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双转子转速协同规划的涡扇发动机加减速控制计划研究
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作者 强星煜 周登极 +1 位作者 尉询楷 王浩 《推进技术》 EI CAS CSCD 北大核心 2024年第4期233-242,共10页
当前涡扇发动机加减速控制计划,不能规划双轴加速进程,导致加速末期推力波动。本文提出了分阶段的加速度控制计划,按边界约束划分加速进程,基于动态稳定法设计初始加速度计划,通过寻找系统参数的超调临界点,协同修正初始加速度计划,满... 当前涡扇发动机加减速控制计划,不能规划双轴加速进程,导致加速末期推力波动。本文提出了分阶段的加速度控制计划,按边界约束划分加速进程,基于动态稳定法设计初始加速度计划,通过寻找系统参数的超调临界点,协同修正初始加速度计划,满足边界约束的同时保证双转子加速时间相同。在仿真验证环节,与基于定状态法的控制计划比较,本文方法可避免燃油振荡现象,推力超调量降低2.43%,推力稳定时间缩短1.045 s;与等转速增量的加速度控制计划比较,进一步改进了本文方法,推力响应时间缩短0.24 s,控制计划设计耗时为7.5781 s。综上,本文方法缩短了推力超调量和推力稳定时间,有望应用于发动机控制计划在线计算。 展开更多
关键词 涡扇发动机 分阶段控制计划 加速进程划分 动态稳定法 超调临界点
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Pseudo-dynamic analysis of seismic stability of reinforced slopes considering non-associated flow rule 被引量:10
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作者 A.Eskandarinejad A.H.Shafiee 《Journal of Central South University》 SCIE EI CAS 2011年第6期2091-2099,共9页
The required reinforcement force to prevent instability and the yield acceleration of reinforced slopes are computed under seismic loading by applying the kinematic approach of limit analysis in conjunction with the p... The required reinforcement force to prevent instability and the yield acceleration of reinforced slopes are computed under seismic loading by applying the kinematic approach of limit analysis in conjunction with the pseudo-dynamic method for a wide range of soil cohesion, friction angle, dilation angle and horizontal and vertical seismic coefficients. Each parameter threatening the stability of the slope enhances the magnitude of the required reinforcement force and vice versa. Moreover, the yield acceleration increases with the increase in soil shear strength parameters but decreases with the increase in the slope angle. The comparison of the present work with some of the available solutions in the literatures shows a reasonable agreement. 展开更多
关键词 reinforced slope seismic stability pseudo-dynamic approach non-associated flow rule cohesive slope
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Seismic stability of reinforced soil walls under bearing capacity failure by pseudo-dynamic method 被引量:6
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作者 阮晓波 孙树林 《Journal of Central South University》 SCIE EI CAS 2013年第9期2593-2598,共6页
In order to evaluate the seismic stability of reinforced soil walls against bearing capacity failure,the seismic safety factor of reinforced soil walls was determined by using pseudo-dynamic method,and calculated by c... In order to evaluate the seismic stability of reinforced soil walls against bearing capacity failure,the seismic safety factor of reinforced soil walls was determined by using pseudo-dynamic method,and calculated by considering different parameters,such as horizontal and vertical seismic acceleration coefficients,ratio of reinforcement length to wall height,back fill friction angle,foundation soil friction angle,soil reinforcement interface friction angle and surcharge.The parametric study shows that the seismic safety factor increases by 24-fold when the foundation soil friction angle varies from 25°to 45°,and increases by 2-fold when the soil reinforcement interface friction angle varies from 0 to 30°.That is to say,the bigger values the foundation soil and/or soil reinforcement interface friction angles have,the safer the reinforced soil walls become in the seismic design.The results were also compared with those obtained from pseudo-static method.It is found that there is a higher value of the safety factor by the present work. 展开更多
关键词 reinforced soil walls seismic stability against bearing capacity seismic active force pseudo-dynamic method
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