Applied Civil Engineering Risk Analysis

Applied Civil Engineering Risk Analysis

Author: Robb Eric S. Moss

Publisher: Springer

Published: 2019-07-31

Total Pages: 183

ISBN-13: 3030226808

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This updated edition retains its introduction to applied fundamental statistics, probability, reliability, and decision theory as these pertain to problems in Civil Engineering. The new edition adds an expanded treatment of systems reliability, Bayesian methods, and spatial variabililty, along with additional example problems throughout. The book provides readers with the tools needed to determine the probability of failure, and when multiplied by the consequences of failure, illustrates how to assess the risk of civil engineering problems. Presenting methods for quantifying uncertainty that exists in engineering analysis and design, with an emphasis on fostering more accurate analysis and design, the text is ideal for students and practitioners of a range of civil engineering disciplines. Expands on the class-tested pedagogy from the first edition with more material and more examples; Broadens understanding with simulations coded both in Matlab and in R; Features new chapters on spatial variability and Bayesian methods; Emphasizes techniques for estimating the influence of uncertainty on the probability of failure


Quantitative Risk Management and Decision Making in Construction

Quantitative Risk Management and Decision Making in Construction

Author: Amarjit Singh

Publisher: ASCE Press

Published: 2017

Total Pages: 0

ISBN-13: 9780784414637

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Singh introduces valuable techniques for weighing and evaluating alternatives in decision making with a focus on risk analysis for identifying, quantifying, and mitigating risks associated with construction projects.


Multicriteria Decision-Making Analysis for Civil Engineering Applications

Multicriteria Decision-Making Analysis for Civil Engineering Applications

Author: Hossein Bonakdari

Publisher: Elsevier

Published: 2024-10-17

Total Pages: 1375

ISBN-13: 0443222835

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Decision-making is a key factor to achieve success in any discipline, especially in a field like civil engineering, which is based on calculations and requires large amounts of information being taken into account. Most processes and procedures are a compendium of many different tasks and requirements specific to each project under development, and making decisions in such environments can often be an arduous endeavor. That is why the need for analytical criteria capable of assisting with untangling complex scenarios has arisen preponderantly. As an all-encompassing resource, Multicriteria Decision-Making Analysis for Civil Engineering Applications facilitates civil engineers by outlining state-of-the-art techniques for quantitative decision-making to optimally select the appropriate approach when faced with operational issues or to prioritize among multiple options. Authored by recognized experts in the field, this book proves to be a balanced reference volume that is essential not just for civil engineers, but also for a wide variety of audiences in interconnected disciplines. - Presents a systematic framework of methodological solutions helping readers to make decisions quickly and accurately - Features several real-life case studies that support understanding and provide reliable actionable guidance - Includes the theoretical underpinnings of decision support tools and emphasizes multicriteria decision analysis techniques applied to civil engineering projects - Offers civil engineers a structured approach to tackle complex decisions and establish priorities in their projects - Is accompanied by an online companion site that includes Excel worksheets, demonstrating step-by-step processes, numerical simulations, and worked-out examples


Civil Engineering and Symmetry

Civil Engineering and Symmetry

Author: Edmundas Kazimieras Zavadskas

Publisher: MDPI

Published: 2019-06-14

Total Pages: 198

ISBN-13: 3039210025

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A topic of utmost importance in civil engineering is finding optimal solutions throughout the life cycle of buildings and infrastructural objects, including their design, manufacturing, use, and maintenance. Operational research, management science, and optimization methods provide a consistent and applicable groundwork for engineering decision-making. These topics have received the interest of researchers and, after a rigorous peer-review process, eight papers have been published in this Special Issue. The articles in this Printed Edition demonstrate how solutions in civil engineering, which bring economic, social, and environmental benefits, are obtained through a variety of methodologies and tools. Usually, decision-makers need to take into account not just a single criterion, but several different criteria and, therefore, multi-criteria decision-making (MCDM) approaches have been suggested for application in five of the published papers; the rest of the papers apply other research methods. Most approaches suggested decision models under uncertainty, proposing hybrid MCDM methods in combination with fuzzy or rough set theory, as well as D-numbers. The application areas of the proposed MCDM techniques mainly cover production/manufacturing engineering, logistics and transportation, and construction engineering and management. We hope that a summary of the Special Issue as provided here will encourage a detailed analysis of the papers included in the Printed Edition.


Sustainability in Construction Engineering

Sustainability in Construction Engineering

Author: Edmundas Kazimieras Zavadskas

Publisher: MDPI

Published: 2018-09-20

Total Pages: 495

ISBN-13: 3038971669

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This book is a printed edition of the Special Issue "Sustainability in Construction Engineering" that was published in Sustainability


Fuzzy Hybrid Computing in Construction Engineering and Management

Fuzzy Hybrid Computing in Construction Engineering and Management

Author: Aminah Robinson Fayek

Publisher: Emerald Group Publishing

Published: 2018-10-05

Total Pages: 461

ISBN-13: 1787439968

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This book is a guide for students, researchers, and practitioners to the latest developments in fuzzy hybrid computing in construction engineering and management. It discusses basic theory related to fuzzy logic and fuzzy hybrid computing, their application in a range of practical construction problems, and emerging and future research trends.


Life Cycle Sustainability Assessment For Multi-Criteria Decision Making In Bridge Design: A Review

Life Cycle Sustainability Assessment For Multi-Criteria Decision Making In Bridge Design: A Review

Author: Ignacio Javier Navarro

Publisher: Infinite Study

Published:

Total Pages: 15

ISBN-13:

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Sustainable design of infrastructures has become a major matter of study since the recent establishment of the Agenda 2030. This paper provides a systematic literature review on the use of multi-criteria decision making techniques used so far for the sustainable design of bridges. Special attention is put as well on how the reviewed studies assess the sustainable performance of bridge designs along their life cycle from the economic, the environmental and the social perspective. Although SAW and AHP are recurrently used in the sustainable assessment of bridges, the analysis of the most recent articles show that the application of TOPSIS and PROMETHEE techniques are gaining increasing relevance for such purpose. Most of the studies focus on the research of the construction and the maintenance stage of bridges. However, a need for further analysis is identified when it comes to the assessment of the impacts resulting from the End of Life cycle stage of bridges from a sustainable point of view. The use of intuitionistic and neutrosophic logic have been detected as emerging alternatives to the fuzzy approach of decision making problems.