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Engineering Design Error (Hazard Identification, Sneak Analysis, Automated Design Review, Engineering Design Risk)

List Price: $98.99
SKU:
9783112228661
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25 unit(s)
Expected release date is May 19th 2027
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  • Product Details

    Author:
    John Robert Taylor
    Format:
    Paperback
    Pages:
    275
    Publisher:
    De Gruyter (May 19, 2027)
    Imprint:
    De Gruyter
    Release Date:
    May 19, 2027
    Language:
    English
    Audience:
    Professional and scholarly
    ISBN-13:
    9783112228661
    ISBN-10:
    3112228669
    Weight:
    16oz
    Dimensions:
    6.69" x 9.45"
    File:
    TWO RIVERS-PERSEUS-Metadata_Only_Perseus_Distribution_Customer_Group_Metadata_20260726163234-20260726.xml
    Folder:
    TWO RIVERS
    List Price:
    $98.99
    Country of Origin:
    Germany
    Pub Discount:
    60
    Series:
    De Gruyter STEM
    As low as:
    $85.13
    Publisher Identifier:
    P-PER
    Discount Code:
    C
  • Overview

    This volume describes an extensive range of methods which can be used to identify design errors, including deep failure mode and effects analysis, hazard and operability analysis, action error analysis and zonal analysis. The sneak analysis method is described in depth.

    Many analysis methods for error identification are quite costly to implement in terms of engineer time and project time. Automation of hazard identification is described, including examples of practical application.

    A special feature of this volume is the description of methods for automated checking of specification texts for completeness, consistency and compliance with legal and standards requirements.

    The volume reviews the published methods for risk analysis of the design process, which aim to predict the frequency or number of errors in designs. Current approaches to project risk assessment are also described . The volume concludes with a summary of the current status of design error avoidance and prevention, and the impact of the explicit study of design error and avoidance on the future of engineering.