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滇东华力西期不整合面含金性 被引量:3
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作者 曾祥平 《云南地质》 2003年第3期260-266,共7页
多年对滇东地质勘查和矿业开发研究中发现 ,区内各金矿床 (体 )的赋存部位 ,多沿被动大陆边缘华力西期不整合面分布。由于区内华力西期不整合面明显受到边缘NS两侧两条深大断裂控制 ,多期NE~SW向左行剪切挤压作用 ,使不整合面上下地块... 多年对滇东地质勘查和矿业开发研究中发现 ,区内各金矿床 (体 )的赋存部位 ,多沿被动大陆边缘华力西期不整合面分布。由于区内华力西期不整合面明显受到边缘NS两侧两条深大断裂控制 ,多期NE~SW向左行剪切挤压作用 ,使不整合面上下地块以其为差异变形轴 ,旋转产生多期构造剥离或错移 ,在不整合面上下层位中形成较发育的构造剥离空间、张裂带或板劈理带。这些略呈线型分布的构造挤压带 ,在地史发展过程中 ,卷入多期构造变形后演变成局限断裂陷槽或槽沟环境 ,沉积了一套有别于其它区域的岩性组合。边缘深大断裂多期次海底基性火山喷发或喷流作用 ,除提供了幔源、壳源含金物质和含矿热液的活化与迁移的通道外 ,再次卷入构造变形的这些局限断裂陷槽或槽沟又成为区域金成矿物质聚集的有利场所 ,含矿热液选择沉积其内或堆积其中的细碎屑岩、粘土质岩、含碳质泥质岩类、不纯碳酸盐岩进行交代与沉淀 ,不受层控的影响 ,形成了滇东沿华力西期不整合面或接触带金成矿带。 展开更多
关键词 滇东 华力西期 不整合面 含金 局限裂槽 幔源聚金 非层控性
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Nonlinear hierarchy-structured predictive control design for a generic hypersonic vehicle 被引量:18
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作者 WANG Peng TANG GuoJian +1 位作者 LIU LuHua WU Jie 《Science China(Technological Sciences)》 SCIE EI CAS 2013年第8期2025-2036,共12页
A hierarchy-structured predictive controller is designed and analyzed for rotation motion dynamics of a generic hypersonic vehicle(GHV).This vehicle model has fast variability,is highly nonlinear,and includes uncertai... A hierarchy-structured predictive controller is designed and analyzed for rotation motion dynamics of a generic hypersonic vehicle(GHV).This vehicle model has fast variability,is highly nonlinear,and includes uncertain parameters.The controller contains two subsystems,the inner-fast-loop nonlinear generable predictive controller(NGPC)and the outer-slow-loop NGPC,both of which are designed by the closed-form optimal generable predictive control method.Thus,the heavy on-line computational burden in the classical predictive control method is avoided.The hierarchy structure of the control system decreases the relative degree of each subsystem and helps increase the dynamic response speed of the attitude controller.In order to improve the robustness of the control system,a feedback correction algorithm is proposed that corrects the calculation error between the predictive model and the real dynamic model.Simulation studies are conducted for the trimmed cruise conditions of an altitude of 33.5 km and Mach 15 to investigate the responses of the vehicle to the step commands of angle of attack,sideslip angle,and bank angle.The simulation studies demonstrate that the proposed controller is robust with respect to the parametric uncertainties and atmospheric disturbance,and meets the performance requirements of GHV with acceptable control inputs. 展开更多
关键词 generic hypersonic vehicle flight control predictive control hierarchy-structured ROBUSTNESS
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