{"id":78852,"date":"2024-10-17T18:26:26","date_gmt":"2024-10-17T18:26:26","guid":{"rendered":"https:\/\/pdfstandards.shop\/product\/uncategorized\/asce-9780784400944-1995\/"},"modified":"2024-10-24T19:38:20","modified_gmt":"2024-10-24T19:38:20","slug":"asce-9780784400944-1995","status":"publish","type":"product","link":"https:\/\/pdfstandards.shop\/product\/publishers\/asce\/asce-9780784400944-1995\/","title":{"rendered":"ASCE 9780784400944 1995"},"content":{"rendered":"
Colville and Amde edited a collection of papers presenting the technical developments and innovations that have resulted in a successful transfer of researchinto the practice of engineering and construction.<\/p>\n
PDF Pages<\/th>\n | PDF Title<\/th>\n<\/tr>\n | ||||||
---|---|---|---|---|---|---|---|
8<\/td>\n | Contents <\/td>\n<\/tr>\n | ||||||
12<\/td>\n | CHAPTER I: ENGINEERING INFRASTRUCTURES Transferring Electronic Packaging Research Results <\/td>\n<\/tr>\n | ||||||
25<\/td>\n | Design of Landfill Covers Using Paper Mill Sludges <\/td>\n<\/tr>\n | ||||||
40<\/td>\n | Reliability-Based Rehabilitation of Water Infrastructure <\/td>\n<\/tr>\n | ||||||
52<\/td>\n | Wind Engineering Research Applications <\/td>\n<\/tr>\n | ||||||
61<\/td>\n | Assessing Effects of Natural and Man Made Hazards <\/td>\n<\/tr>\n | ||||||
73<\/td>\n | CHAPTER II: COMPOSITES, STRUCTURAL SYSTEMS AND CONNECTIONS Design and Evaluation of First Multi-cellular Fiber Reinforced Plastic Building <\/td>\n<\/tr>\n | ||||||
82<\/td>\n | Research into Practice for Large Ocean Structures <\/td>\n<\/tr>\n | ||||||
93<\/td>\n | Thin Steel Plate Shear Walls, Research to Practice <\/td>\n<\/tr>\n | ||||||
105<\/td>\n | Behavior of Poltruded Composite Frame Structures and Connections <\/td>\n<\/tr>\n | ||||||
119<\/td>\n | Design and Implementation of ATLSS Connections <\/td>\n<\/tr>\n | ||||||
131<\/td>\n | Design Applications of a Prestressed FRP\/Kevlar Cable Structural System <\/td>\n<\/tr>\n | ||||||
146<\/td>\n | CHAPTER III: INSTRUMENTATION Impact-Echo: Development and Technology Transfer <\/td>\n<\/tr>\n | ||||||
158<\/td>\n | High Speed Ultrasonic Tomography for the Detection of Flaws in Concrete Members <\/td>\n<\/tr>\n | ||||||
169<\/td>\n | An Ultrasonic Field Monitoring Instrument for Evaluation of Timber Bridges <\/td>\n<\/tr>\n | ||||||
177<\/td>\n | Fatigue Loading Indicator for Bridges <\/td>\n<\/tr>\n | ||||||
188<\/td>\n | Magnetic Nondestructive Evaluation Techniques for Inspection of Railroad Bridges <\/td>\n<\/tr>\n | ||||||
198<\/td>\n | A Non-Destructive Evaluation Instrument for Axial Load Measurements <\/td>\n<\/tr>\n | ||||||
209<\/td>\n | An Electric Dispersion Technique for Soil Characterization <\/td>\n<\/tr>\n | ||||||
221<\/td>\n | Use of Fiber Optic Sensors for the Non-Destructive Strength Evaluation and Early Warning of Impending Failure in Structural Components <\/td>\n<\/tr>\n | ||||||
232<\/td>\n | Development of an Automated Pavement Inspection System for the Non-Destructive Evaluation of Highway and Airfield Pavements <\/td>\n<\/tr>\n | ||||||
244<\/td>\n | CHAPTER IV: SOFTWARE FRANC2D: A Case Study in Transfer of Software Technology <\/td>\n<\/tr>\n | ||||||
256<\/td>\n | Development and Implementation of an Automated Design System for Steel Roof Trusses <\/td>\n<\/tr>\n | ||||||
268<\/td>\n | Pseudo Dynamic Testing Software <\/td>\n<\/tr>\n | ||||||
280<\/td>\n | From Algorithm to Practical Tool\u2014The Development of a Construction Time-Cost Trade-Off Optimization System <\/td>\n<\/tr>\n | ||||||
292<\/td>\n | Random Vibration Analysis: From Research into Practice <\/td>\n<\/tr>\n | ||||||
294<\/td>\n | Probabilistic Prediction of Tunnel Boring Machine Performance <\/td>\n<\/tr>\n | ||||||
306<\/td>\n | An Interactive System for Geotechnical Spatial Analysis <\/td>\n<\/tr>\n | ||||||
