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首页> 外文期刊>Journal of Fluids Engineering: Transactions of the ASME >A plexiglas research pump with calibrated magnetic bearings/load cells for radial and axial hydraulic force measurement
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A plexiglas research pump with calibrated magnetic bearings/load cells for radial and axial hydraulic force measurement

机译:有机玻璃研究泵,带有校准的磁性轴承/称重传感器,用于测量径向和轴向液压

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摘要

A research pump intended for both flow visualization studies and direct measurement of hydrodynamic radial and axial forces has been developed. The impeller and the volute casing are constructed from Plexiglas which facilitates optical access forlaser velocimetry measurements of the flow field both inside the impeller and in the volute casing. The pump housing is designed for flexibility allowing for each interchange of impellers and volute configurations. The pump rotor is supported by threeradial magnetic bearings and one double acting magnetic thrust bearing. The magnetic bearings have been calibrated to characterize the force versus coil current and air gap relationship for each bearing type. Linear calibration functions valid for rotoreccentricities of up to 2/3of the nominal bearing clearances and force level of±58 N (13lb{sub}f) and ±267 N (60 lb{sub}f) for the radial and axial bearings, respectively, were found. A detailed uncertainty analysis of the force calibration functionswas conducted such that meaningful uncertainty bounds can be applied to in situ force measurements. Hysteresis and eddy current effects were quantified for each bearing such that their effect on the in situ force measurements could be assessed. Bydirectly measuring the bearing reaction forces it is possible to determine the radial and axial hydraulic loads acting on the pump impeller. To demonstrate the capability of the magnetic bearings as active load cells representative hydraulic forcemeasurements for a centered 4 vane 16 degree log spiral radial flow impeller operating in a single tongue spiral volute casing were made. At shut-off a nondimensional radial thrust of 0.084 was measured. A minimum nondimensional radial thrust of about0.007 was observed at the nominal design flow. The nondimensional radial thrust increased to about 0.019 at 120 percent of design flow. The nondimensional axial thrust had a maximum at shut-off of 0.265 and decreased steadily to approximately 0.185 at 120 percent of design flow. Two regions of increasing axial thrust, in the flow range 75 to 100 percent of design flow, were observed. The measurements are compared to radial and axial force predictions using classical force models. The direct radial forcemeasurements are compared to a representative set of radial force measurements from the literature. In addition, the directly measured radial force at design flow is compared to a single representative radial force measurement (obtained from theliterature) calculated from the combination of static pressure and net momentum flux distribution at the impeller exit.
机译:已经研发出一种旨在用于流动可视化研究以及直接测量流体动力径向和轴向力的研究泵。叶轮和蜗壳由Plexiglas制成,便于对叶轮内部和蜗壳内的流场进行光学激光测速测量。泵壳设计灵活,允许叶轮和蜗壳结构的每次互换。泵转子由三个径向磁轴承和一个双作用磁推力轴承支撑。磁性轴承已经过校准,以表征每种轴承类型的力与线圈电流以及气隙的关系。线性校准功能适用于径向偏心率高达轴承名义游隙的2/3,径向和轴向轴承力水平分别为±58 N(13lb {sub} f)和±267 N(60 lb {sub} f) , 被找到。对力校准功能进行了详细的不确定性分析,以便可以将有意义的不确定性范围应用于原位测力。量化每个轴承的磁滞和涡流效应,以便可以评估它们对原位力测量的影响。通过直接测量轴承反作用力,可以确定作用在泵轮上的径向和轴向液压载荷。为了证明电磁轴承作为主动载荷传感器的能力,针对在单舌螺旋蜗壳中运行的对中4叶片16度对数螺旋径向流叶轮进行了代表性的液压测量。在关闭时,测得的无量纲径向推力为0.084。在标称设计流量下观察到最小的无量纲径向推力约为0.007。在设计流量的120%时,无量纲径向推力增加到约0.019。无尺寸轴向推力在关闭时最大为0.265,在设计流量的120%时稳定减小至大约0.185。观察到轴向推力增加的两个区域,在设计流量的75%到100%的流量范围内。使用经典力模型将测量结果与径向和轴向力预测值进行比较。将直接径向力测量值与文献中一组代表性的径向力测量值进行比较。另外,将在设计流量下直接测量的径向力与根据叶轮出口处静压力和净动量通量分布的组合计算出的单个代表性径向力测量值(从文献中得出)进行比较。

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