Vibration Control Systems

個数:1
紙書籍版価格
¥40,799
  • 電子書籍
  • ポイントキャンペーン

Vibration Control Systems

  • 著者名:Meshram, Kundan (EDT)/Lahre, Prashant (EDT)
  • 価格 ¥25,740 (本体¥23,400)
  • Wiley-Scrivener(2026/07/09発売)
  • 夏休みスタート!Kinoppy 電子書籍・電子洋書 全点ポイント30倍キャンペーン(~7/20)
  • ポイント 7,020pt (実際に付与されるポイントはご注文内容確認画面でご確認下さい)
  • 言語:ENG
  • ISBN:9781394358250
  • eISBN:9781394358267

ファイル: /

Description

This comprehensive guide bridges the gap between theory and real-world application, giving you real-world access to cutting-edge damping technologies needed to safeguard today’s most ambitious, high-risk architectural marvels.

Vibration control has long been a central concern in the construction of skyscrapers, bridges, and other large structures, particularly as architectural designs have become more ambitious and susceptible to dynamic forces. As structures grow taller and more flexible, they become more prone to external forces such as wind loads, seismic activity, and human-induced vibrations. To ensure the safety, stability, and longevity of these structures, vibration control mechanisms have evolved significantly over the past few decades.

This book delves deeply into the innovative field of vibration control systems, with a primary focus on advanced damping technologies used in civil engineering and structural applications. The content spans the breadth of current damping solutions, from traditional methods like mass spring dampers and hydraulic dampers to cutting-edge approaches such as tuned mass dampers and hybrid damping units. Each chapter provides a comprehensive look at these technologies, including their design principles, simulation methodologies, and practical applications in modern infrastructure.

The book also explores how these systems can be integrated to create more effective and efficient solutions for mitigating structural vibrations caused by environmental forces like wind, seismic activity, and machinery operations. By integrating both theory and practical applications, this book serves as a vital resource for researchers, engineers, and practitioners seeking to enhance their understanding of damping systems and their role in modern engineering solutions.

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