319<\/td>\n | The Development of Implementation of SEISAB <\/td>\n<\/tr>\n | ||||||
327<\/td>\n | The National Institute for Computers in Engineering (NICE) Revisited <\/td>\n<\/tr>\n | ||||||
360<\/td>\n | CHAPTER V: MASONRY Injection Grouting for Repair of Masonry: Research to Practice <\/td>\n<\/tr>\n | ||||||
371<\/td>\n | U.S. Coordinated Program for Masonry Building Research: Technology Transfer <\/td>\n<\/tr>\n | ||||||
383<\/td>\n | Nondestructive Evaluation of Masonry Structures: Standardization and Current Practice <\/td>\n<\/tr>\n | ||||||
395<\/td>\n | Shear Strength of Composite Masonry Walls <\/td>\n<\/tr>\n | ||||||
407<\/td>\n | Polymer Modified Mortars in Brick Masonry Construction <\/td>\n<\/tr>\n | ||||||
420<\/td>\n | CHAPTER VI: BRIDGES Implementation of Bridge Inspection Technologies <\/td>\n<\/tr>\n | ||||||
432<\/td>\n | Evaluation and Testing of a Fracture Critical Bridge <\/td>\n<\/tr>\n | ||||||
447<\/td>\n | McKinleyville Jointless Bridge with FRP Bars in Concrete Deck <\/td>\n<\/tr>\n | ||||||
459<\/td>\n | Stress-Laminated Timber Bridges: Research Into Practice <\/td>\n<\/tr>\n | ||||||
471<\/td>\n | The Timber Bridge Initiative in West Virginia: Are New Timber Bridges a Practical Choice? <\/td>\n<\/tr>\n | ||||||
482<\/td>\n | Aerodynamic Design of Cable-Supported Bridges <\/td>\n<\/tr>\n | ||||||
494<\/td>\n | Reliability Models for Bridges <\/td>\n<\/tr>\n | ||||||
504<\/td>\n | Bridge Reliability Evaluation in the 21st Century <\/td>\n<\/tr>\n | ||||||
517<\/td>\n | CHAPTER VII: SEISMIC Seismic Isolation Needs a Fresh Start <\/td>\n<\/tr>\n | ||||||
529<\/td>\n | Seismic Isolation\u2014A Case Study of Research Into Practice in the Field of Earthquake Engineering <\/td>\n<\/tr>\n | ||||||
540<\/td>\n | A Geotechnical Test for Earthquake Engineering <\/td>\n<\/tr>\n | ||||||
549<\/td>\n | Guidelines for Seismic Rehabilitation of Older Steel Buildings <\/td>\n<\/tr>\n | ||||||
561<\/td>\n | Engineering Concept to Application: Experiences of NCEER <\/td>\n<\/tr>\n | ||||||
573<\/td>\n | The Significance of Velacs Project to Practice <\/td>\n<\/tr>\n | ||||||
587<\/td>\n | Inelastic Analysis and Design and Steel Frames\u2014A Case in Point <\/td>\n<\/tr>\n | ||||||
600<\/td>\n | Webs Under Compressive Edge Loads <\/td>\n<\/tr>\n | ||||||
612<\/td>\n | Beams with Corrugated Webs, Research to Practice <\/td>\n<\/tr>\n | ||||||
624<\/td>\n | CHAPTER VIII: ANALYSIS AND DESIGN Research Leads to LRFD Wood Construction Standard <\/td>\n<\/tr>\n | ||||||
635<\/td>\n | Buckling and Shear Test Methods and Design Equations for Poltruded Shapes <\/td>\n<\/tr>\n | ||||||
650<\/td>\n | CHAPTER IX: CONCRETE Research to Practice\u2014the Case of Partially Prestressed Concrete <\/td>\n<\/tr>\n | ||||||
660<\/td>\n | Research to Practice\u2014the Case of Ferrocement <\/td>\n<\/tr>\n | ||||||
662<\/td>\n | Practical Applications with Concrete Fiber Composites <\/td>\n<\/tr>\n | ||||||
674<\/td>\n | Technology Transfer into Practice: The Beginning and End <\/td>\n<\/tr>\n | ||||||
688<\/td>\n | NSF\/ISU Diaphragm Floor Slab Results <\/td>\n<\/tr>\n | ||||||
700<\/td>\n | Detailing of Stirrup Reinforcement <\/td>\n<\/tr>\n | ||||||
714<\/td>\n | State-of-the-Art on Mitigation of Seismic Hazards in Precast Concrete Tilt-up Wall Buildings <\/td>\n<\/tr>\n | ||||||
726<\/td>\n | Impediments to the Implementation of Seismic Isolation <\/td>\n<\/tr>\n | ||||||
742<\/td>\n | Subject Index A B C D E <\/td>\n<\/tr>\n | ||||||
743<\/td>\n | F G H I J L M N O P R S <\/td>\n<\/tr>\n | ||||||
744<\/td>\n | T U V W <\/td>\n<\/tr>\n | ||||||
746<\/td>\n | Author Index A B C D E F G H I J K L M N <\/td>\n<\/tr>\n | ||||||
747<\/td>\n | O P R S T V W Z <\/td>\n<\/tr>\n<\/table>\n","protected":false},"excerpt":{"rendered":" Research Transformed into Practice<\/b><\/p>\n |