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首页> 外文期刊>International Journal of Rotating Machinery >Leakage Characteristic of Helical Groove Seal Designed in Reactor Coolant Pump
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Leakage Characteristic of Helical Groove Seal Designed in Reactor Coolant Pump

机译:反应堆冷却剂泵螺旋槽密封件的泄漏特性

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Helical groove seal is designed in reactor coolant pump to control the leakage along the front surface of the impeller face due to its higher resistance than the circumferentially grooved seal. The flow and the friction factors in helical groove seals are predicted by employing a commercial CFD code, FLUENT. The friction factors of the helical groove seals with helix angles varying from 20 deg to 50 deg, at a range of rotational speed and axial Reynolds number, were, respectively, calculated. For the helically grooved stator with the helix angle greater than 20 deg, the leakage shows an upward trend with the helix angle. The circumferentially grooved stator has a lower resistance to leakage than the 20 deg and 30 deg stators. It can be predicated that, for a bigger helix angle, the friction factor increases slightly with an increase in high axial Reynolds number, which arises from the high-pressure operation condition, and the friction factor is generally sensitive to changes in the helix angle in this operation condition. The study lays the theoretical foundation for liquid seal design of reactor coolant pump and future experimental study to account for the high-pressure condition affecting the leakage characteristic.
机译:螺旋槽密封设计在反应堆冷却剂泵中,以控制沿叶轮面前表面的泄漏,因为其阻力比周向槽密封更高。螺旋凹槽密封中的流量和摩擦系数可通过使用商用CFD代码FLUENT进行预测。在转速和轴向雷诺数范围内,分别计算了螺旋角在20°至50°之间变化的螺旋槽密封件的摩擦系数。对于螺旋角大于20°的螺旋槽定子,泄漏量随螺旋角呈上升趋势。与20°和30°定子相比,带有圆周槽的定子具有更低的抗泄漏能力。可以推测,对于较大的螺旋角,摩擦因数随高压雷诺条件下轴向雷诺数的增加而略有增加,并且摩擦因数通常对螺旋角的变化敏感。此操作条件。该研究为反应堆冷却剂泵的液封设计和今后的实验研究奠定了理论基础,以应对影响泄漏特性的高压条件。

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