The Francis hydro-turbine generator unit (FHTGU) is a typical nonlinear system with the coupling hydraulic, mechanical and electric subsystems. It is a challenge to understand the reasons for its operational failures because the major reason for failures involves complex interactions of the three subsystems. Subsystems’ model interaction with the method of normal forms has been well developed and investigated, overcoming the linear methods used in the FHTGU’s stability analysis. However, these methods have not to quantify higher-order terms in a mathematically accurate type to capture dynamic modal interactions between subsystems. Due to the accelerating expansion of hydropower stations, stability of FHTGU shows singular nonlinear oscillati...
Power plants are subject to introduce disturbances in the power grid, resulting from interactions wi...
An efficient method is proposed for the multiharmonic frequency domain analysis of the stability for...
Hydraulic instability is a complex factor causing the vibration of hydro-turbine generator shafting ...
In a sudden load increasing process (SLIP), the hydroelectric generating system (HGS) experiences a ...
Hydraulic vibration is a critical factor affecting the stability and health of the hydro-turbine gen...
Utilizing the flexibility of hydropower to integrate more intermittent renewable energy into the pow...
In this research the nonlinear modal interaction and the effect of the interaction on the stressed p...
This Master s Thesis work deals with the development of improved hydro turbine models for the evalua...
Hydroelectric units can be operated in synchronous condenser mode to provide reactive power to the e...
In hydropower systems, it is essential to avoid catastrophic failures that lead to human and economi...
© 2017 American Society of Civil Engineers. Rapid development of the hydroelectric power industry h...
The working principle of a large hydropower station is to guide the high-pressure water flow to impa...
The present work represents an assessment of the authors' several years of study on the application ...
In hydropower systems, it is essential to avoid catastrophic failures that leads to human and econom...
POWER plants are subject to introduce disturbances in the power grid, resulting from interactions wi...
Power plants are subject to introduce disturbances in the power grid, resulting from interactions wi...
An efficient method is proposed for the multiharmonic frequency domain analysis of the stability for...
Hydraulic instability is a complex factor causing the vibration of hydro-turbine generator shafting ...
In a sudden load increasing process (SLIP), the hydroelectric generating system (HGS) experiences a ...
Hydraulic vibration is a critical factor affecting the stability and health of the hydro-turbine gen...
Utilizing the flexibility of hydropower to integrate more intermittent renewable energy into the pow...
In this research the nonlinear modal interaction and the effect of the interaction on the stressed p...
This Master s Thesis work deals with the development of improved hydro turbine models for the evalua...
Hydroelectric units can be operated in synchronous condenser mode to provide reactive power to the e...
In hydropower systems, it is essential to avoid catastrophic failures that lead to human and economi...
© 2017 American Society of Civil Engineers. Rapid development of the hydroelectric power industry h...
The working principle of a large hydropower station is to guide the high-pressure water flow to impa...
The present work represents an assessment of the authors' several years of study on the application ...
In hydropower systems, it is essential to avoid catastrophic failures that leads to human and econom...
POWER plants are subject to introduce disturbances in the power grid, resulting from interactions wi...
Power plants are subject to introduce disturbances in the power grid, resulting from interactions wi...
An efficient method is proposed for the multiharmonic frequency domain analysis of the stability for...
Hydraulic instability is a complex factor causing the vibration of hydro-turbine generator shafting ...