泥泵水力性能动态特征的数值模拟分析
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Numerical simulation of dynamic characteristics of dredge pump’s hydraulic performance
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    摘要:

    在使用滑移网格模拟分析新设计的HDP-263-50-130-4型泥泵时,发现叶轮处于不同位置时,同一转速和流量下,泥泵的扬程、扭矩、效率均呈周期性的波动,该波动近似于正弦函数,各量波动幅度较大,波动周期等于叶轮转过两 相邻叶片的夹角所需的时间。对于该型号泵,扬程的波动要领先力矩约0.21个波动周期,效率的波动领先力矩0.34个波动周期;当叶轮的一个叶片转过蜗壳的第Ⅰ断面,且与此断面呈16°左右夹角时,泥泵达到最高效率,约为92%;当叶轮的一个叶片转向蜗壳的第Ⅰ断面且与其夹角约为29°时,泥泵效率最低,约为77%。经分析认为,泥泵水力性能波动的主因是运动叶轮与静止蜗壳之间的动静干扰,该干扰主要体现在叶轮相对涡舌的位置的变化引起涡舌周围流态的变化。

    Abstract:

    When simulating and analyzing the newly designed dredge pump HDP-263-50-130-4 with sliding meshes, we find that the pump head, shaft torque and hydraulic efficiency are all in periodic fluctuation although with same rotate speed and flowrate. The fluctuation could be approximated using a sinusoidal function whose amplitude is relatively large, and its period equals the time in which the impeller rotates through the angle of two adjacent blades. The fluctuation of pump head keeps a step of about 0.21 fluctuation period ahead torque, while the efficiency curve is ahead of torque about 0.34 periods. When a blade turns to section I of the volute with a 29° angle between them, the pump has a minimum efficiency of about 77%. And when this blade passes section I of the volute and makes an angle of about 16° with section, the pump presents a maximum efficiency of 92%. We draw the conclusion that the fluctuation of pump’s hydraulic performances should be related to the interaction between the rotating impeller and static volute. And the interaction could be mainly presented by the variation of flow field around volute tongue due to different locations of blades relative to the tongue.

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洪国军.泥泵水力性能动态特征的数值模拟分析[J].水运工程,2012(12):107-110.

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  • 在线发布日期: 2012-12-11
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