沃新书屋 - Hydraulic Power System Analysis
本书资料更新时间:2025-05-17 01:01:41

Hydraulic Power System Analysis

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Hydraulic Power System Analysis书籍详细信息

  • ISBN:9780824799564
  • 作者:Gassman, Max
  • 出版社:暂无出版社
  • 出版时间:2006-4
  • 页数:400
  • 价格:$ 214.64
  • 纸张:暂无纸张
  • 装帧:暂无装帧
  • 开本:暂无开本
  • 语言:暂无语言
  • 适合人群:Engineers, Mechanical Engineers, Industrial Engineers, Students of Mechanical Engineering, Researchers in Fluid Dynamics, Professionals in the Power Industry
  • TAG:Fluid dynamics / Engineering Mechanics / Power Transmission / System Analysis / Hydraulics
  • 豆瓣评分:暂无豆瓣评分
  • 更新时间:2025-05-17 01:01:41

内容简介:

The excitement and the glitz of mechatronics has shifted the engineering community's attention away from fluid power systems in recent years. However, fluid power still remains advantageous in many applications compared to electrical or mechanical power transmission methods. Designers are left with few practical resources to help in the design and analysis of fluid power systems, especially when approaching fluid power for the first time. Helping you overcome these hurdles, "Hydraulic Power System Analysis" demonstrates modern computer-aided analytical techniques used to model nonlinear, dynamic fluid power systems. Following an overview of fluid power, the authors examine various relevant fluid properties, energy calculations, and steady state and dynamic analysis along with a review of automatic control theory. Turning to modeling, the next few chapters address valves and motors and then apply dynamic modeling to examples relating to pumps, hydrostatic transmissions, and valves. The book includes a unique chapter showing how to combine flow resistance equations with the differential equations governing dynamic system performance. The final chapter translates electrical circuit theory concepts to noise attenuation in fluid power systems. Illustrated with many equations, practical computer modeling examples, and exercises, "Hydraulic Power System Analysis" provides a much-needed modernization of dynamic modeling for fluid power systems using powerful computational tools.

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