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Creating shapes in civil and naval architecture : a cross-disciplinary comparison / / editors, Horst Nowacki, Wolfgang Lefèvre
Creating shapes in civil and naval architecture : a cross-disciplinary comparison / / editors, Horst Nowacki, Wolfgang Lefèvre
Pubbl/distr/stampa Leiden ; ; Boston, : Brill, 2009
Descrizione fisica 1 online resource (470 pages) : illustrations, plates
Disciplina 623.8/1
Altri autori (Persone) NowackiH (Horst)
LefèvreWolfgang <1941->
Collana History of science and medicine library
Soggetto topico Naval architecture - Design and construction - History
Hulls (Naval architecture) - Design and construction - History
Shape theory (Topology)
Structural optimization
Shipbuilding - History
ISBN 1-282-60172-5
9786612601729
90-474-2691-6
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Preliminary Materials / H. Nowacki and W. Lefèvre -- Colour Plates I–LII / H. Nowacki and W. Lefèvre -- Chapter One. Shape Creation Knowledge In Civil And Naval Architecture / Horst Nowacki -- Chapter Two. On The Use Of Design In Ancient Mediterranean Ship Construction / Patrice Pomey -- Chapter Three. Were The Hittites Able To Build A Replica Of An Egyptian Ship According To Their Own Drawings? / Lucien Basch -- Chapter Four. Markings And Pegs: Clues To Geometrical Procedures Of Roman Naval Architecture? / Ronald Bockius -- Chapter Five. Ancient Greek And Roman Architects’ Approach To Curvature — The Corinthian Capital, Entasis And Amphitheaters / Mark Wilson Jones -- Chapter Six. "To Design" And "To Build" Mediaeval Ships (Fifth To Fifteenth Centuries) — The Application Of Knowledge Held In Common With Civil Architecture, Or In Isolation? / Eric Rieth -- Chapter Seven. Boat And Boat House. The Conceptional Origins Of Clinker Boats And Boat-Shaped Halls Of The Fourth To Eleventh Centuries In Scandinavia / Ole Crumlin-Pedersen -- Chapter Eight. Gothic And Renaissance Design Strategies In Stonecutting / Enrique Rabasa Díaz and José Calvo López -- Chapter Nine. On Late-Gothic Vault Geometry / Jos Tomlow -- Chapter Ten. The Shipbuilding Text Of Michael Of Rhodes / David Mcgee -- Chapter Eleven. Naval Architecture Digitalized Introducing Arithmetic And Geometry Into Late Mediaeval Shipwrightry / Ulrich Alertz -- Chapter Twelve. Pregnant Columns. From Word To Shape / Antonio Becchi -- Chapter Thirteen. From One Curve To Another Or The Problem Of Changing Coordinates In Stereotomic Layouts / Joël Sakarovitch -- Chapter Fourteen. The Squinch Of Anet / Martina Lenz -- Conclusions / H. Nowacki and W. Lefèvre -- Appendices / H. Nowacki and W. Lefèvre -- Appendix A. From Words To Technical Practices: Moulds And Naval Architecture In The Middle Ages / Eric Rieth -- Appendix B. The Rare Traces Of Constructional Procedures In "Practical Geometries" / Jens Høyrup -- Appendix C. Draughting Curves Used In Ship Design / Jobst Lessenich -- Appendix D. Bibliographical Notes On Historical Metrology / Compiled and Jobst Lessenich -- Index / H. Nowacki and W. Lefèvre.
