AutoCAD electrical 2018 design software helps electrical engineers and detailers drive control system design productivity to previously unachievable levels with specialised electrical design functionality and toolsets geared to electrical control system design requirements.
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Autodesk AutoCAD Mechanical 2018 is a powerful extension to standard AutoCAD design and 2D drafting software with specialist functionality for the manufacturing, engineering and mechanical design sectors, and companies involved in digital prototyping workflows.
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Autodesk Inc., a world leader in 3D design software for entertainment, natural resources,manufacturing, engineering, construction, and civil infrastructure, announced the release of AutoCAD Architecture 2018, is one of the leading software that has helped engineers to design some awesome architecture and will boost the productivity in large projects.
Autodesk AutoCAD Architecture 2018 has been specifically configured for the architectural market place and to that end contains productivity tools specific to this market sector.
Built on the familiar AutoCAD platform new user after a small amount of initial training can transition with relative ease to this powerful architectural CAD software platform and speed up drawing creation, the production of schedules and of course other related documentation.
The AutoCAD Architecture 2018 toolset comprises of a comprehensive set of keynoting tools, a substantial detail components library, scheduling and automatic tagging (and updating) of spaces as room layout changes.
AutoCAD Architectures drawing productivity tools include automated functionality for building elements such as windows, door and walls, initial generation of 2D elevations and sections from corresponding floor plans and subsequent generation resulting from design changes.
For architects requiring access to additional BIM (Building Information Modelling) software, AutoCAD Architecture is also included in the Autodesk Architecture, Engineering & Construction Collection.
Product: Autodesk AutoCAD Architecture
Version: 2018
Supported Architectures: 32bit / 64bit
Language: english
System Requirements: PC
Supported Operating Systems: Windows 7even / 8.x / 10
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Highway engineering : planning, design, and operations
Author(s)/Editor(s): Brown, Thomas H.; Cunningham, Christopher M.; Findley, Daniel J.; Schroeder, Bastian J | Size: 76 MB | Format:PDF | Quality:Unspecified | Publisher: Elsevier/Butterworth Heinemann | Year: 2016 | pages: 722 | ISBN: 9780128012482, 9780128013557, 0128013559, 012801248X
Highway Engineering: Planning, Design, and Operations features a seven part treatment, beginning with a clear and rigorous exposition of highway engineering concepts. These include project development, and the relationship between planning, operations, safety, and highway types (functional classification). Planning concepts and a four-step process overview are covered, along with trip generation, equations versus rates, trip distribution, and shortest path models equations versus rates. This is followed by parts concerning applications for horizontal and vertical alignment, highway geometric design, traffic operations, traffic safety, and civil engineering topics.
Content:
Front-matter,CopyrightEntitled to full textPart 1 - Introduction, Pages 1-16
Part 2 - Transportation Planning, Pages 17-88
Part 3 - Horizontal and Vertical Alignment, Pages 89-166
Part 4 - Highway Geometric Design, Pages 167-253
Part 5 - Traffic Operations, Pages 255-432
Part 6 - Traffic Safety, Pages 433-518
Part 7 - Geotechnical, Pages 519-572
Part 8 - Structures, Pages 573-639
Part 9 - Hydraulics, Pages 641-695
Index, Pages 697-714
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As an in-depth guide to understanding wind effects on cable-supported bridges, this book uses analytical, numerical and experimental methods to give readers a fundamental and practical understanding of the subject matter. It is structured to systemically move from introductory areas through to advanced topics currently being developed from research work. The author concludes with the application of the theory covered to real-world examples, enabling readers to apply their knowledge.
The author provides background material, covering areas such as wind climate, cable-supported bridges, wind-induced damage, and the history of bridge wind engineering. Wind characteristics in atmospheric boundary layer, mean wind load and aerostatic instability, wind-induced vibration and aerodynamic instability, and wind tunnel testing are then described as the fundamentals of the subject. State-of-the-art contributions include rain-wind-induced cable vibration, wind-vehicle-bridge interaction, wind-induced vibration control, wind and structural health monitoring, fatigue analysis, reliability analysis, typhoon wind simulation, non-stationary and nonlinear buffeting response. Lastly, the theory is applied to the actual long-span cable-supported bridges.
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This guide provides a thorough review of the pertinent existing knowledge in the area of constitutive modelling of concrete steel bonds and of their interaction. It discusses the problems encountered in assembling the various elements with the purpose of constructing the model of an element made of reinforced concrete.
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This book details the basic concepts and the design rules included in Eurocode 3
Design of steel structures: Part 1-8
Design of joints
Joints in composite construction are also addressed through references to Eurocode 4
Design of composite steel and concrete structures
Part 1-1: General rules and rules for buildings.
Attention has to be duly paid to the joints when designing a steel or composite structure, in terms of the global safety of the construction, and also in terms of the overall cost, including fabrication, transportation and erection. Therefore, in this book, the design of the joints themselves is widely detailed, and aspects of selection of joint configuration and integration of the joints into the analysis and the design process of the whole construction are also fully covered.
Connections using mechanical fasteners, welded connections, simple joints, moment-resisting joints and lattice girder joints are considered. Various joint configurations are treated, including beam-to-column, beam-to-beam, column bases, and beam and column splice configurations, under different loading situations (axial forces, shear forces, bending moments and their combinations).
The book also briefly summarises the available knowledge relating to the application of the Eurocode rules to joints under fire, fatigue, earthquake, etc., and also to joints in a structure subjected to exceptional loadings, where the risk of progressive collapse has to be mitigated.
Finally, there are some worked examples, plus references to already published examples and to design tools, which will provide practical help to practitioners.
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AutoCAD Map 3D software provides access to GIS and mapping data to support planning, design, and data management. Intelligent models and CAD tools help you to apply regional and discipline-specific standards. Integration of GIS data helps to improve quality, productivity, and asset management.
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