Risk-Based Reliability Analysis

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出版者:Elsevier Science Ltd
作者:Todinov, Michael
出品人:
页数:400
译者:
出版时间:2006-12
价格:$ 214.70
装帧:HRD
isbn号码:9780080447285
丛书系列:
图书标签:
  • 可靠性分析
  • 风险评估
  • 概率安全评估
  • 失效模式分析
  • 故障树分析
  • 事件树分析
  • 贝叶斯网络
  • 系统可靠性
  • 工程可靠性
  • 安全工程
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具体描述

For a long time, conventional reliability analyses have been oriented towards selecting the more reliable system and preoccupied with maximising the reliability of engineering systems. On the basis of counterexamples however, we demonstrate that selecting the more reliable system does not necessarily mean selecting the system with the smaller losses from failures! As a result, reliability analyses should necessarily be risk-based, linked with the losses from failures.Accordingly, a theoretical framework and models are presented which form the foundations of the reliability analysis and reliability allocation linked with the losses from failures. An underlying theme in the book is the basic principle for a risk-based design: the larger the cost of failure associated with a component, the larger its minimum necessary reliability level. Even identical components should be designed to different reliability levels if their failures are associated with different losses.According to a classical definition, the risk of failure is a product of the probability of failure and the cost given failure. This risk measure however cannot describe the risk of losses exceeding a maximum acceptable limit. Traditionally the losses from failures have been 'accounted for' by the average production availability (the ratio of the actual production capacity and the maximum production capacity). As demonstrated in the book by using a simple counterexample, two systems with the same production availability can be characterised by very different losses from failures.As an alternative, a new aggregated risk measure based on the cumulative distribution of the potential losses has been introduced and the theoretical framework for risk analysis based on the concept potential losses has also been developed. This new risk measure incorporates the uncertainty associated with the exposure to losses and the uncertainty in the consequences given the exposure. For repairable systems with complex topology, the distribution of the potential losses can be revealed by simulating the behaviour of systems during their life-cycle.For this purpose, fast discrete event-driven simulators are presented capable of tracking the potential losses for systems with complex topology, composed of a large number of components. The simulators are based on new, very efficient algorithms for system reliability analysis of systems comprising thousands of components.An important theme in the book are the generic principles and techniques for reducing technical risk. These have been classified into three major categories: preventive (reducing the likelihood of failure), protective (reducing the consequences from failure) and dual (reducing both, the likelihood and the consequences from failure). Many of these principles (for example: avoiding clustering of events, deliberately introducing weak links, reducing sensitivity, introducing changes with opposite sign, etc.) are discussed in the reliability literature for the first time.Significant space has been allocated to component reliability. In the last chapter of the book, several applications are discussed of a powerful equation which constitutes the core of a new theory of locally initiated component failure by flaws whose number is a random variable.This book has been written with the intention to fill two big gaps in the reliability and risk literature: the risk-based reliability analysis as a powerful alternative to the traditional reliability analysis and the generic principles for reducing technical risk. I hope that the principles, models and algorithms presented in the book will help to fill these gaps and make the book useful to reliability and risk-analysts, researchers, consultants, students and practising engineers.This book offers a shift in the existing paradigm for conducting reliability analyses. It covers risk-based reliability analysis and generic principles for reducing risk. It provides a new measure of risk based on the distribution of the potential losses from failure as well as the basic principles for risk-based design. It incorporates fast algorithms for system reliability analysis and discrete-event simulators. It includes the probability of failure of a structure with complex shape expressed with a simple equation.

《Risk-Based Reliability Analysis》是一本旨在为读者提供深度理解和系统分析方法的专业书籍。这本书着重关注风险评估与可靠性分析在复杂工程环境中的应用,内容涵盖了从基础理论到实际操作的完整路径。书中详细介绍了风险识别、数据收集与建模技术,并结合真实案例展示如何将这些方法应用于工程项目的决策支持。读者不仅能学习到系统性分析框架,还能掌握先进的统计工具和计算机模拟方法,帮助他们更好地理解不确定性在风险评估中的作用。 书籍特别强调了可靠性分析在不同行业中的应用潜力,从航空航天、能源开发到信息技术系统,均提供具体实例说明其重要性。通过严谨的逻辑论证和实用指导,这本书帮助读者建立对风险因素的全面把握,并学会如何量化影响,从而提高决策的科学性与准确性。内容设计充分考虑了读者不同背景水平,通过详细的章节设置和丰富的参考资料,使学习过程既系统又富有针对性。 书中强调的是分析方法的灵活性和适应性,能够帮助读者根据不同的项目需求调整风险评估策略。同时,作者特别注重解释理论与实践之间的衔接,确保每个概念都能通过具体案例深入理解。这种结构安排使得读者在阅读过程中不仅能够掌握知识,更能将其应用到实际工作中,提升整体专业能力。 该书还引入了最新的研究成果和行业发展趋势,使其内容始终保持前沿性。通过系统化的讲解与丰富的实例,读者能够全面了解风险管理在现代工程中的战略地位,并学会运用科学方法应对复杂挑战。这本书不仅是一篇学术资源,更是一份实用工具,为工程师、研究人员和决策者提供了有价值的参考。 总体而言,《Risk-Based Reliability Analysis》以其深入浅出的内容设计和广泛应用场景,使读者能够系统、全面地掌握风险评估与可靠性分析的核心思想和技巧。书中不仅帮助学习者理解理论,更通过实际案例加深对方法的认知,提升了其在复杂工程环境中的适应能力。这一书对于希望增强专业素养并提高工作效率的人士来说,都是值得推荐的重要参考。

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