Record Nr. UNINA-9910792450403321
Leiden ; ; Boston, : Brill, 2009
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui
Creating shapes in civil and naval architecture : a cross-disciplinary comparison / / editors, Horst Nowacki, Wolfgang Lefèvre
Creating shapes in civil and naval architecture : a cross-disciplinary comparison / / editors, Horst Nowacki, Wolfgang Lefèvre
Pubbl/distr/stampa Leiden ; ; Boston, : Brill, 2009
Descrizione fisica 1 online resource (470 pages) : illustrations, plates
Disciplina 623.8/1
Altri autori (Persone) NowackiH (Horst)
LefèvreWolfgang <1941->
Collana History of science and medicine library
Soggetto topico Naval architecture - Design and construction - History
Hulls (Naval architecture) - Design and construction - History
Shape theory (Topology)
Structural optimization
Shipbuilding - History
ISBN 1-282-60172-5
9786612601729
90-474-2691-6
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Preliminary Materials / H. Nowacki and W. Lefèvre -- Colour Plates I–LII / H. Nowacki and W. Lefèvre -- Chapter One. Shape Creation Knowledge In Civil And Naval Architecture / Horst Nowacki -- Chapter Two. On The Use Of Design In Ancient Mediterranean Ship Construction / Patrice Pomey -- Chapter Three. Were The Hittites Able To Build A Replica Of An Egyptian Ship According To Their Own Drawings? / Lucien Basch -- Chapter Four. Markings And Pegs: Clues To Geometrical Procedures Of Roman Naval Architecture? / Ronald Bockius -- Chapter Five. Ancient Greek And Roman Architects’ Approach To Curvature — The Corinthian Capital, Entasis And Amphitheaters / Mark Wilson Jones -- Chapter Six. "To Design" And "To Build" Mediaeval Ships (Fifth To Fifteenth Centuries) — The Application Of Knowledge Held In Common With Civil Architecture, Or In Isolation? / Eric Rieth -- Chapter Seven. Boat And Boat House. The Conceptional Origins Of Clinker Boats And Boat-Shaped Halls Of The Fourth To Eleventh Centuries In Scandinavia / Ole Crumlin-Pedersen -- Chapter Eight. Gothic And Renaissance Design Strategies In Stonecutting / Enrique Rabasa Díaz and José Calvo López -- Chapter Nine. On Late-Gothic Vault Geometry / Jos Tomlow -- Chapter Ten. The Shipbuilding Text Of Michael Of Rhodes / David Mcgee -- Chapter Eleven. Naval Architecture Digitalized Introducing Arithmetic And Geometry Into Late Mediaeval Shipwrightry / Ulrich Alertz -- Chapter Twelve. Pregnant Columns. From Word To Shape / Antonio Becchi -- Chapter Thirteen. From One Curve To Another Or The Problem Of Changing Coordinates In Stereotomic Layouts / Joël Sakarovitch -- Chapter Fourteen. The Squinch Of Anet / Martina Lenz -- Conclusions / H. Nowacki and W. Lefèvre -- Appendices / H. Nowacki and W. Lefèvre -- Appendix A. From Words To Technical Practices: Moulds And Naval Architecture In The Middle Ages / Eric Rieth -- Appendix B. The Rare Traces Of Constructional Procedures In "Practical Geometries" / Jens Høyrup -- Appendix C. Draughting Curves Used In Ship Design / Jobst Lessenich -- Appendix D. Bibliographical Notes On Historical Metrology / Compiled and Jobst Lessenich -- Index / H. Nowacki and W. Lefèvre.
Record Nr. UNINA-9910824359803321
Leiden ; ; Boston, : Brill, 2009
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui
Evolutionary topology optimization of continuum structures [[electronic resource] ] : methods and applications / / X. Huang, Y.M. Xie
Evolutionary topology optimization of continuum structures [[electronic resource] ] : methods and applications / / X. Huang, Y.M. Xie
Autore Huang X (Xiaodong), <1972->
Pubbl/distr/stampa Chichester, West Sussex, U.K. ; ; Hoboken, NJ, : Wiley, 2010
Descrizione fisica 1 online resource (237 p.)
