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基于MDO策略的民用航空发动机概念设计研究 被引量:2
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作者 闫成 尹泽勇 +4 位作者 郭福水 申秀丽 罗钜 龙丹 赵诗棋 《航空动力学报》 EI CAS CSCD 北大核心 2017年第8期1911-1921,共11页
以某型民用涡扇航空发动机概念设计为例,集成了总体方案(包括热力循环分析、质量评估、噪声评估、氮氧化物排放评估)、风扇(包括气动设计、强度分析)、低压涡轮(包括气动设计、强度分析)3个子系统,以设计点耗油率、整机质量、飞越状态... 以某型民用涡扇航空发动机概念设计为例,集成了总体方案(包括热力循环分析、质量评估、噪声评估、氮氧化物排放评估)、风扇(包括气动设计、强度分析)、低压涡轮(包括气动设计、强度分析)3个子系统,以设计点耗油率、整机质量、飞越状态总声功率级、进近状态总声功率级和燃烧室氮氧化物排放量为优化目标,进行了基于多目标的整机多学科设计优化(MDO)的研究。对比研究了单学科可行(IDF)、协作优化(CO)和不对称子空间优化(ASO)3种典型的优化策略及其在整机MDO中的应用,探讨了整机MDO的建模方法、子系统间数据传递及解耦方式。结果表明:3种策略优化效率相当,优化时间最大相差742s;CO策略与ASO策略在整机MDO应用中优化效果较好,综合评价指标分别降低了0.82%和0.86%。 展开更多
关键词 概念设计 MDO策略 IDF策略 co策略 ASO策略
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Mapping three-dimensional co-seismic surface deformations associated with the 2015 MW7.2 Murghab earthquake based on InSAR and characteristics of crustal strain 被引量:3
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作者 Jie GAN Jun HU +4 位作者 Zhiwei LI Changjiang YANG Jihong LIU Qian SUN Wanji ZHENG 《Science China Earth Sciences》 SCIE EI CAS CSCD 2018年第10期1451-1466,共16页
Three-dimensional(3 D) co-seismic surface deformations are of great importance to interpret the characteristics of coseismic deformations and to understand the geometries and dynamics of seismogenic faults. In this pa... Three-dimensional(3 D) co-seismic surface deformations are of great importance to interpret the characteristics of coseismic deformations and to understand the geometries and dynamics of seismogenic faults. In this paper, we propose a method for mapping 3 D co-seismic deformations based on InSAR observations and crustal strain characteristics. In addition, the search strategy of correlation points is optimized by adaptive correlation distance, which greatly improves the applicability of the proposed method in restoring deformations in decorrelation areas. Results of the simulation experiment reveal that the proposed method is superior to conventional methods in both the accuracy and completeness. The proposed method is then applied to map the 3 D co-seismic surface deformations associated with the 2015 MW7.2 Murghab earthquake using ascending and descending ALOS-2 PALSAR-2 images. The results show that the seismogenic fault is the Sarez-Karakul fault(SKF), which is dominated by NE-SW strike slips with an almost vertical dip angle. The north section and the south segment near the epicentre have obvious subsidence along with a southwestward motion in the northwest wall, and the southeast wall has northeast movement and surface uplift trend along the fault zone. The strain field of the earthquake is also obtained by the proposed method. It is found that the crustal block of the seismic area is obviously affected by dilatation and shear forces, which is in good agreement with the movement character of the sinistral slip. 展开更多
关键词 INSAR Characteristics of crustal strain Three-dimensional co-seismic deformations Murghab earthquake ALOS-2
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