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Horizontal Loading Tests on Model Foundations Retrofitted by Micropiles Masahiro NISHITANI Jiro FUKUI Takeshi UMEBARA IAI, PWRI Structures Research Group Foundation Engineering Team
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Retrofitting of Existing Foundation by Micropiles Limited Headroom Widening of Footing Existing Pile Micropile Bearing Layer
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Presentation Outline Outline of horizontal loading tests on group piles Results of horizontal loading tests Results of simulation analyses for the loading tests Summaries
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Presentation Outline Outline of horizontal loading tests on group piles Results of horizontal loading tests Results of simulation analyses for the loading tests Summaries
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To Clarify the Effects of Group Piles…. → Horizontal Loading Tests on Model Foundations Plane of Existing Foundation with Micropiles Micropile Existing Pile Existing Footing
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Cases of Horizontal Loading Tests
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Case 1Case 2
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Case 3
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Cases of Horizontal Loading Tests
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Models of Case 4 to Case 7 Existing Pile Micropile Loading Direction Front Rear
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Case 4Case 5
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Case 6 Case 7
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Specifications of Model Piles
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Loading Test for Case 3 Footing Steel Bar Jack
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Presentation Outline Outline of horizontal loading tests on group piles Results of horizontal loading tests Results of simulation analyses for the loading tests Summaries
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Curve of Load and Displacement
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Bending Moment on Existing Piles in Case 3 and Case 4
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Bending Moment on Existing Piles in Case 4 and Case 6
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Bending Moment on Micropiles in Case 4 and Case 6
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Shearing Force on Existing Piles in Case 3 and Case 4
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Shearing Force on Existing Piles in Case 4 and Case 6
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Axial Force on Existing Piles in Case 3, Case 4 and Case 6
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Axial Force on Existing Piles in Case 4 and Case 6
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1.52.01.00.50.0 1.01.50.50.0 Curve of Horizontal Ground Reaction and Displacement
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Presentation Outline Outline of horizontal loading tests on group piles Results of horizontal loading tests Results of simulation analyses for the loading tests Summaries
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To Study the Design Method of Group Piles with Different Diameter Piles…. → Simulation Analyses for Loading Tests by Ductility Design Method Non-Linear Model ・ Ground Properties ・ Flexural Rigidity of Piles
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Model of Transverse Resistance of Pile Upper Limit of Ground Reaction Displacement Ground Reaction 0 P HU T an -1 k HE (m) (N/m 2 )
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k HE = a k b k k H p HU = a p b p p U a k, a p : Correction Factors of a Single Pile b k, b p : Correction Factors of Group Piles To consider the group effects… a k b k = 1 a p (Cray Ground) = 1.0 a p b p (Sandy Ground) = S/D ( ≦ 3) To consider the group effects of trailing piles… Transverse Resistance Characteristics of Pile
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Loading Direction Trailing Piles Front Rear Front Pile p HU ½ : 1
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1) Study new correction factors for a single pile, fitting with Case 1 test results 2) Study new correction factors for group piles, fitting with Case 3 test results 3) Analyze Case 4 to Case 6, using new correction factors Simulation Procedure
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New Correction Factors on Analyses
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Model of Flexural Rigidity of Steel Pile Curvature Bending Moment 0 Mp My Y Y: Yield State (Nm) (1/m) φy Fully Plastic Moment
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1201401008060200 40 12010080 60200 40 100806020040 Curve of Load and Displacement
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Bending Moment on Existing Piles in Case 3 and Case 4 Case 3 Case 4
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Bending Moment on Micropiles in Case 4
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Curve of Horizontal Ground Reaction and Displacement Case 3
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Curve of Horizontal Ground Reaction and Displacement Case 4
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Summaries Results of horizontal loading tests → Existing foundations with micropiles have a large retrofitting effects. → Spacing has little effect on retrofitting. → Retrofitting effects are counted by installing micropiles incliningly. Results of simulation analyses → It is possible to use the ductility design method to perform retrofitting design.
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