Disciplina 624.1/7713
Altri autori (Persone) XieY. M
Soggetto topico Structural optimization
Topology
ISBN 1-282-54873-5
9786612548734
0-470-68948-X
0-470-68947-1
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto EVOLUTIONARYTOPOLOGYOPTIMIZATION OFCONTINUUMSTRUCTURES; Contents; Preface; 1 Introduction; 1.1 Structural Optimization; 1.2 Topology Optimization of Continuum Structures; 1.3 ESO/BESO and the Layout of the Book; References; 2 Evolutionary Structural Optimization Method; 2.1 Introduction; 2.2 ESO Based on Stress Level; 2.2.1 Evolutionary Procedure; 2.2.2 Example of Two-bar Frame; 2.2.3 Examples of Michell Type Structures; 2.3 ESO for Stiffness or Displacement Optimization; 2.3.1 Sensitivity Number and Evolutionary Procedure; 2.3.2 Example of a Short Cantilever
2.3.3 Example of a Beam Structure2.4 Conclusion; References; 3 Bi-directional Evolutionary Structural Optimization Method; 3.1 Introduction; 3.2 Problem Statement and Sensitivity Number; 3.2.1 Problem Statement; 3.2.2 Sensitivity Number; 3.3 Filter Scheme and Improved Sensitivity Number; 3.3.1 Checkerboard and Mesh-dependency Problems; 3.3.2 Filter Scheme for BESO Method; 3.3.3 Stabilizing the Evolutionary Process; 3.4 Element Removal/Addition and Convergence Criterion; 3.5 Basic BESO Procedure; 3.6 Examples of BESO Starting from Initial Full Design
3.6.1 Topology Optimization of a Short Cantilever3.6.2 Topology Optimization of a Beam; 3.7 Examples of BESO Starting from Initial Guess Design; 3.8 Example of a 3D Structure; 3.9 Mesh-independence Studies; 3.10 Conclusion; References; 4 BESO Utilizing Material Interpolation Scheme with Penalization; 4.1 Introduction; 4.2 Problem Statement and Material Interpolation Scheme; 4.2.1 Problem Statement; 4.2.2 Material Interpolation Scheme; 4.3 Sensitivity Analysis and Sensitivity Number; 4.3.1 Sensitivity Analysis; 4.3.2 Sensitivity Number; 4.4 Examples
4.4.1 Topology Optimization of a Short Cantilever4.4.2 Topology Optimization of a Beam; 4.4.3 Topology Optimization of a 3D Cantilever; 4.5 Conclusion; Appendix 4.1; References; 5 Comparing BESO with Other Topology Optimization Methods; 5.1 Introduction; 5.2 The SIMP Method; 5.3 Comparing BESO with SIMP; 5.3.1 Comparison of Topology Optimization Algorithms without a Mesh-independency Filter; 5.3.2 Comparison of Topology Optimization Algorithms with a Mesh-independency Filter; 5.3.3 Advantages of the BESO Method and Questions yet to be Resolved
5.4 Discussion on Zhou and Rozvany (2001) Example5.4.1 Introduction of Zhou and Rozvany (2001) Example; 5.4.2 Is it a Nonoptimal or a Local Optimal Solution?; 5.4.3 Avoidance of Highly Inefficient Local Optimum; 5.5 Conclusion; References; 6 BESO for Extended Topology Optimization Problems; 6.1 Introduction; 6.2 Minimizing Structural Volume with a Displacement or Compliance Constraint; 6.2.1 Sensitivity Analysis and Sensitivity Number; 6.2.2 Determination of Structural Volume; 6.2.3 Examples; 6.3 Stiffness Optimization with an Additional Displacement Constraint; 6.3.1 Sensitivity Number
6.3.2 Determination of Lagrangian Multiplier
Record Nr. UNINA-9910140611603321
Huang X (Xiaodong), <1972->  
Chichester, West Sussex, U.K. ; ; Hoboken, NJ, : Wiley, 2010
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui
Evolutionary topology optimization of continuum structures [[electronic resource] ] : methods and applications / / X. Huang, Y.M. Xie
Evolutionary topology optimization of continuum structures [[electronic resource] ] : methods and applications / / X. Huang, Y.M. Xie
Autore Huang X (Xiaodong), <1972->
Pubbl/distr/stampa Chichester, West Sussex, U.K. ; ; Hoboken, NJ, : Wiley, 2010
Descrizione fisica 1 online resource (237 p.)
