A Solar Car Primer: A Guide to the Design and Construction of Solar-Powered Racing Vehicles
Autor Eric Forsta Thacheren Limba Engleză Paperback – 17 oct 2016
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Specificații
ISBN-13: 9783319373157
ISBN-10: 3319373153
Pagini: 491
Ilustrații: XXV, 466 p. 195 illus., 36 illus. in color.
Dimensiuni: 155 x 235 x 25 mm
Greutate: 0.69 kg
Ediția:Softcover reprint of the original 1st ed. 2015
Editura: Springer International Publishing
Colecția Springer
Locul publicării:Cham, Switzerland
ISBN-10: 3319373153
Pagini: 491
Ilustrații: XXV, 466 p. 195 illus., 36 illus. in color.
Dimensiuni: 155 x 235 x 25 mm
Greutate: 0.69 kg
Ediția:Softcover reprint of the original 1st ed. 2015
Editura: Springer International Publishing
Colecția Springer
Locul publicării:Cham, Switzerland
Cuprins
Introduction.- Interactions with the Atmosphere and Road.- Interaction with the Sun.- Storing Electric Energy.- Electric Motor Drives.- Electric Power Conversion and Distribution.- Instrumentation.- Solar Racer-Specification.- Solar Racer-Concept Generation and Selection.- Solar Racer-Detailed Design.- Solar Racer-Construction.- Testing.- Energy Management.- Fund Raising and Public Relations.- A Solar Car-Based Learning Community.
Notă biografică
· Teaches readers to fund, design, and build a competitive solar race car
· Draws on real experiences of successful teams to emphasize cost and energy efficiency
· Enables a complete understanding of the application of solar power to vehicles, from underlying physics to practical implementation
· Includes pivotal information on recent advances such as the World Solar Challenge’s addition of a "Cruiser Class" allowing multiple occupants
This exciting primer on Solar Racing literally starts from the ground up, describing how the interactions of a vehicle with its environment circumscribe its ultimate success, from aerodynamics to resistance and propulsion. By demonstrating how to mathematically model these underlying physical phenomena, the author helps solar racing competitors carefully select key characteristics of the vehicle ,such as weight and shape, to produce optimal speed. Energy conversion and demand are given particular attention, followed by chapters devoted to examining solar racers’ design, manufacture and testing using a structured problem-solving process to keep projects on track and on schedule. A chapter devoted to energy management strategies provides invaluable tips on maximizing average speed during a race. Complex issues such as ventilation system analysis and performance simulation are covered in dedicated appendices. Thefinancial aspect of project design is not neglected, as both fund-raising and cost estimation are given in-depth consideration.
· Draws on real experiences of successful teams to emphasize cost and energy efficiency
· Enables a complete understanding of the application of solar power to vehicles, from underlying physics to practical implementation
· Includes pivotal information on recent advances such as the World Solar Challenge’s addition of a "Cruiser Class" allowing multiple occupants
This exciting primer on Solar Racing literally starts from the ground up, describing how the interactions of a vehicle with its environment circumscribe its ultimate success, from aerodynamics to resistance and propulsion. By demonstrating how to mathematically model these underlying physical phenomena, the author helps solar racing competitors carefully select key characteristics of the vehicle ,such as weight and shape, to produce optimal speed. Energy conversion and demand are given particular attention, followed by chapters devoted to examining solar racers’ design, manufacture and testing using a structured problem-solving process to keep projects on track and on schedule. A chapter devoted to energy management strategies provides invaluable tips on maximizing average speed during a race. Complex issues such as ventilation system analysis and performance simulation are covered in dedicated appendices. Thefinancial aspect of project design is not neglected, as both fund-raising and cost estimation are given in-depth consideration.
Textul de pe ultima copertă
· Teaches readers to fund, design, and build a competitive solar race car
· Draws on real experiences of successful teams to emphasize cost and energy efficiency
· Enables a complete understanding of the application of solar power to vehicles, from underlying physics to practical implementation
· Includes pivotal information on recent advances such as the World Solar Challenge’s addition of a "Cruiser Class" allowing multiple occupants
This exciting primer on Solar Racing literally starts from the ground up, describing how the interactions of a vehicle with its environment circumscribe its ultimate success, from aerodynamics to resistance and propulsion. By demonstrating how to mathematically model these underlying physical phenomena, the author helps solar racing competitors carefully select key characteristics of the vehicle ,such as weight and shape, to produce optimal speed. Energy conversion and demand are given particular attention, followed by chapters devoted to examining solar racers’ design, manufacture and testing using a structured problem-solving process to keep projects on track and on schedule. A chapter devoted to energy management strategies provides invaluable tips on maximizing average speed during a race. Complex issues such as ventilation system analysis and performance simulation are covered in dedicated appendices. Thefinancial aspect of project design is not neglected, as both fund-raising and cost estimation are given in-depth consideration.
· Draws on real experiences of successful teams to emphasize cost and energy efficiency
· Enables a complete understanding of the application of solar power to vehicles, from underlying physics to practical implementation
· Includes pivotal information on recent advances such as the World Solar Challenge’s addition of a "Cruiser Class" allowing multiple occupants
This exciting primer on Solar Racing literally starts from the ground up, describing how the interactions of a vehicle with its environment circumscribe its ultimate success, from aerodynamics to resistance and propulsion. By demonstrating how to mathematically model these underlying physical phenomena, the author helps solar racing competitors carefully select key characteristics of the vehicle ,such as weight and shape, to produce optimal speed. Energy conversion and demand are given particular attention, followed by chapters devoted to examining solar racers’ design, manufacture and testing using a structured problem-solving process to keep projects on track and on schedule. A chapter devoted to energy management strategies provides invaluable tips on maximizing average speed during a race. Complex issues such as ventilation system analysis and performance simulation are covered in dedicated appendices. Thefinancial aspect of project design is not neglected, as both fund-raising and cost estimation are given in-depth consideration.
Caracteristici
Teaches readers to fund, design, and build a competitive solar race car Draws on real experiences of successful teams to emphasize cost and energy efficiency Enables a complete understanding of the application of solar power to vehicles, from underlying physics to practical implementation Includes pivotal information on recent advances such as the World Solar Challenge’s addition of a "Cruiser Class" allowing multiple occupants Includes supplementary material: sn.pub/extras