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LATTICE BOLTZMANN SIMULATION OF THE FLOW FIELD IN PUMP INTAKES -A NEW APPROACH

机译:泵进水流场的格子Boltzmann模拟-一种新方法

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In recent years Lattice Boltzmann Methods have become popular for solving fluid flow problems of engineering interest. Reasons for this popularity are due to the advantages of this method which are for example the simplicity to handle complex geometries and the high efficiency in calculating transient flows. For the operational reliability and efficiency of pumps and pump systems the incoming flow conditions are crucial. Since the efficiency and reliability requirements of pumps are rising and must be guaranteed by the pump and plant manufacturer, the flow conditions in pump intakes need to be evaluated during plant planning. Recent trends show that pump intakes are built more and more compact which makes the flow in the intake even more complex and holds a higher risk for unacceptable pump inflow conditions. If the inflow conditions of the pump are not according to the demand of the pump manufacturer or to international standards, optimization needs to be done. In this contribution a numerical scheme for the simulation of pump intakes based on a Lattice Boltzmann-LES approach is presented and the ability to capture the flow phenomena of the intake flow is analyzed.
机译:近年来,格子Boltzmann方法已成为解决具有工程学意义的流体流动问题的流行方法。这种流行的原因是由于该方法的优点,例如,处理复杂几何形状的简单性以及计算瞬态流量的高效性。对于泵和泵系统的运行可靠性和效率,进入的流量条件至关重要。由于对泵的效率和可靠性的要求不断提高,并且必须由泵和设备制造商来保证,因此在设备规划期间必须评估泵进气口的流动状况。最近的趋势表明,泵的进气口越来越紧凑,这使得进气口的流量更加复杂,并且在不可接受的泵流入条件下具有更高的风险。如果泵的流入条件不符合泵制造商的要求或国际标准,则需要进行优化。在这一贡献中,提出了一种基于莱迪思·博尔兹曼-LES方法的用于模拟泵进水口的数值方案,并分析了捕获进水流现象的能力。

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