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Study on the operating characteristic of disc seal single screw pump used in energy recovery systems

机译:能量回收系统中使用的盘密封单螺杆泵的操作特性研究

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As a new type of fluid machinery, the disc-seal single screw pump (DSSP) is vital for energy conversion in oil sludge energy recovery systems and natural gas liquefaction system due to the advantages of wide flow range, strong self-absorption and well adaptability to organic solid impurities. However, no research work has focused on the working mechanism and performance of this pump at present, which makes its application limited. In view of this, the in-depth theoretical study on the meshing characteristics and operating performance of the DSSP must be carried out. In this paper, the profile equations of the meshing pair and the working process mathematical model were established for the first time based on three-dimensional space meshing theory, coordinate transformation principle. By using this model, the working performance of this pump was investigated, and the influence mechanism of the profile parameters on the theoretic volume was analyzed. The results of the analysis show that DSSP has the best leakage characteristics when the seal disc rotation center fell on the screw rotor touchline. All these analyses can provide the theory basis for improving the performance of the pump and optimized design of the meshing pair. (C) 2020 Elsevier Ltd and IIR. All rights reserved.
机译:作为一种新型的流体机械,盘密封单螺杆泵(DSSP)对于油污能源回收系统和天然气液化系统的能量转换至关重要,由于流量范围宽,自吸收强,适应性良好有机固体杂质。然而,目前没有研究工作的工作机制和性能,这使其应用有限公司。鉴于此,必须进行对DSSP的啮合特性和操作性能的深度理论研究。在本文中,基于三维空间网格理论,坐标变换原理,第一次建立了啮合对和工作过程数学模型的轮廓方程。通过使用该模型,研究了该泵的工作性能,分析了概况参数对理论体积的影响机理。分析结果表明,当密封盘旋转中心落在螺杆转子触摸线上时,DSSP具有最好的泄漏特性。所有这些分析都可以为改善泵的性能和啮合对的优化设计提供理论依据。 (c)2020 Elsevier Ltd和IIR。版权所有。

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