的角度来看,贮槽或泵进口设计是设计师面临的最关键的观点之一:不正确的油底壳尺寸可以确定脉动,空化和涡旋活动等有害流体动力现象的发作导致整个泵结构的不期望振动的外观。多年来,贮槽和摄入管道设计的基本准则已经很好地成熟,现在广泛发表。它们包括用于定义主要泄漏尺寸的建议,以及最小潜水,以及推荐泵吸铃的推荐典型速度。当形状和尺寸不是标准时,通常需要对缩放模型进行缩小模型进行的模块特性进行实验研究,以评估进气系统的液压行为,并且如有必要,为系统布局的变化提供适应症所需的标准。近年来,CFD已成为所有泵组件的设计验证的成熟工具。尽管如此,应用于进气系统的数值模拟尚未得到应得的关注,最重要的是由于复杂进气结构的建模所需的巨大计算资源。随着强大的计算机和高级计算代码的更广泛的可用性,这不是障碍物。在这方面,数值模拟可以被视为模拟测试的现实和更经济的替代品。本文介绍了CFD分析对泵站摄入的水力评估的应用。在没有模型测试的情况下,由于在调查中没有复杂的贮槽几何形状,可以轻松地将数值结果与以更传统的方法(即液压机构)获得的预期结果进行比较,以便对数值模拟的基本验证。最终,锻炼声称对对这种应用的数值模拟适用性的辩论的贡献。

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