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Data analytics for engineering and c...
~
Damnjanovic, Ivan.
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Data analytics for engineering and construction project risk management
Record Type:
Electronic resources : Monograph/item
Title/Author:
Data analytics for engineering and construction project risk management/ by Ivan Damnjanovic, Kenneth Reinschmidt.
Author:
Damnjanovic, Ivan.
other author:
Reinschmidt, Kenneth.
Published:
Cham :Springer International Publishing : : 2020.,
Description:
xv, 379 p. :ill. (some col.), digital ;24 cm.
[NT 15003449]:
1.Introduction to Risk and Uncertainty -- 2.Project Risk Management Framework -- 3.Project Data -- 4.Probability Theory Background -- 5.Project Planning and Estimating -- 6.Project Monitoring and Control -- 7.Case Studies and Implementation Framework.
Contained By:
Springer eBooks
Subject:
Risk management. -
Online resource:
https://doi.org/10.1007/978-3-030-14251-3
ISBN:
9783030142513
Data analytics for engineering and construction project risk management
Damnjanovic, Ivan.
Data analytics for engineering and construction project risk management
[electronic resource] /by Ivan Damnjanovic, Kenneth Reinschmidt. - Cham :Springer International Publishing :2020. - xv, 379 p. :ill. (some col.), digital ;24 cm. - Risk, systems and decisions,2626-6717. - Risk, systems and decisions..
1.Introduction to Risk and Uncertainty -- 2.Project Risk Management Framework -- 3.Project Data -- 4.Probability Theory Background -- 5.Project Planning and Estimating -- 6.Project Monitoring and Control -- 7.Case Studies and Implementation Framework.
This book provides a step-by-step guidance on how to implement analytical methods in project risk management. The text focuses on engineering design and construction projects and as such is suitable for graduate students in engineering, construction, or project management, as well as practitioners aiming to develop, improve, and/or simplify corporate project management processes. The book places emphasis on building data-driven models for additive-incremental risks, where data can be collected on project sites, assembled from queries of corporate databases, and/or generated using procedures for eliciting experts' judgments. While the presented models are mathematically inspired, they are nothing beyond what an engineering graduate is expected to know: some algebra, a little calculus, a little statistics, and, especially, undergraduate-level understanding of the probability theory. The book is organized in three parts and fourteen chapters. In Part I the authors provide the general introduction to risk and uncertainty analysis applied to engineering construction projects. The basic formulations and the methods for risk assessment used during project planning phase are discussed in Part II, while in Part III the authors present the methods for monitoring and (re)assessment of risks during project execution.
ISBN: 9783030142513
Standard No.: 10.1007/978-3-030-14251-3doiSubjects--Topical Terms:
540477
Risk management.
LC Class. No.: HD61
Dewey Class. No.: 624.0681
Data analytics for engineering and construction project risk management
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1.Introduction to Risk and Uncertainty -- 2.Project Risk Management Framework -- 3.Project Data -- 4.Probability Theory Background -- 5.Project Planning and Estimating -- 6.Project Monitoring and Control -- 7.Case Studies and Implementation Framework.
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This book provides a step-by-step guidance on how to implement analytical methods in project risk management. The text focuses on engineering design and construction projects and as such is suitable for graduate students in engineering, construction, or project management, as well as practitioners aiming to develop, improve, and/or simplify corporate project management processes. The book places emphasis on building data-driven models for additive-incremental risks, where data can be collected on project sites, assembled from queries of corporate databases, and/or generated using procedures for eliciting experts' judgments. While the presented models are mathematically inspired, they are nothing beyond what an engineering graduate is expected to know: some algebra, a little calculus, a little statistics, and, especially, undergraduate-level understanding of the probability theory. The book is organized in three parts and fourteen chapters. In Part I the authors provide the general introduction to risk and uncertainty analysis applied to engineering construction projects. The basic formulations and the methods for risk assessment used during project planning phase are discussed in Part II, while in Part III the authors present the methods for monitoring and (re)assessment of risks during project execution.
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Engineering (Springer-11647)
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W9388213
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11.線上閱覽_V
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EB HD61
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