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Research on energy conversion mechanism of rotodynamic pump and design of non-overload centrifugal pump

机译:旋流泵能量转换机理研究及非过载离心泵设计

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In this paper, an attempt has been made for the calculation of an expression for the intrinsic law of input power which has not yet been given by current theory of Rotodynamic pump. By adequate recognition of the characteristics of non-inertial system within the rotating impeller, it is concluded that the input power consists of two power components, the first power component, whose magnitude increases with the increase of the flow rate, corresponds to radial velocity component, and the second power component, whose magnitude decreases with the increase of the flow rate, corresponds to tangential velocity component, therefore, the law of rise, basic levelness and drop of input power curves of centrifugal pump, mixed-flow pump and axial-flow pump can be explained reasonably. Through further analysis, the main ways for realizing non-overload of centrifugal pump are obtained, and its equivalent design factor is found out, the factor correlates with the outlet angle of leading face and back face of the blade, wrap angle, number of blades, outlet width, area ratio, and the ratio of operating flow rate to specified flow rate and so on. These are verified with actual example.
机译:在本文中,已经尝试了一个表达式的计算还未被叶片泵的电流理论给定输入功率的内在规律。通过适当识别的旋转的叶轮内的非惯性系统的特性,可以得出结论,在输入功率由两个功率组件,第一功率组件,其大小与所述流率的增大而增大,对应于径向速度分量的和第二功率组件,其大小与所述流率的增大而减小,对应于切向速度分量,因此,上升,基本水平度和离心泵,混流泵和的输入功率曲线的下降的法律轴向 - 流量泵可以合理地解释。通过进一步分析,得到用于实现离心泵的非过载的主要途径,和它的等效设计因素是发现了,与前导面和背面上的刀片的,包角,叶片的片数的出口角的因子相关因素,出口宽度,面积比,以及操作流速与特定流动速率等的比率。这些被证实与实际的例子。

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