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Effect of the axial gap on the energy consumption of a single-blade wastewater pump

机译:轴向间隙对单叶片废水泵能量消耗的影响

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The effect of the axial gap on the energy consumption of a single-blade wastewater pump (Sulzer XFP PE-2 150E CB1.1) is assessed using unsteady Reynolds-averaged Navier–Stokes simulations with ANSYS Fluent. The numerical model was compared to experimental data with a nominal design configuration (i.e. gap size) to provide confidence in the modeling approach. The global performance of the pump was evaluated in terms of pressure-discharge, torque, and efficiency for a range of volumetric flow rates (110 m~(3)ċh~(−1)to 254 m~(3)ċh~(−1)) and gap sizes (0.3 mm to 1.15 mm). While it is found that the power consumption at a given flow rate is reduced with increased gap, this is at the expense of a drop in outlet pressure, and hence the efficiency of the pump drops significantly. At the largest volumetric flow rate considered (254 m~(3)ċh~(−1)), the sensitivity of the efficiency to the gap size is −13.5%ċmm~(−1)and the sensitivity of the reduction in mechanical power consumption to gap size is 0.58 kWċmm~(−1). These results emphasize the importance of active maintenance during the lifetime of a wastewater pump to avoid a reduction in the energy performance caused by increased gap size.
机译:轴向间隙对单叶片废水泵的能量消耗的影响(Sulz XFP PE-2 150E CB1.1)使用不稳定的Reynolds-Passveded Navier-Stokes模拟进行评估,与ANSYS流畅。将数值模型与具有标称设计配置(即间隙大小)的实验数据进行比较,以提供对模型方法的信心。在压力放电,扭矩和一系列体积流速的效率方面评估泵的全局性能(110m〜(3)ċH〜(-1)至254m〜(3)ċH〜( - 1))和间隙尺寸(0.3毫米至1.15毫米)。虽然发现给定流速的功耗随着间隙的增加而减小,但这是出口压力下降的代价,因此泵的效率显着下降。在所考虑的最大体积流速(254 m〜(3)ċH〜(-1)),效率对间隙尺寸的灵敏度为-13.5%ċmm〜(-1)和机械功率降低的灵敏度间隙尺寸的消耗为0.58kWċmm〜(-1)。这些结果强调了在废水泵的寿命期间主动维护的重要性,以避免因差距增加而导致的能量性能降低。

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