語系:
繁體中文
English
說明(常見問題)
回圖書館首頁
手機版館藏查詢
登入
回首頁
切換:
標籤
|
MARC模式
|
ISBD
Seismic design aids for nonlinear pu...
~
Ger, Jeffrey.
FindBook
Google Book
Amazon
博客來
Seismic design aids for nonlinear pushover analysis of reinforced concrete and steel bridges
紀錄類型:
書目-電子資源 : Monograph/item
正題名/作者:
Seismic design aids for nonlinear pushover analysis of reinforced concrete and steel bridges/ Jeffrey Ger, Franklin Y. Cheng.
作者:
Ger, Jeffrey.
其他作者:
Cheng, Franklin Y.
出版者:
Boca Raton, FL :CRC Press, : ©2011.,
面頁冊數:
1 online resource (xxiv, 376 p.) :ill.
內容註:
Overview of Seismic Design of Highway Bridges in the United States ; AASHTO Bridge Seismic Design Philosophy ; Direct Displacement-Based Design Procedures -- Pushover Analysis Applications ; Displacement Capacity Evaluation for the Seismic Design of New Bridges ; Performance Level Verification for New Bridges Designed by DDBD ; Capacity/Demand Ratios for the Seismic Evaluation of Existing Bridges ; Quantitative Bridge System Redundancy Evaluation ; Moment-Curvature Curves and Axial Load-Moment Interaction Curves -- Nonlinear Pushover Analysis Procedure ; SOL01 -- Elastic Static Analysis ; SOL04 -- Nonlinear Static Pushover (Cyclic or Monotonic) Analysis ; Material Library ; Element Library ; Material-Element Cross Reference -- Nonlinear Bending Stiffness Matrix Formulations ; Bilinear Interaction Axial Load-Moment Method ; Plastic Hinge Length Method ; Constant Moment Ratio Method ; Finite Segment-Finite String Method ; Finite Segment-Moment Curvature Method ; Concrete Column Failure Modes ; Bilinear Moment-Curvature Curves ; Column Axial Load-Moment Interaction ; Column Axial Load-Plastic Curvature Capacity Curve -- Analytical Formulation for Structures ; Joint Definition and Degrees of Freedom ; Inelastic IE3DBEAM Element ; Finite-Segment Element ; Brace Element ; Plate Element ; Unbalanced Forces -- Input Data for INSTRUCT Program ; Notes on Input ; STRUCTURE -- Define the Structural Model ; SOL01 -- Elastic Static Solution ; SOL04 -- Incremental Static (Pushover) Solution ; BUG -- Set Bug Options ; READ -- Read Plot Files ; NOECHO -- Inhibit Input Echo ; DUMP -- Print Memory ; RELEASE -- Release Memory ; STOP -- Terminate Execution -- Numerical Examples ; Structural Limit State Indicators ; Member Yield Indicators ; Numerical Examples -- Appendix A: Stiffness Matrix Formulation for Bilinear PM Method -- Appendix B: Stiffness Matrix Formulation for Finite Segment -- Appendix C: Unbalanced Forces of a Finite Segment -- Appendix D: Nonlinear Incremental Solution Algorithms -- Appendix E: Plastic Curvature Capacities and Neutral Axis Depth in Columns -- Appendix F: Elastic and Inelastic Time History Analysis -- Appendix G: Elastic and Inelastic Response Spectra -- Appendix H: Response Spectrum Analysis of Multiple-dof System -- Appendix I: Polynomial Curve Fitting -- Appendix J: Plate Element Stiffness Matrix.
標題:
Concrete bridges - Design and construction. -
電子資源:
http://www.crcnetbase.com/doi/book/10.1201/b11096
Seismic design aids for nonlinear pushover analysis of reinforced concrete and steel bridges
Ger, Jeffrey.
Seismic design aids for nonlinear pushover analysis of reinforced concrete and steel bridges
[electronic resource] /Jeffrey Ger, Franklin Y. Cheng. - Boca Raton, FL :CRC Press,©2011. - 1 online resource (xxiv, 376 p.) :ill. - Advances in earthquake engineering.
Includes bibliographical references (p. 367-370) and index.
