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New Bulb Turbine with Counter-rotating Tandem-runner 被引量:4
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作者 HAN Fengqin YANG Lijing +1 位作者 YAN Shijie KUBOAT Takashi 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2012年第5期919-925,共7页
With the increasing demand for the clean sustainable power, the turbine design urgently turns to increase the capability significantly toward higher head for generating larger power. Currently, there are many studies ... With the increasing demand for the clean sustainable power, the turbine design urgently turns to increase the capability significantly toward higher head for generating larger power. Currently, there are many studies in the field of the bulb turbine with single-stage runner, though reports about counter-rotating tandem-runner are rare. However, the further high-head application with the single-stage runner is very difficult to achieve due to the limit of the specific speed. In this paper, a new bulb turbine with the tandem-runner is designed in order to substantially increase the applicable limit toward higher head with larger power. A half of the net head is absorbed by the frontal runner which can generate output power, while the remaining half is absorbed by the rear runner. To generate the Euler energy required for the rear runner, the frontal runner has the counter-rotation against the rear runner so that the counter-rotating tandem-runner can meet the purpose of double head and power under the same size as the conventional bulb turbine. Supply and demand of Euler energy between the two runners are thoroughly optimized through the detailed flow analysis, in order to secure the stable operation. As a result, the interference of Euler energies between the outflow from the frontal runner and the inflow to the rear runner is confirmed to be very small on the counter-rotating interface between the two runners. The prediction method of on-cam performance between the two adjustable runners is also developed numerically, which provides optimal flow between the two runners. This research provides a theoretical basis for the optimal design and operation of the counter-rotating tandem-runner bulb turbines. 展开更多
关键词 bulb turbine tandem-runner COUNTER-ROTATING Euler energy power increase
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Numerical simulation of transient characteristics in a bulb turbine during the load rejection process
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作者 Yue Lu Yu-quan Zhang +1 位作者 Zhong-wei He Yuan Zheng 《Journal of Hydrodynamics》 SCIE EI CSCD 2024年第1期170-183,共14页
To evaluate the safety of the bulb tubular turbine,the dynamic hydraulic characteristics of a hydropower station system during the load rejection process are studied through numerical simulations and a prototype test.... To evaluate the safety of the bulb tubular turbine,the dynamic hydraulic characteristics of a hydropower station system during the load rejection process are studied through numerical simulations and a prototype test.In the developed model,a dynamic grid technology(DGT)controls the closure of the guide vane and the blade,whilst the moment balance equation and the user-defined function(UDF)provide the runner’s rotation speed.The 3-D transient simulation method can well predict the rotation speed and mass flow curves in the state of load rejection.The simulation outcomes of the system performance are basically consistent with the measurement data of the prototype.As observed,the runner is subjected to the reversely increased torque and axial force,the system is in a braking phase,and the maximum speed peaks at 144.6%of the rated speed.Moreover,the internal flow of the runner is greatly affected by the closure of the guide vane,and the draft tube forms an eccentric spiral vortex rope.It breaks downstream,aggravating the instability of the draft tube.Overall,the transient characteristics span for the first five seconds,demonstrating the importance of establishing an efficient governing controller.The obtained results are useful for designing the turbine’s flow channel with a double regulating function and comprehending the turbine’s transient characteristics. 展开更多
关键词 bulb tubular turbine load rejection numerical simulation dynamic grid prototype test
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Correlation analysis of cavitation-induced pressure pulsation and vibration in a bulb turbine
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作者 Tian-shu Li Jian-jun Feng +2 位作者 Guo-jun Zhu Yun-zhe Li Xing-qi Luo 《Journal of Hydrodynamics》 SCIE EI CSCD 2023年第6期1052-1063,共12页
Cavitation is one of the main causes of deteriorating stability of bulb turbines.To enhance their stability,this study examines the effects of runner cavitation on draft tube pressure fluctuation and vibration in bulb... Cavitation is one of the main causes of deteriorating stability of bulb turbines.To enhance their stability,this study examines the effects of runner cavitation on draft tube pressure fluctuation and vibration in bulb turbine through experimental methods.With varying cavitation coefficients,a synchronous test system,including a high-speed camera,vibration acceleration sensors and pressure pulsation sensors,is applied to obtain cavitation images of the runner,vibration and internal fluid pressure pulsation data of the draft tube.The results show that the correlated component of pressure pulsation signals during the cavitation process is the synchronous pressure pulsation of 16f_(n)With the development of cavitation,the amplitude of synchronous pressure pulsation increases first and then decreases.Cavitation enhances the high-frequency vibration on the wall of runner chamber.The root mean square(rms)of the vertical vibration component IMF3,the horizontal vibration components IMF2,IMF4 are linearly negatively correlated with the cavitation coefficient.The associated component between cavitation-induced vibration and pressure pulsation signal is 16f_(n)and its harmonics.In the process of cavitation,pressure pulsation plays a leading role in vibration. 展开更多
关键词 bulb turbine CAVITATION pressure fluctuation VIBRATION CORRELATION
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