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水轮机顶盖螺栓受力特性研究 被引量:4
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作者 葛新峰 张敬 +6 位作者 祝双桔 钱巨林 赵雷 郑圣义 郑源 徐旭 binama maxime 《振动与冲击》 EI CSCD 北大核心 2021年第17期55-62,共8页
顶盖螺栓是连接水轮机顶盖与座环的重要连接件,顶盖螺栓的安全状态是水电站安全运行的重要保障。以某轴流式水轮机作为研究对象,建立了全三维流体模型和水轮机顶盖及螺栓结构模型,采用流固耦合方法将顶盖过流面压力分布水压力传递给水... 顶盖螺栓是连接水轮机顶盖与座环的重要连接件,顶盖螺栓的安全状态是水电站安全运行的重要保障。以某轴流式水轮机作为研究对象,建立了全三维流体模型和水轮机顶盖及螺栓结构模型,采用流固耦合方法将顶盖过流面压力分布水压力传递给水轮机顶盖,对现场电站螺栓采用中空测力传感器进行现场试验,将螺栓不同截面的等效应力分布与试验结果进行验证,研究表明:顶盖水压力随着水头和导叶开度的增大而增大,最大水头大开度工况顶盖总轴向压力值达到最大;螺栓不同位置截面应力分布不均,螺栓同时承受着轴向应力与弯曲应力,螺栓头部、螺栓与螺纹交接处相比螺栓比螺栓中部截面受力大;不同位置螺栓受力变化趋势一致验证了顶盖耦合面的水压力为轴对称分布的特性;开机时螺栓受力比停机时增加明显,较低负荷振动区,顶盖螺栓受力有所提升,在稳定运行区螺栓受力保持稳定;停机及三个稳定运行工况下数模计算的结果和现场试验吻合,验证了有限元计算的准确性,中空测力传感器能够比较准确的反应螺栓的轴向受力。 展开更多
关键词 顶盖螺栓 流固耦合 受力特性 中空测力传感器
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Investigation on reversible pump turbine flow structures and associated pressure field characteristics under different guide vane openings 被引量:5
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作者 binama maxime SU WenTao +5 位作者 CAI WeiHua LI FengChen WEI XianZhu MUHIRWA Alex GONG RuZhi WEKESA David W 《Science China(Technological Sciences)》 SCIE EI CAS CSCD 2019年第11期2052-2074,共23页
The use of reversible pump turbines(RPT) within pumped storage power plants goes with prolonged periods of off-design operating conditions, which leads to the onset of operating mode-dependent instabilities. In order ... The use of reversible pump turbines(RPT) within pumped storage power plants goes with prolonged periods of off-design operating conditions, which leads to the onset of operating mode-dependent instabilities. In order to decrease the gravity of RPT flow instabilities and associated damages or even completely eliminate them, a deep understanding of its onset and development mechanism is needed. In line with this, the present study seeks to numerically investigate the onset and development mechanism of RPT unsteady flow structures as well as the evolutional characteristics of associated pressure pulsations throughout the RPT complete flow passage, under off-design conditions for three GVOs namely 17, 21, and 25 mm. The study results showed that low torque operating conditions and associated vaneless space back flow structures were the trigger of flow unsteadiness onset within the RPT vaneless space, the instabilities which grew to cause the S-shape characteristics appearance. Moreover, the runner flow unsteadiness was found to decrease with the GVO increase. On the other hand, the GVO increase worsened the pressure pulsation levels within RPT flow zones, where pressure pulsations within the vaneless space and flow zones in its vicinities were found to be the most sensitive to GVO changes. 展开更多
关键词 REVERSIBLE PUMP-TURBINE flow UNSTEADINESS pressure PULSATION guide VANE OPENING numerical simulation
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