Overview of Seismic Design of Highway Bridges in the United States ; AASHTO Bridge Seismic Design Philosophy ; Direct Displacement-Based Design Procedures -- Pushover Analysis Applications ; Displacement Capacity Evaluation for the Seismic Design of New Bridges ; Performance Level Verification for New Bridges Designed by DDBD ; Capacity/Demand Ratios for the Seismic Evaluation of Existing Bridges ; Quantitative Bridge System Redundancy Evaluation ; Moment-Curvature Curves and Axial Load-Moment Interaction Curves -- Nonlinear Pushover Analysis Procedure ; SOL01 -- Elastic Static Analysis ; SOL04 -- Nonlinear Static Pushover (Cyclic or Monotonic) Analysis ; Material Library ; Element Library ; Material-Element Cross Reference -- Nonlinear Bending Stiffness Matrix Formulations ; Bilinear Interaction Axial Load-Moment Method ; Plastic Hinge Length Method ; Constant Moment Ratio Method ; Finite Segment-Finite String Method ; Finite Segment-Moment Curvature Method ; Concrete Column Failure Modes ; Bilinear Moment-Curvature Curves ; Column Axial Load-Moment Interaction ; Column Axial Load-Plastic Curvature Capacity Curve -- Analytical Formulation for Structures ; Joint Definition and Degrees of Freedom ; Inelastic IE3DBEAM Element ; Finite-Segment Element ; Brace Element ; Plate Element ; Unbalanced Forces -- Input Data for INSTRUCT Program ; Notes on Input ; STRUCTURE -- Define the Structural Model ; SOL01 -- Elastic Static Solution ; SOL04 -- Incremental Static (Pushover) Solution ; BUG -- Set Bug Options ; READ -- Read Plot Files ; NOECHO -- Inhibit Input Echo ; DUMP -- Print Memory ; RELEASE -- Release Memory ; STOP -- Terminate Execution -- Numerical Examples ; Structural Limit State Indicators ; Member Yield Indicators ; Numerical Examples -- Appendix A: Stiffness Matrix Formulation for Bilinear PM Method -- Appendix B: Stiffness Matrix Formulation for Finite Segment -- Appendix C: Unbalanced Forces of a Finite Segment -- Appendix D: Nonlinear Incremental Solution Algorithms -- Appendix E: Plastic Curvature Capacities and Neutral Axis Depth in Columns -- Appendix F: Elastic and Inelastic Time History Analysis -- Appendix G: Elastic and Inelastic Response Spectra -- Appendix H: Response Spectrum Analysis of Multiple-dof System -- Appendix I: Polynomial Curve Fitting -- Appendix J: Plate Element Stiffness Matrix.
"Nonlinear static monotonic (pushover) analysis has become a common practice in performance-based bridge seismic design. The popularity of pushover analysis is due to its ability to identify the failure modes and the design limit states of bridge piers and to provide the progressive collapse sequence of damaged bridges when subjected to major earthquakes. Seismic Design Aids for Nonlinear Pushover Analysis of Reinforced Concrete and Steel Bridges fills the need for a complete reference on pushover analysis for practicing engineers.
LCCN: 2011014658Subjects--Topical Terms:
2090051
Concrete bridges
--Design and construction.
LC Class. No.: TG340 / .G46 2011
Dewey Class. No.: 624.2/5
Seismic design aids for nonlinear pushover analysis of reinforced concrete and steel bridges
LDR
:04533cmm a2200289 a 4500
001
1956282
003
OCoLC
005
20141031091221.0
008
150126s2011 flua b 001 0 eng
010
$a
2011014658
020
$z
9781439837634 (hbk. : alk. paper)
020
$z
1439837635 (hbk. : alk. paper)
020
$a
9781439837757 (electronic bk.)
020
$a
1439837759 (electronic bk.)
035
$a
(OCoLC)727356869
$z
(OCoLC)491889176
035
$a
ocn727356869
040
$a
DLC
$b
eng
$c
DLC
$d
YDX
$d
BTCTA
$d
YDXCP
$d
UKMGB
$d
CDX
$d
LHU
$d
OCLCO
$d
OCLCF
$d
CRCPR
$d
OCLCO
$d
OCLCQ
050
0 0
$a
TG340
$b
.G46 2011
082
0 0
$a
624.2/5
$2
23
100
1
$a
Ger, Jeffrey.
$3
2090050
245
1 0
$a
Seismic design aids for nonlinear pushover analysis of reinforced concrete and steel bridges
$h
[electronic resource] /
$c
Jeffrey Ger, Franklin Y. Cheng.
260
$a
Boca Raton, FL :
$b
CRC Press,
$c
©2011.
300
$a
1 online resource (xxiv, 376 p.) :
$b
ill.
490
0
$a
Advances in earthquake engineering
504
$a
Includes bibliographical references (p. 367-370) and index.
