In this paper, a new method of earthquakes prediction taking into account the influence of strain solitary waves as a "trigger" of some shocks is presented. Methods of forecasting are based on evaluating trajectorie...In this paper, a new method of earthquakes prediction taking into account the influence of strain solitary waves as a "trigger" of some shocks is presented. Methods of forecasting are based on evaluating trajectories of individual solitons and clarification of shocks probability. Solitary waves are considered in solid anisotropic elastic medium and proved that there exist the motion equations solutions in the form of solitary waves. Predicting the trajectories of solitary waves related to the moment problem for the special case of Chebyshev system of functions or exponential problem. This problem is solved using special bijective mapping. Seismic process in the region of Japanese Islands, March 11,2011 is analyzed as an example.展开更多
In this paper,a CFD/CSD model coupling N-S equations and structural equations of motion in the time domain is described for aeroelastic analysis of large wind turbines.The structural modes of blades are analyzed with ...In this paper,a CFD/CSD model coupling N-S equations and structural equations of motion in the time domain is described for aeroelastic analysis of large wind turbines.The structural modes of blades are analyzed with one-dimensional beam models.By combining point matched sliding grid for wind turbine rotation and deforming grid for structural vibrations,a hybrid dynamic grid strategy is designed for the multi-block structured grid system of a wind turbine.The dual time-stepping approach and finite volume scheme are applied to the three-dimensional unsteady preconditioned N-S equations,and DES approach is employed to simulate the unsteady massively separated flows.A modal approach is adopted to calculate the structural response,and a predictor-corrector scheme is used to solve the structural equations of motion.CFD and CSD solvers are tightly coupled via successive iterations within each physical time step.As a result,a time-domain CFD/CSD model for aeroelastic analysis of a large wind turbine is achieved.The presented method is applied to the NH1500 large wind turbine under the rated condition,and the calculated aeroelastic characteristics agree well with those of the prescribed vortex wake method.展开更多
文摘In this paper, a new method of earthquakes prediction taking into account the influence of strain solitary waves as a "trigger" of some shocks is presented. Methods of forecasting are based on evaluating trajectories of individual solitons and clarification of shocks probability. Solitary waves are considered in solid anisotropic elastic medium and proved that there exist the motion equations solutions in the form of solitary waves. Predicting the trajectories of solitary waves related to the moment problem for the special case of Chebyshev system of functions or exponential problem. This problem is solved using special bijective mapping. Seismic process in the region of Japanese Islands, March 11,2011 is analyzed as an example.
基金supported by the National Basic Research Program of China ("973" Project) (Grant No. 2007CB714600)the Priority Academic Program Development of Jiangsu Higher Education Institutions
文摘In this paper,a CFD/CSD model coupling N-S equations and structural equations of motion in the time domain is described for aeroelastic analysis of large wind turbines.The structural modes of blades are analyzed with one-dimensional beam models.By combining point matched sliding grid for wind turbine rotation and deforming grid for structural vibrations,a hybrid dynamic grid strategy is designed for the multi-block structured grid system of a wind turbine.The dual time-stepping approach and finite volume scheme are applied to the three-dimensional unsteady preconditioned N-S equations,and DES approach is employed to simulate the unsteady massively separated flows.A modal approach is adopted to calculate the structural response,and a predictor-corrector scheme is used to solve the structural equations of motion.CFD and CSD solvers are tightly coupled via successive iterations within each physical time step.As a result,a time-domain CFD/CSD model for aeroelastic analysis of a large wind turbine is achieved.The presented method is applied to the NH1500 large wind turbine under the rated condition,and the calculated aeroelastic characteristics agree well with those of the prescribed vortex wake method.