Disciplina 624.1/7713
Altri autori (Persone) XieY. M
Soggetto topico Structural optimization
Topology
ISBN 1-282-54873-5
9786612548734
0-470-68948-X
0-470-68947-1
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto EVOLUTIONARYTOPOLOGYOPTIMIZATION OFCONTINUUMSTRUCTURES; Contents; Preface; 1 Introduction; 1.1 Structural Optimization; 1.2 Topology Optimization of Continuum Structures; 1.3 ESO/BESO and the Layout of the Book; References; 2 Evolutionary Structural Optimization Method; 2.1 Introduction; 2.2 ESO Based on Stress Level; 2.2.1 Evolutionary Procedure; 2.2.2 Example of Two-bar Frame; 2.2.3 Examples of Michell Type Structures; 2.3 ESO for Stiffness or Displacement Optimization; 2.3.1 Sensitivity Number and Evolutionary Procedure; 2.3.2 Example of a Short Cantilever
2.3.3 Example of a Beam Structure2.4 Conclusion; References; 3 Bi-directional Evolutionary Structural Optimization Method; 3.1 Introduction; 3.2 Problem Statement and Sensitivity Number; 3.2.1 Problem Statement; 3.2.2 Sensitivity Number; 3.3 Filter Scheme and Improved Sensitivity Number; 3.3.1 Checkerboard and Mesh-dependency Problems; 3.3.2 Filter Scheme for BESO Method; 3.3.3 Stabilizing the Evolutionary Process; 3.4 Element Removal/Addition and Convergence Criterion; 3.5 Basic BESO Procedure; 3.6 Examples of BESO Starting from Initial Full Design
3.6.1 Topology Optimization of a Short Cantilever3.6.2 Topology Optimization of a Beam; 3.7 Examples of BESO Starting from Initial Guess Design; 3.8 Example of a 3D Structure; 3.9 Mesh-independence Studies; 3.10 Conclusion; References; 4 BESO Utilizing Material Interpolation Scheme with Penalization; 4.1 Introduction; 4.2 Problem Statement and Material Interpolation Scheme; 4.2.1 Problem Statement; 4.2.2 Material Interpolation Scheme; 4.3 Sensitivity Analysis and Sensitivity Number; 4.3.1 Sensitivity Analysis; 4.3.2 Sensitivity Number; 4.4 Examples
4.4.1 Topology Optimization of a Short Cantilever4.4.2 Topology Optimization of a Beam; 4.4.3 Topology Optimization of a 3D Cantilever; 4.5 Conclusion; Appendix 4.1; References; 5 Comparing BESO with Other Topology Optimization Methods; 5.1 Introduction; 5.2 The SIMP Method; 5.3 Comparing BESO with SIMP; 5.3.1 Comparison of Topology Optimization Algorithms without a Mesh-independency Filter; 5.3.2 Comparison of Topology Optimization Algorithms with a Mesh-independency Filter; 5.3.3 Advantages of the BESO Method and Questions yet to be Resolved
5.4 Discussion on Zhou and Rozvany (2001) Example5.4.1 Introduction of Zhou and Rozvany (2001) Example; 5.4.2 Is it a Nonoptimal or a Local Optimal Solution?; 5.4.3 Avoidance of Highly Inefficient Local Optimum; 5.5 Conclusion; References; 6 BESO for Extended Topology Optimization Problems; 6.1 Introduction; 6.2 Minimizing Structural Volume with a Displacement or Compliance Constraint; 6.2.1 Sensitivity Analysis and Sensitivity Number; 6.2.2 Determination of Structural Volume; 6.2.3 Examples; 6.3 Stiffness Optimization with an Additional Displacement Constraint; 6.3.1 Sensitivity Number
6.3.2 Determination of Lagrangian Multiplier
Record Nr. UNINA-9910828499203321
Huang X (Xiaodong), <1972->  
Chichester, West Sussex, U.K. ; ; Hoboken, NJ, : Wiley, 2010
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui
Journal of optimization
Journal of optimization
Pubbl/distr/stampa Cairo : , : Hindawi Publishing Corporation, , [2013]-
Descrizione fisica 1 online resource
Soggetto topico Mathematical optimization
Structural optimization
Soggetto genere / forma Periodicals.