505
0
$a
Overview of Seismic Design of Highway Bridges in the United States ; AASHTO Bridge Seismic Design Philosophy ; Direct Displacement-Based Design Procedures -- Pushover Analysis Applications ; Displacement Capacity Evaluation for the Seismic Design of New Bridges ; Performance Level Verification for New Bridges Designed by DDBD ; Capacity/Demand Ratios for the Seismic Evaluation of Existing Bridges ; Quantitative Bridge System Redundancy Evaluation ; Moment-Curvature Curves and Axial Load-Moment Interaction Curves -- Nonlinear Pushover Analysis Procedure ; SOL01 -- Elastic Static Analysis ; SOL04 -- Nonlinear Static Pushover (Cyclic or Monotonic) Analysis ; Material Library ; Element Library ; Material-Element Cross Reference -- Nonlinear Bending Stiffness Matrix Formulations ; Bilinear Interaction Axial Load-Moment Method ; Plastic Hinge Length Method ; Constant Moment Ratio Method ; Finite Segment-Finite String Method ; Finite Segment-Moment Curvature Method ; Concrete Column Failure Modes ; Bilinear Moment-Curvature Curves ; Column Axial Load-Moment Interaction ; Column Axial Load-Plastic Curvature Capacity Curve -- Analytical Formulation for Structures ; Joint Definition and Degrees of Freedom ; Inelastic IE3DBEAM Element ; Finite-Segment Element ; Brace Element ; Plate Element ; Unbalanced Forces -- Input Data for INSTRUCT Program ; Notes on Input ; STRUCTURE -- Define the Structural Model ; SOL01 -- Elastic Static Solution ; SOL04 -- Incremental Static (Pushover) Solution ; BUG -- Set Bug Options ; READ -- Read Plot Files ; NOECHO -- Inhibit Input Echo ; DUMP -- Print Memory ; RELEASE -- Release Memory ; STOP -- Terminate Execution -- Numerical Examples ; Structural Limit State Indicators ; Member Yield Indicators ; Numerical Examples -- Appendix A: Stiffness Matrix Formulation for Bilinear PM Method -- Appendix B: Stiffness Matrix Formulation for Finite Segment -- Appendix C: Unbalanced Forces of a Finite Segment -- Appendix D: Nonlinear Incremental Solution Algorithms -- Appendix E: Plastic Curvature Capacities and Neutral Axis Depth in Columns -- Appendix F: Elastic and Inelastic Time History Analysis -- Appendix G: Elastic and Inelastic Response Spectra -- Appendix H: Response Spectrum Analysis of Multiple-dof System -- Appendix I: Polynomial Curve Fitting -- Appendix J: Plate Element Stiffness Matrix.
520
$a
"Nonlinear static monotonic (pushover) analysis has become a common practice in performance-based bridge seismic design. The popularity of pushover analysis is due to its ability to identify the failure modes and the design limit states of bridge piers and to provide the progressive collapse sequence of damaged bridges when subjected to major earthquakes. Seismic Design Aids for Nonlinear Pushover Analysis of Reinforced Concrete and Steel Bridges fills the need for a complete reference on pushover analysis for practicing engineers.
520
$a
This technical reference covers the pushover analysis of reinforced concrete and steel bridges with confined and unconfined concrete column members of either circular or rectangular cross sections as well as steel members of standard shapes. It provides step-by-step procedures for pushover analysis with various nonlinear member stiffness formulations, including: Finite segment-finite string (FSFS); Finite segment-moment curvature (FSMC); Axial load-moment interaction (PM); Constant moment ratio (CMR) and Plastic hinge length (PHL)."--Pub. desc.
650
0
$a
Concrete bridges
$x
Design and construction.
$3
2090051
650
0
$a
Iron and steel bridges
$x
Design and construction.
$3
2090052
650
0
$a
Structural engineering
$x
Mathematics.
$3
1299114
650
0
$a
Reinforced concrete.
$3
861675
650
0
$a
Lateral loads.
$3
2090053
700
1
$a
Cheng, Franklin Y.
$3
909709
856
4 0
$u
http://www.crcnetbase.com/doi/book/10.1201/b11096
筆 0 讀者評論
館藏地:
全部
電子資源
出版年:
卷號:
館藏
1 筆 • 頁數 1 •
1
條碼號
典藏地名稱
館藏流通類別
資料類型
索書號
使用類型
借閱狀態
預約狀態
備註欄
附件
W9251741
電子資源
11.線上閱覽_V
電子書
EB TG340 .G46 2011
一般使用(Normal)
在架
0
1 筆 • 頁數 1 •
1
多媒體
評論
新增評論
分享你的心得
Export
取書館
處理中
...
變更密碼
登入