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Prediction of flow induced vibrations in vertical turbine pumps using one-way fluid-structure interaction

机译:基于单向流体-结构相互作用的立式涡轮泵中的流致振动预测

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Centrifugal pumps/vertical turbine pumps are important and critical equipment for operation in the power generation, water supply, process industries and petrochemical industries. All centrifugal and vertical turbine pumps have rotors and structures that can vibrate in response to excitation forces. Mechanical and hydraulic unbalance are the two major factors which can create dynamic effects in terms of pump vibrations. In many cases the resulting hydraulic forces due to hydraulic unbalance has much the same effect as the mechanical unbalance. The vibrations in the pumps must be within acceptable limits of applicable standards. If there is higher level of vibrations, it not only leads to operational inefficiencies but also causes pump failures. Hence, it is very important for designers to understand the dominating fact of unbalance force and its origin. The prediction of vibrations in a vertical turbine pump due to the hydro dynamic forces, using numerical methods can help a designer to accomplish a successful design. The interaction between solid and fluid in present case can be completed by one-way coupling method. The one-way fluid-structure interaction approach is presented in present paper to predict the vibrations at specific operating condition which has good correlation with the test data. The advantage of reduced computational effort in this approach can be utilized during initial design stage. In this paper, a case study of one-way FSI approach of a vertical turbine pump is discussed. After detailed explanation about the CFD results, one-way coupling approach is explained with comparison of vibration displacements in both numerical and test data.
机译:离心泵/立式涡轮泵是发电,供水,加工行业和石化行业中重要且至关重要的设备。所有离心式和立式涡轮泵均具有可响应激励力而振动的转子和结构。机械和液压不平衡是在泵振动方面可能产生动态影响的两个主要因素。在许多情况下,由于液压不平衡而产生的液压与机械不平衡的效果几乎相同。泵中的振动必须在适用标准的可接受范围内。如果存在更高的振动水平,不仅会导致运行效率低下,还会导致泵故障。因此,对于设计师来说,了解不平衡力及其来源的主要事实非常重要。使用数值方法对垂直涡轮泵中由于水动力引起的振动进行预测,可以帮助设计人员完成成功的设计。在当前情况下,固体和流体之间的相互作用可以通过单向耦合方法来完成。本文提出了一种单向流体-结构相互作用的方法来预测特定工作条件下的振动,该振动与测试数据具有良好的相关性。在初始设计阶段可以利用这种方法减少计算工作量的优势。本文以立式涡轮泵单向FSI方法为例进行了研究。在详细解释了CFD结果之后,通过比较数值和测试数据中的振动位移来说明单向耦合方法。

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