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两级式光伏并网发电系统控制规律研究与仿真
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作者 肖建东 沈友建 张英亮 《电工电气》 2017年第1期13-17,共5页
根据单相两级式隔离型光伏并网发电系统,设计出前级BOOST升压电路以及后级逆变电路,并分析了其系统控制,计算了BOOST电路以及低通滤波的元器件参数,搭建了MATLAB/Simulink仿真电路,经仿真实验,证明该两级式隔离型光伏并网发电系统输出... 根据单相两级式隔离型光伏并网发电系统,设计出前级BOOST升压电路以及后级逆变电路,并分析了其系统控制,计算了BOOST电路以及低通滤波的元器件参数,搭建了MATLAB/Simulink仿真电路,经仿真实验,证明该两级式隔离型光伏并网发电系统输出电流波形失真度小,频率相位特性满足并网要求。 展开更多
关键词 两级式光伏并网 系统控制 电感计算 电容计算 MATLAB/SIMULINK仿真
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Characteristics and dynamics of compressible multiscale cavitating flows inside a nozzle,with special emphasis on compressible effects
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作者 Ziyang Wang Demin Liu Xianwu Luo 《International Journal of Fluid Engineering》 2026年第1期26-34,共9页
Unsteady cavitating flow usually contains various vapor structures with different length scales and significant fluid compressibility,which poses great challenges to numerical simulation.In this work,we propose a comp... Unsteady cavitating flow usually contains various vapor structures with different length scales and significant fluid compressibility,which poses great challenges to numerical simulation.In this work,we propose a compressible Eulerian-Lagrangian method to investigate cloud cavitation inside a nozzle,with particular emphasis on the effect of compressibility on multiscale structures.The macroscopic cavity evolution is dealt with using large eddy simulation and the volume of fluid method in a compressible Eulerian framework.Microscopic bubble dynamics are described using the equation of bubble motion and the compressible Rayleigh-Plesset equation.A two-way coupling algorithm is established to bridge the two frameworks.The calculated results are validated by comparison with available experimental data.The numerical results show that the compressibility exacerbates the instability of the cavitating flow field,generates more discrete bubbles,and promotes liquid-vapor mass exchange,which further increases the overall cavitation volume.Furthermore,two distinct power laws for bubble size distribution,with exponent-4/3 for small bubbles and-10/3 for large bubbles,are obtained.Owing to the influence of the high flow velocity and high ambient pressure in the nozzle,and the wall effects on bubble dynamics,the number of large-size bubbles calculated by the numerical simulation is greater than that obtained by theoretical analysis.The formation of these bubbles is affected by shear on the liquid-vapor interface,the presence of vortex structures,and turbulence,thus differing significantly from the case of cavitation flow around a hydrofoil. 展开更多
关键词 compressible euleri large eddy simulation cloud cavitation compressible flows unsteady cavitating volume fluid method vapor structures numerical simulationin
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