ISSN 2314-6486
Formato Materiale a stampa
Livello bibliografico Periodico
Lingua di pubblicazione eng
Record Nr. UNINA-9910131789903321
Cairo : , : Hindawi Publishing Corporation, , [2013]-
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui
Mechanics and uncertainty / / Maurice Lemaire
Mechanics and uncertainty / / Maurice Lemaire
Autore Lemaire Maurice
Pubbl/distr/stampa London ; ; Hoboken, New Jersey : , : ISTE : , : Wiley, , 2014
Descrizione fisica 1 online resource (169 p.)
Disciplina 624.171
Collana Mechanical Engineering and Solid Mechanics Series
Soggetto topico Structural analysis (Engineering)
Structural optimization
Uncertainty (Information theory)
ISBN 1-118-93105-X
1-118-93103-3
1-118-93104-1
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Cover; Title Page; Contents; Foreword; Preface; Introduction; Chapter 1. Understanding Uncertainty; 1.1. Uncertainty and reality; 1.1.1. Awareness of uncertainty; 1.1.2. Territories of uncertainty; 1.1.3. Conclusion; 1.2. Robustness and reliability; 1.2.1. Robustness; 1.2.2. Reliability; 1.2.3. Relationship between robustness and reliability; 1.2.4. Optimizing robustness and reliability; 1.2.5. Conclusion; 1.3. Designing for robust production; 1.3.1. Robustness and lifecycles; 1.3.2. Description of the V cycle; 1.3.3. Uncertainty in the V cycle
1.3.4. Uncertainty linked to a step in the V cycle1.3.5. Robustness and uncertainty; 1.3.6. Conclusion; Chapter 2. Modeling Uncertainty; 2.1. Random uncertainty; 2.1.1. Modeling uncertainty; 2.1.2. Exploration of Mediocristan; 2.1.3. From statistics to probabilities; 2.1.4. Polynomial chaos; 2.1.5. Exploration of Extremistan; 2.1.6. Conclusion; 2.2. Uncertainty in behavior models; 2.2.1. Uncertainty and input data; 2.2.2. Uncertainty in behavior models; 2.3. Uncertainty propagation; 2.3.1. The problem of uncertainty propagation; 2.3.2. Analyzing sensitivity to uncertainty
2.3.3. Reliability analysis - classification methods2.3.4. Model reductions; 2.3.5. Quantifying uncertainty; 2.3.6. Conclusion; Chapter 3. Decision Support under Uncertainty; 3.1. Decision support in design; 3.1.1. Decision support; 3.1.2. Modeling decision support; 3.1.3. Multi-criteria decision analysis (MCDA); 3.1.4. Conclusion; 3.2. Summary and conclusion; 3.2.1. Three perspectives; 3.2.2. Challenges in engineering science; 3.2.3. Industrial issues; Bibliography; Index
Record Nr. UNINA-9910132212403321
Lemaire Maurice  
London ; ; Hoboken, New Jersey : , : ISTE : , : Wiley, , 2014
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui
Mechanics and uncertainty / / Maurice Lemaire
Mechanics and uncertainty / / Maurice Lemaire
Autore Lemaire Maurice
Pubbl/distr/stampa London ; ; Hoboken, New Jersey : , : ISTE : , : Wiley, , 2014
Descrizione fisica 1 online resource (169 p.)
