Table of Contents:
  • Cover
  • CONCRETE SHEAR IN EARTHQUAKE
  • PREFACE
  • ACKNOWLEDGMENT
  • CONTENTS
  • OPENING REMARKS
  • THEME I:
  • EXPERIMENTAL STUDIES OF MEMBRANE SHEAR BEHAVIOR
  • STATE OF THE ART OF EXPERIMENTAL STUDY RELATED TO IN-PLANE SHEAR IN REINFORCED CONCRETE SHELL ELEMENT IN JAPAN
  • THE RESPONSE OF REINFORCED CONCRETE ELEMENTS SUBJECTED TO SHEAR
  • EXPERIMENTAL STUDIES IN NEW ZEALAND OF SEISMIC SHEAR EFFECTS
  • NEED FOR SHEAR WALLS IN CONCRETE BUILDINGS FOR SEISMIC RESISTANCE.
  • STRESS-STRAIN RELATIONSHIPS FOR REINFORCED CONCRETE MEMBRANE ELEMENTS
  • HIGHER-STRENGTH CONCRETE PRESTRESSED DEEP BEAMS
  • ASEISMIC BEHAVIOR OF RC AND SRC SHORT COLUMNS
  • BEHAVIOR OF FIBER REINFORCED CONCRETE UNDER SHEAR
  • SHEAR WALL TESTS
  • TESTS ON REINFORCED CONCRETE LOW-RISE SHEAR WALLS UNDER CYCLIC LOADING
  • HYSTERETIC SHEAR RESPONSE OF LOW-RISE WALLS
  • PREDICTION OF HYSTERETIC LOOPS FOR R.C. SHEAR WALLS WITH 0.65 TO 1.90 SHEAR-SPAN TO WALL-WIDTH RATIOS
  • FAILURE MODES OF RC TALL SHEAR WALLS
  • EXPERIMENTAL STUDY OF STRENGTH AND DEFORMABILITY OF REINFORCED-CONCRETE WALLS AND THEIR JOINTS UNDER ALTERNATING LOADS
  • ON THE BEHAVIOUR OF CONCRETE COMPOSITE STIFFENING DIAPHRAGMS WITH SEISMIC-TYPE ALTERNATING LOADS
  • THE BEHAVIOR OF REINFORCED CONCRETE NUCLEAR CONTAINMENT STRUCTURES UNDER EARTHQUAKE LOADING
  • A UNIFIED EVALUATION OF RESTORING FORCE CHARACTERISTICS OF REACTOR BUILDINGS
  • THEME II:
  • THEORETICAL STUDIES OF MEMBRANE SHEAR BEHAVIOR
  • STATE-OF-THE-ART OF MEMBRANE SHEAR BEHAVIOR-EUROPEAN WORK
  • STATE-OF-THE-ART OF THEORETICAL STUDIES ON MEMBRANE SHEAR BEHAVIOR IN JAPAN
  • AN ANALYTICAL MODEL FOR RC PANELS SUBJECTED TO IN-PLANE STRESSES
  • COMPARISON OF FIXED AND ROTATING CRACK MODELS IN THE ANALYSIS OF PANELS, PLATES, AND SHELLS SUBJECTED TO SHEAR
  • MODELLING OF SHEAR TRANSFER IN CONCRETE USING CONTACT DENSITY FUNCTION
  • ROUGH CRACKS SUBJECTED TO EARTHQUAKE LOADING
  • A CONSISTENT MODEL FOR THE DESIGN OF SEEM REINFORCEMENT IN SLENDER BEAMS WITH I- OR BOX-SHAPED CROSS-SECTION
  • INTERACTIVE PLASTIC DESIGN OF WALLS
  • COUPLING BENDING AND SHEAR HYSTERETIC MODELS OF LOW-RISE R.C. WALLS
  • ANALYTICAL MODELS FOR REINFORCED CONCRETE SHEAR WALLS UNDER REVERSED CYCLIC LOADING
  • MIXED MODE FORMULATION FOR MEMBRANE DISPLACEMENT ANALYSIS OF RC PLATE AND SHELL ELEMENTS
  • THE SHEAR DEFORMATION ANALYSIS OF RC MEMBRANE ELEMENTS USING THE CRACK STRAIN DISTRIBUTION FUNCTION
  • COMPUTATION OF RC WALL RESPONSE
  • MICROSCOPIC AND MACROSCOPIC ANALYSES OF REINFORCED CONCRETE FRAMED SHEAR WALLS
  • ENERGY DISSIPATION OF REINFORCED CONCRETE SHEAR WALL PREDICTED BY NONLINEAR FEM ANALYSIS
  • THEME III:
  • EFFECT OF SHEAR ON ENERGY DISSIPATION
  • EVALUATION OF DUCTILITY OF R/C MEMBERS AND INFLUENCE OF DUCTILITY ON INELASTIC RESPONSE BEHAVIOUR OF R/C FRAME STRUCTURES
  • A PARAMETRIC STUDY OF THE RC PANEL DUCTILITY BY USING THE ANALYTICAL MODEL
  • DUCTILE AND BRITTLE FAILURES OF REINFORCED CONCRETE WALL ELEMENTS SUBJECT TO SHEAR
  • ANALYTICAL APPROACH TO DYNAMIC HYSTERESIS DAMPING OF R/C IN-PLANE STRUCTURES SUBJECTED TO BASE ACCELERATION
  • THEME IV:
  • DESIGN FOR EARTHQUAKE RESISTANCE
  • SEISMIC DESIGN STRATEGIES FOR SHEAR RESISTANCE IN REINFORCED CONCRETE STRUCTURES
  • DESIGN PHILOSOPHY FOR SHEAR IN EARTHQUAKE RESISTANCE IN JAPAN
  • EVALUATION FOR EARTHQUAKE-RESISTANT DESIGN OF REINFORCED CONCRETE STRUCTURES IN SHEAR
  • STRENGTH AND DUCTILITY DESIGN OF RC MEMBERS SUBJECTED TO COMBINED BENDING AND SHEAR
  • DESIGN OF EARTHQUAKE RESIST.