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High Performance Computing in Structural Engineering (Computer Aided Engineering)
 
 
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High Performance Computing in Structural Engineering (Computer Aided Engineering) [Hardcover]

Hojjat Adeli (Author), Roesdiman Soegiarso (Author)
4.5 out of 5 stars  See all reviews (2 customer reviews)

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Book Description

0849320917 978-0849320910 November 30, 1998 1
High-performance multiprocessor computers provide new and interesting opportunities to solve large-scale structural engineering problems. However, the development of new computational models and algorithms that exploit the unique architecture of these machines remains a challenge.

High Performance Computing in Structural Engineering explores the use of supercomputers with vectorization and parallel processing capabilities in structural engineering applications. The book focuses on the optimization of large structures subjected to the complicated, implicit, and discontinuous constraints of commonly used design codes and presents robust parallel-algorithms for analysis of these structures.

The authors apply the algorithms to and analyze the performance of minimum weight designs of large, steel space trusses and moment-resisting frames, with or without bracings, consisting of discrete standard shapes. They clearly show that adroit and judicious use of vectorization techniques can improved the speedup of an optimization algorithm, and that parallel processing can lead to even further speedup.

With its review of the necessary background material, generous illustrations, and unique content, this is the definitive resource for the analysis and optimization of structure on shared-memory multiprocessor computers. By extension, High Performance Computing in Structural Engineering will prove equally valuable in distributed computing on a cluster of workstations

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Product Details

  • Hardcover: 272 pages
  • Publisher: CRC Press; 1 edition (November 30, 1998)
  • Language: English
  • ISBN-10: 0849320917
  • ISBN-13: 978-0849320910
  • Product Dimensions: 9.2 x 6.2 x 0.7 inches
  • Shipping Weight: 1.2 pounds (View shipping rates and policies)
  • Average Customer Review: 4.5 out of 5 stars  See all reviews (2 customer reviews)
  • Amazon Best Sellers Rank: #4,899,948 in Books (See Top 100 in Books)

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4.0 out of 5 stars Advanced book aimed at coders., January 30, 2010
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This review is from: High Performance Computing in Structural Engineering (Computer Aided Engineering) (Hardcover)
The intended audience for this book are people engaged in writing finite element software for large structures. Some background in numerical analysis and scientific computing required. I would love to teach a graduate course based on some of the information in this book. If you only use software and have no intention of writing it, then this book will not benefit you much.
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5.0 out of 5 stars A nice compendium of algorithms and methods, February 9, 2002
This review is from: High Performance Computing in Structural Engineering (Computer Aided Engineering) (Hardcover)
This is a great source book to get a quick entry into the fascinating world of optimization and modeling of complex structures. The book introduces the ideas with the help of very good illustrations and motivates the topic in a logical and coherent fashion. The book treats state of the art topics like parallel vector computation with elegance and clarity. I would recommend this to any engineer with curiosity and most certainly structural engineering professionals. Any engineer can learn from the book how to analyze complex systems.
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Inside This Book (learn more)
First Sentence:
High-performance computing has opened new frontiers to solve large-scale structural engineering problems (Adeli et al., 1994). Read the first page
Key Phrases - Statistically Improbable Phrases (SIPs): (learn more)
unit transverse displacement, displacement scaling factor, integer search method, kth loading condition, optimality criteria approach, unit axial displacement, member stiffness matrix, virtual nodal displacements, structural optimization algorithms, member stiffness matrices, vectorized algorithm, discrete optimization algorithm, structure stiffness matrix, new design variables, displacement constraints, jth degree, required flexural strength, buckling constraints, structural analysis problem, structural optimization problem, minimum weight design, banded form, roof live load, speedup results, nodal degree
Key Phrases - Capitalized Phrases (CAPs): (learn more)
Endif Next, Uniform Building Code, Using Hooke
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