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Simulation of fluid structure interaction in a novel design of high pressure axial piston hydraulic pump

机译:高压轴向柱塞液压泵新型设计中流体结构相互作用的仿真

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A novel type of an axial, piston-driven high pressure hydraulic pump with variable capacity marks a significant improvement in the area of the hydraulic machinery design. Total discharge from hydrostatic forces eliminates a need for a servomechanism, thus simplifying operation, reducing weight and introducing the possibility of the pump displacement control by computer. PWK-type pumps, invented in the Gdansk University of Technology, offer high efficiency for pressure levels up to 55 MPa, ability to work self sucking even at high speed. However, the heart of the new invention, the commutation unit, creates harmful pressure peaks. Those peaks can be mitigated by the introduction of a compensation chamber with elastic walls. Owing to the dynamic character of events taking place in the pump, a need for computer simulation arouse in order to understand phenomena leading to the occurrence of pressure peaks and choose compensation chamber parameters accordingly. A CFD package alone would not be sufficient to reliably represent the interaction between the compensation chamber wall and the working fluid. This paper presents Fluid Structure Interaction approach comparing 3 different models: 2 simplified models of the pump and a full pump model.
机译:具有可变容量的新型轴向柱塞驱动式高压液压泵标志着液压机械设计领域的重大改进。静水力的总排放消除了对伺服机构的需要,从而简化了操作,减轻了重量并引入了通过计算机控制泵排量的可能性。格但斯克工业大学发明的PWK型泵具有很高的效率,可承受高达55 MPa的压力,即使在高速下也能自吸。但是,新发明的核心,换向单元会产生有害的压力峰值。可以通过引入带有弹性壁的补偿室来缓解这些峰值。由于泵中发生的事件具有动态特性,因此需要计算机模拟以了解导致压力峰值出现的现象并相应选择补偿室参数。仅CFD组件不足以可靠地表示补偿腔室壁和工作流体之间的相互作用。本文介绍了流体结构相互作用的方法,比较了3种不同的模型:2种简化的泵模型和完整的泵模型。

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