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Hydrodynamic Design of Thrust Ring Pump for Large Hydro Turbine Generator Units

机译:大型水轮发电机组推力环泵的流体力学设计

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Thrust-ring-pump is a kind of extreme-low specific speed centrifugal pump with special structure as numerous restrictions from thrust bearing and operation conditions of hydro-generator units. Because the oil circulatory and cooling system with thrust-ring-pump has a lot of advantages in maintenance and compactness in structure, it has widely been used in large and medium-sized hydro-generator units. Since the diameter and the speed of the thrust ring is limited by the generator set, the matching relationship between the flow passage inside the thrust ring (equivalent to impeller) and oil bath (equivalent to volute) has great influence on hydrodynamic performance of thrust-ring-pump. On another hand, the head and flow rate are varying with the operation conditions of hydro-generator units and the oil circulatory and cooling system. As so far, the empirical calculation method is employed during the actual engineering design, in order to guarantee the operating performance of the oil circulatory and cooling system with thrust-ring-pump at different conditions, a collaborative hydrodynamic design and optimization is purposed in this paper. Firstly, the head and flow rate at different conditions are decided by 1D flow numerical simulation of the oil circulatory and cooling system. Secondly, the flow passages of thrust-ring-pump are empirically designed under the restrictions of diameter and the speed of the thrust ring according to the head and flow rate from the simulation. Thirdly, the flow passage geometry matching optimization between thrust ring and oil bath is implemented by means of 3D flow simulation and performance prediction. Then, the pumps and the oil circulatory and cooling system are collaborative hydrodynamic optimized with predicted head-flow rate curve and the efficiency-flow rate curve of thrust-ring-pump. The presented methodology has been adopted by DFEM in design process of thrust-ring-pump and it shown can effectively improve the performance of whole system.
机译:推力环泵是一种特殊结构的极低比转速离心泵,受推力轴承和水轮发电机组运行条件的诸多限制。由于具有推力环泵的油循环冷却系统在维护和结构紧凑方面具有许多优点,因此已广泛用于大中型水轮发电机组。由于推力环的直径和速度受到发电机组的限制,因此推力环内部的流道(等效于叶轮)与油浴(等效于蜗壳)之间的匹配关系对推力的水动力性能有很大影响。环形泵。另一方面,扬程和流量随水轮发电机组和油循环冷却系统的运行条件而变化。到目前为止,在实际工程设计中都采用了经验计算方法,为了保证带推力环泵的油循环冷却系统在不同条件下的运行性能,本文进行了协同水动力设计和优化。纸。首先,通过油循环和冷却系统的一维流动数值模拟确定不同条件下的扬程和流量。其次,根据模拟的扬程和流量,在推力环的直径和速度的限制下,根据经验设计了推力环泵的流道。第三,通过3D流动模拟和性能预测,实现了推力环与油浴之间流道几何匹配的优化。然后,通过预测的扬程流量曲线和推力环泵的效率流量曲线,对泵和机油循环冷却系统进行协同水动力优化。提出的方法已被DFEM在推力环泵的设计过程中采用,表明可以有效地提高整个系统的性能。

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