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基于混合柔直的水风光一体化新型电力系统简化建模方法
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作者 陈圣哲 郑润生 +2 位作者 刘承锡 董旭柱 吕蕊 《长江技术经济》 2024年第2期54-60,共7页
依托国内新建含混合柔性直流外送的水风光多能互补一体化新型区域电力系统工程实际,针对该系统三个核心组成场站,即水电机组侧、风光汇集系统侧和混合柔性直流的区域化模型分别进行简化建模,而后通过实验对比验证响应模型和本文提出的... 依托国内新建含混合柔性直流外送的水风光多能互补一体化新型区域电力系统工程实际,针对该系统三个核心组成场站,即水电机组侧、风光汇集系统侧和混合柔性直流的区域化模型分别进行简化建模,而后通过实验对比验证响应模型和本文提出的等效模型。结果表明,本文提出的新能源区域电力系统等效模型可以在发生故障时对系统动态过程在机电仿真尺度进行高精度等效。由于其具有易拓展性和广泛适用性,可作为研究极大规模高比例新能源电力系统的实验范式。 展开更多
关键词 水风光一体化 等效模型 混合柔直 动态过程分析
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A NEW AEROMECHANICAL STABILITY ANALYSIS METHODOLOGY FOR COUPLED ROTOR/FUSELAGE SYSTEM OF HELICOPTERS
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作者 王浩文 高正 +1 位作者 郑兆昌 张虹秋 《Transactions of Nanjing University of Aeronautics and Astronautics》 EI 2001年第1期47-52,共6页
The aeromechanical st ability for the coupled rotor/fuselage system of helicopters in forward flight i s investigated. The periodic time-varying equations of motion are developed thr ough building a new 24DOF coupled ... The aeromechanical st ability for the coupled rotor/fuselage system of helicopters in forward flight i s investigated. The periodic time-varying equations of motion are developed thr ough building a new 24DOF coupled rigid/elastic blended element based on the fle xible multibody system theory in this paper. It accounts for the effects of prec one, sweep, and the moderately large elastic deflections on the blade and elasti city of shaft and fuselage of the helicopter. The dynamic coupling between the r igid motion of blades about the flap, lag and pitch hinges of articulated rotor and moderately large elastic deflections are included. There is no restriction o n the rotation amplitudes of flap, lag and pitch in the formulation. The stabili ty of periodic solution is studied using the Floquet theory. The transition matr ix is calculated by the Newmark integration method. The aeromechanical stability of a new helicopter is studied. The results show that it is stable in the given forward flight. But the instability arises with the decrease of the bending and torsion stiffness of the shaft. 展开更多
关键词 aeromechanical st ability coupled rotor/fuselage rigid/elastic blended element HELICOPTER
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