Materials Selection for Process Plants

Materials Selection for Process Plants
Author: Russell E. Gackenbach
Publsiher: Unknown
Total Pages: 336
Release: 1960
Genre: Technology & Engineering
ISBN: WISC:89038807012

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Materials Selection for Hydrocarbon and Chemical Plants

Materials Selection for Hydrocarbon and Chemical Plants
Author: Hansen
Publsiher: Routledge
Total Pages: 440
Release: 2017-11-22
Genre: Science
ISBN: 9781351433334

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Describes the systematic procedure for using process and mechanical design information to select construction materials suitable for a range of chemical and hydrocarbon processing plants. The volume features tables for locating the American Society for Testing and Materials (ASTM) product form specifications for construction materials that have code-allowable design stresses. It analyzes threshold values for degradation phenomena involving thermal damage.

Chemical and Process Plant a Guide to the Selection of Engineering Materials

Chemical and Process Plant  a Guide to the Selection of Engineering Materials
Author: Lee S. Evans
Publsiher: John Wiley & Sons
Total Pages: 198
Release: 1980
Genre: Technology & Engineering
ISBN: UOM:39015000506868

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Materials Selection for the Chemical Process Industries

Materials Selection for the Chemical Process Industries
Author: C. P. Dillon
Publsiher: McGraw-Hill Companies
Total Pages: 358
Release: 1992
Genre: Technology & Engineering
ISBN: UOM:39015022230851

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Selecting Engineering Materials for Chemical and Process Plant

Selecting Engineering Materials for Chemical and Process Plant
Author: Lee S. Evans
Publsiher: Random House Business
Total Pages: 164
Release: 1974
Genre: Chemical plants
ISBN: 0220668108

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Process Plant Instrumentation

Process Plant Instrumentation
Author: Miguel J. Bagajewicz
Publsiher: CRC Press
Total Pages: 370
Release: 2000-11-27
Genre: Science
ISBN: 1566769981

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This is the first in-depth presentation in book form of current analytical methods for optimal design, selection and evaluation of instrumentation for process plants. The presentation is clear, concise and systematic-providing process engineers with a valuable tool for improving quality, costs, safety, loss prevention, and production accounting. From Chapter 1 Introduction "Instrumentation is needed in process plants to obtain data that are essential to perform several activities. Among the most important are control, the assessment of the quality of products, production accounting... and the detection of failures related to safety. In addition, certain parameters than cannot be measured directly, such as heat exchanger, fouling or column deficiencies, are of interest. Finally, new techniques, such as on-line optimization, require the construction of reliable computer models for which the estimation of process parameters is essential. "This book concentrates on the tasks of determining the optimal set of measured variables and selecting the accuracy and reliability of the corresponding instruments. The goal is to obtain sufficiency accurate and reliable estimates of variables of interest while filtering bad data due to possible instrument malfunction. An additional goal is to observe and diagnose single and multiple process faults." From the Preface "There is a vast amount of literature devoted to the selection and good maintenance of instruments. This literature covers the selection of the right instrument for a particular range and system, but only after the desired accuracy and reliability of measurement have been established. Little has been written on how to systematically determine the right accuracy and reliability needed when selecting an instrument, much less how much redundancy is needed for a particular system. The key variables that needed estimation come from control requirements, as well as monitoring needs for safety, quality control and production accounting. These are the starting points of the design methodology. This book concentrates on determining the optimal accuracy and reliability of instruments and their location. To determine this, certain desired properties of the system of instruments are used as constraints while the cost is minimized. These properties, among others are variable observability, system reliability and precision of certain variables. "This book is not a textbook. Rather it is intended to be an organized collection of the most relevant work in this area.... It has been written with the intention of making it readable by engineers with some background in linear algebra, mathematical optimization and graph theory. It is organized so that the complexity of the sensor network design is addressed step by step." The information in this new book serves the needs of chemical and other process engineers involved in instrumentation and control, maintenance, plant operations, process design, process development, quality control, safety, and loss prevention. Illustrations and Tables The text is supplemented with more than 100 flow charts, diagrams and other schematics that illustrate procedures, systems and instrumentation. More than 70 tables provide useful reference data. The Author Dr. Miguel J. Bagajewicz brings to this new book his extensive experience in design, data management, teaching and writing in the area of process engineering. He received his M.S. and Ph.D. in Chemical Engineering from the California Institute of Technology. He is presently Associate Professor, School of Chemical Engineering and Materials Science, and Director, Center for Engineering Optimization at the University of Oklahoma. He is the author or co-author of more than 100 journal articles, conference presentations, and reports, and the author of articles on data reconciliation and sensor location in the Instrument Engineers' Handbook, fourth edition. He is a member of the American Institute of Chemical Engineers (AIChE), and on the executive committee of the Central Oklahoma Chapter.

Materials Selection for Sustainability in the Built Environment

Materials Selection for Sustainability in the Built Environment
Author: Assed N. Haddad,Ahmed W.A. Hammad,Karoline Figueiredo
Publsiher: Elsevier
Total Pages: 554
Release: 2024-02-13
Genre: Technology & Engineering
ISBN: 9780323951234

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Materials Selection for Sustainability in the Built Environment: Environmental, Social and Economic Aspects presents the current state-of-the-art when it comes to the decision-making process for choosing construction materials to deliver sustainable construction projects. Aspects covered include the science of enhanced decision-making via operational research and machine learning techniques and how this can be implemented in various disciplines such as architecture, engineering and construction. To this end, the book discusses environmental, economic and social aspects in assessing construction materials and presents different tools and methods that can benefit and facilitate this process. Finally, the book reviews previous publications on construction material selection and presents essential discussions on the role professionals, researchers, contractors and governments play in making more sustainable decisions on the built environment. Presents a lifecycle management-based, systematic and integrated approach for sustainable construction materials selection Discusses the impact of materials selection, covering every aspect of sustainability (environmental, social and economic aspects) Looks at the concept of the circular economy Provides case studies on decision-making methods in combination with lifecycle sustainability assessments

Process Plant Layout

Process Plant Layout
Author: Sean Moran
Publsiher: Butterworth-Heinemann
Total Pages: 756
Release: 2016-11-16
Genre: Technology & Engineering
ISBN: 9780128033562

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Process Plant Layout, Second Edition, explains the methodologies used by professional designers to layout process equipment and pipework, plots, plants, sites, and their corresponding environmental features in a safe, economical way. It is supported with tables of separation distances, rules of thumb, and codes of practice and standards. The book includes more than seventy-five case studies on what can go wrong when layout is not properly considered. Sean Moran has thoroughly rewritten and re-illustrated this book to reflect advances in technology and best practices, for example, changes in how designers balance layout density with cost, operability, and safety considerations. The content covers the ‘why’ underlying process design company guidelines, providing a firm foundation for career growth for process design engineers. It is ideal for process plant designers in contracting, consultancy, and for operating companies at all stages of their careers, and is also of importance for operations and maintenance staff involved with a new build, guiding them through plot plan reviews. Based on interviews with over 200 professional process plant designers Explains multiple plant layout methodologies used by professional process engineers, piping engineers, and process architects Includes advice on how to choose and use the latest CAD tools for plant layout Ensures that all methodologies integrate to comply with worldwide risk management legislation