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Hydrodynamic Impeller Stiffness, Damping, and Inertia in the Rotordynamics of Centrifugal Flow Pumps

机译:离心泵的水动力叶轮的刚度,阻尼和惯性

摘要

Measurements were made of the lateral hydrodynamic forces experienced by a centrifugal pump impeller performing circular whirl motions within several volute geometries. Experiments were conducted for various flow coefficients, [phi], impeller rotating speeds or angular frequencies, w, and the angular frequency of the whirl motion, [omega], was varied from zero to nearly synchronous (equation) and to nearly antisynchronous (equation). The lateral forces were decomposed into (i) time averaged lateral forces and (ii) hydrodynamic force matrices representing the variation of the lateral forces with position of the impeller center. No assumptions concerning the form of these matrices need to be made. The latter can be further decomposed according to the variation with whirl frequency, the result being "stiffness", "damping", and "fluid inertial" rotordynamic force matrices. It was found that these force matrices essentially consist of equal diagonal terms and skew-symmetric off-diagonal terms. One consequence of this is that during its whirl motion the impeller experiences forces acting normal and tangential to the locus of whirl. Data on these normal and tangential forces are presented; in particular it is shown that there exists a region of positive reduced whirl frequencies, [omega/w], within which the hydrodynamic forces can be destabilizing with respect to whirl.
机译:对离心泵叶轮在几种蜗壳几何形状内进行圆形涡旋运动所经历的横向流体动力进行了测量。针对各种流率系数φ,叶轮转速或角频率w进行了实验,并且旋转运动的角频率ω从零变化到几乎同步(方程)和几乎反同步(方程) )。将横向力分解为(i)时间平均横向力和(ii)表示横向力随叶轮中心位置变化的流体动力矩阵。无需假设这些矩阵的形式。后者可以根据旋转频率的变化进一步分解,其结果是“刚度”,“阻尼”和“流体惯性”转子动力矩阵。已经发现,这些力矩阵基本上由相等的对角线项和倾斜对称的非对角线项组成。其结果之一是,叶轮在旋转运动过程中会受到与旋转轨迹成法线和切线作用的力。提供了有关这些法向力和切向力的数据;特别地,示出了存在一个正的减小的涡动频率[ω/ w]的区域,在该区域中,流体动力相对于涡动可能是不稳定的。

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