Disciplina 624.171
Collana Mechanical Engineering and Solid Mechanics Series
Soggetto topico Structural analysis (Engineering)
Structural optimization
Uncertainty (Information theory)
ISBN 1-118-93105-X
1-118-93103-3
1-118-93104-1
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Cover; Title Page; Contents; Foreword; Preface; Introduction; Chapter 1. Understanding Uncertainty; 1.1. Uncertainty and reality; 1.1.1. Awareness of uncertainty; 1.1.2. Territories of uncertainty; 1.1.3. Conclusion; 1.2. Robustness and reliability; 1.2.1. Robustness; 1.2.2. Reliability; 1.2.3. Relationship between robustness and reliability; 1.2.4. Optimizing robustness and reliability; 1.2.5. Conclusion; 1.3. Designing for robust production; 1.3.1. Robustness and lifecycles; 1.3.2. Description of the V cycle; 1.3.3. Uncertainty in the V cycle
1.3.4. Uncertainty linked to a step in the V cycle1.3.5. Robustness and uncertainty; 1.3.6. Conclusion; Chapter 2. Modeling Uncertainty; 2.1. Random uncertainty; 2.1.1. Modeling uncertainty; 2.1.2. Exploration of Mediocristan; 2.1.3. From statistics to probabilities; 2.1.4. Polynomial chaos; 2.1.5. Exploration of Extremistan; 2.1.6. Conclusion; 2.2. Uncertainty in behavior models; 2.2.1. Uncertainty and input data; 2.2.2. Uncertainty in behavior models; 2.3. Uncertainty propagation; 2.3.1. The problem of uncertainty propagation; 2.3.2. Analyzing sensitivity to uncertainty
2.3.3. Reliability analysis - classification methods2.3.4. Model reductions; 2.3.5. Quantifying uncertainty; 2.3.6. Conclusion; Chapter 3. Decision Support under Uncertainty; 3.1. Decision support in design; 3.1.1. Decision support; 3.1.2. Modeling decision support; 3.1.3. Multi-criteria decision analysis (MCDA); 3.1.4. Conclusion; 3.2. Summary and conclusion; 3.2.1. Three perspectives; 3.2.2. Challenges in engineering science; 3.2.3. Industrial issues; Bibliography; Index
Record Nr. UNINA-9910818908703321
Lemaire Maurice  
London ; ; Hoboken, New Jersey : , : ISTE : , : Wiley, , 2014
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui
Mechanics of optimal structural design [[electronic resource] ] : minimum weight structures / / David W.A. Rees
Mechanics of optimal structural design [[electronic resource] ] : minimum weight structures / / David W.A. Rees
Autore Rees D. W. A (David W. A.), <1947->
Pubbl/distr/stampa Chichester, West Sussex, U.K. ; ; Hoboken, : J. Wiley, 2009
Descrizione fisica 1 online resource (584 p.)
Disciplina 624.1771
693
Soggetto topico Lightweight construction
Structural optimization
Soggetto genere / forma Electronic books.
ISBN 1-282-45662-8
9786612456626
0-470-74978-4
0-470-74781-1
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Mechanics of Optimal Structural Design; Contents; Preface; Glossary of Terms; Key Symbols; Chapter 1 Compression of Slender Struts; 1.1 Introduction; 1.2 Failure Criteria; 1.3 Solid Cross-Sections; 1.4 Thin-Walled, Tubular Sections; 1.5 Thin-Walled, Open Sections; 1.6 Summary of Results; References; Exercises; Chapter 2 Compression of Wide Struts; 2.1 Introduction; 2.2 Failure Criteria; 2.3 Cellular Sections; 2.4 Open Sections; 2.5 Corrugated Sandwich Panel; 2.6 Summary of Results; References; Exercise; Chapter 3 Bending of Slender Beams; 3.1 Introduction; 3.2 Solid Cross-Sections
