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Keyword [nonlinear static]
Result: 141 - 160 | Page: 8 of 10
141. Study On Several Problems Of Design And Analysis For Isolated Buildings
142. Research On Resist Progressive Collapse Performance 5A Grade Office Building In Lanzhou Center
143. Performance-based Seismic Design Of Self-centering Steel Concentrically Braced Frames
144. Study On Progressive Collapse Resistance Of Steel Tubular Frame With Outer Tubular Joints
145. The Elastoplastic Analysis Of Seismic Response Of Deck-type Reinforced Concrete Slab Arch Bridge
146. Optimization Design Of High Shear Wall Structure With Buckling Restrained Brace
147. The Study On The Maximum Suitable Height Of Frame-shear Wall Structure In Pushover Analysis
148. The Design Of The Inclined Column Frame Of An Office Building - Core Tube Structure
149. Study On Strengthening And Seismic Performance Of Reinforced Concrete-Steel Irregular Hybrid Frame Structures
150. Study Of Methods Of Design Of RC Frame Structures For Progressive Collapse Based On Nonlinear Static Analysis
151. Analysis Of The Progressive Collapse Behavior Of The RC Frame Structures Reinforced By High-Performance Composite Material
152. The Performance-based Seismic Design And Analysis Of A Transfinite High-rise Structure With Oblique Lateral Force Components
153. Analysis Of Progressive Collapse Resistance Capability And Reliability Of Reinforced Concrete Plane Frames Based On OpenSees
154. Space Frame Structure Progressive Collapse Design Research For Resistance
155. Preliminary Study On Benefit Of Fortification Intensity For Seismic Design Of Bridges Under Framework Of Lifecycle Cost Analysis
156. The Resistance To Progressive Collapse Of Frame Structures With Different Aseismic Levels
157. Research On Static And Dynamic Characteristics And Wind-resistant Measures Of Pipeline Suspension Bridges
158. Research On Seismic Performance Of New Friction "Plastic Hinge" Structure Of Steel Frame
159. Method For Determining The Critical Wind Speed Of Long-span Suspension Bridges Under Post Flutter
160. Parametric Study Of Self-centering Concentrically Braced Steel Frames Based On Frictional Energy Consumption
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