3.3 Thin-Walled, Tubular Sections3.4 Open Sections; 3.5 Summary of Results; References; Exercises; Chapter 4 Torsion of Bars and Tubes; 4.1 Introduction; 4.2 Solid Cross-Sections; 4.3 Thin-Walled, Open Sections; 4.4 Thin-Walled, Closed Tubes; 4.5 Multi-Cell Tubes; References; Exercises; Chapter 5 Shear of Solid Bars, Tubes and Thin Sections; 5.1 Introduction; 5.2 Bars of Solid Section; 5.3 Thin-Walled Open Sections; 5.4 Thin-Walled, Closed Tubes; 5.5 Concluding Remarks; References; Exercise; Chapter 6 Combined Shear and Torsion in Thin-Walled Sections; 6.1 Introduction
6.2 Thin-Walled, Open Sections6.3 Thin-Walled, Closed Tubes; 6.4 Concluding Remarks; References; Exercises; Chapter 7 Combined Shear and Bending in Idealised Sections; 7.1 Introduction; 7.2 Idealised Beam Sections; 7.3 Idealised Open Sections; 7.4 Idealised Closed Tubes; References; Exercises; Chapter 8 Shear in Stiffened Webs; 8.1 Introduction; 8.2 Castellations in Shear; 8.3 Corrugated Web; 8.4 Flat Web with Stiffeners; References; Exercises; Chapter 9 Frame Assemblies; 9.1 Introduction; 9.2 Double-Strut Assembly; 9.3 Multiple-Strut Assembly; 9.4 Cantilevered Framework
9.5 Tetrahedron Framework9.6 Cantilever Frame with Two Struts; 9.7 Cantilever Frame with One Strut; References; Exercises; Chapter 10 Simply Supported Beams and Cantilevers; 10.1 Introduction; 10.2 Variable Bending Moments; 10.3 Cantilever with End-Load; 10.4 Cantilever with Distributed Loading; 10.5 Simply Supported Beam with Central Load; 10.6 Simply Supported Beam with Uniformly Distributed Load; 10.7 Additional Failure Criteria; References; Exercises; Chapter 11 Optimum Cross-Sections for Beams; 11.1 Introduction; 11.2 Approaching Optimum Sections; 11.3 Generalised Optimum Sections
11.4 Optimum Section, Combined Bending and Shear11.5 Solid, Axisymmetric Sections; 11.6 Fully Optimised Section; 11.7 Fully Optimised Weight; 11.8 Summary; References; Exercises; Chapter 12 Structures under Combined Loading; 12.1 Introduction; 12.2 Combined Bending and Torsion; 12.3 Cranked Cantilever; 12.4 Cranked Strut with End-Load; 12.5 Cranked Bracket with End-Load; 12.6 Portal Frame with Central Load; 12.7 Cantilever with End and Distributed Loading; 12.8 Centrally Propped Cantilever with End-Load; 12.9 End-Propped Cantilever with Distributed Load
12.10 Simply Supported Beam with Central-Concentrated and Distributed Loadings
Record Nr. UNINA-9910139469903321
Rees D. W. A (David W. A.), <1947->  
Chichester, West Sussex, U.K. ; ; Hoboken, : J. Wiley, 2009
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui
Mechanics of optimal structural design [[electronic resource] ] : minimum weight structures / / David W.A. Rees
Mechanics of optimal structural design [[electronic resource] ] : minimum weight structures / / David W.A. Rees
Autore Rees D. W. A (David W. A.), <1947->
Pubbl/distr/stampa Chichester, West Sussex, U.K. ; ; Hoboken, : J. Wiley, 2009
Descrizione fisica 1 online resource (584 p.)
Disciplina 624.1771
693
Soggetto topico Lightweight construction
Structural optimization
ISBN 1-282-45662-8
9786612456626
0-470-74978-4
0-470-74781-1
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Mechanics of Optimal Structural Design; Contents; Preface; Glossary of Terms; Key Symbols; Chapter 1 Compression of Slender Struts; 1.1 Introduction; 1.2 Failure Criteria; 1.3 Solid Cross-Sections; 1.4 Thin-Walled, Tubular Sections; 1.5 Thin-Walled, Open Sections; 1.6 Summary of Results; References; Exercises; Chapter 2 Compression of Wide Struts; 2.1 Introduction; 2.2 Failure Criteria; 2.3 Cellular Sections; 2.4 Open Sections; 2.5 Corrugated Sandwich Panel; 2.6 Summary of Results; References; Exercise; Chapter 3 Bending of Slender Beams; 3.1 Introduction; 3.2 Solid Cross-Sections
3.3 Thin-Walled, Tubular Sections3.4 Open Sections; 3.5 Summary of Results; References; Exercises; Chapter 4 Torsion of Bars and Tubes; 4.1 Introduction; 4.2 Solid Cross-Sections; 4.3 Thin-Walled, Open Sections; 4.4 Thin-Walled, Closed Tubes; 4.5 Multi-Cell Tubes; References; Exercises; Chapter 5 Shear of Solid Bars, Tubes and Thin Sections; 5.1 Introduction; 5.2 Bars of Solid Section; 5.3 Thin-Walled Open Sections; 5.4 Thin-Walled, Closed Tubes; 5.5 Concluding Remarks; References; Exercise; Chapter 6 Combined Shear and Torsion in Thin-Walled Sections; 6.1 Introduction
6.2 Thin-Walled, Open Sections6.3 Thin-Walled, Closed Tubes; 6.4 Concluding Remarks; References; Exercises; Chapter 7 Combined Shear and Bending in Idealised Sections; 7.1 Introduction; 7.2 Idealised Beam Sections; 7.3 Idealised Open Sections; 7.4 Idealised Closed Tubes; References; Exercises; Chapter 8 Shear in Stiffened Webs; 8.1 Introduction; 8.2 Castellations in Shear; 8.3 Corrugated Web; 8.4 Flat Web with Stiffeners; References; Exercises; Chapter 9 Frame Assemblies; 9.1 Introduction; 9.2 Double-Strut Assembly; 9.3 Multiple-Strut Assembly; 9.4 Cantilevered Framework
9.5 Tetrahedron Framework9.6 Cantilever Frame with Two Struts; 9.7 Cantilever Frame with One Strut; References; Exercises; Chapter 10 Simply Supported Beams and Cantilevers; 10.1 Introduction; 10.2 Variable Bending Moments; 10.3 Cantilever with End-Load; 10.4 Cantilever with Distributed Loading; 10.5 Simply Supported Beam with Central Load; 10.6 Simply Supported Beam with Uniformly Distributed Load; 10.7 Additional Failure Criteria; References; Exercises; Chapter 11 Optimum Cross-Sections for Beams; 11.1 Introduction; 11.2 Approaching Optimum Sections; 11.3 Generalised Optimum Sections
11.4 Optimum Section, Combined Bending and Shear11.5 Solid, Axisymmetric Sections; 11.6 Fully Optimised Section; 11.7 Fully Optimised Weight; 11.8 Summary; References; Exercises; Chapter 12 Structures under Combined Loading; 12.1 Introduction; 12.2 Combined Bending and Torsion; 12.3 Cranked Cantilever; 12.4 Cranked Strut with End-Load; 12.5 Cranked Bracket with End-Load; 12.6 Portal Frame with Central Load; 12.7 Cantilever with End and Distributed Loading; 12.8 Centrally Propped Cantilever with End-Load; 12.9 End-Propped Cantilever with Distributed Load
12.10 Simply Supported Beam with Central-Concentrated and Distributed Loadings
Record Nr. UNINA-9910831168503321
Rees D. W. A (David W. A.), <1947->  
Chichester, West Sussex, U.K. ; ; Hoboken, : J. Wiley, 2009
Materiale a stampa
Lo trovi qui: Univ. Federico II
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Minimum weight design of structures via optimality criteria / / by J. Kiusalaas
Minimum weight design of structures via optimality criteria / / by J. Kiusalaas
Autore Kiusalaas Jaan
Pubbl/distr/stampa Washington, D.C. : , : National Aeronautics and Space Administration, , December 1972
Descrizione fisica 1 online resource (viii, 63 pages) : illustrations
Collana NASA/TN
Soggetto topico Structural design
Structural optimization
Structural analysis (Engineering)
Strains and stresses
Structural design - Data processing
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Record Nr. UNINA-9910716667103321
Kiusalaas Jaan  
Washington, D.C. : , : National Aeronautics and Space Administration, , December 1972
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui