The Resource Probability Based High Temperature Engineering : Creep and Structural Fire Resistance, by Leo Razdolsky, (electronic resource)

Probability Based High Temperature Engineering : Creep and Structural Fire Resistance, by Leo Razdolsky, (electronic resource)

Label
Probability Based High Temperature Engineering : Creep and Structural Fire Resistance
Title
Probability Based High Temperature Engineering
Title remainder
Creep and Structural Fire Resistance
Statement of responsibility
by Leo Razdolsky
Creator
Contributor
Author
Provider
Subject
Language
eng
Summary
This volume on structural fire resistance is for aerospace, structural, and fire prevention engineers; architects, and educators. It bridges the gap between prescriptive- and performance-based methods and simplifies very complex and comprehensive computer analyses to the point that the structural fire resistance and high temperature creep deformations will have a simple, approximate analytical expression that can be used in structural analysis and design. The book emphasizes methods of the theory of engineering creep (stress-strain diagrams) and mathematical operations quite distinct from those of solid mechanics absent high-temperature creep deformations, in particular the classical theory of elasticity and structural engineering. Dr. Razdolsky’s previous books focused on methods of computing the ultimate structural design load to the different fire scenarios. The current work is devoted to the computing of the estimated ultimate resistance of the structure taking into account the effect of high temperature creep deformations. An essential resource for aerospace structural engineers who wish to improve their understanding of structure exposed to flare up temperatures and severe fires, the book also serves as a textbook for introductory courses in fire safety in civil or structural engineering programs, vital reading for the PhD students in aerospace fire protection and structural engineering, and a case study of a number of high-profile fires (the World Trade Center, Broadgate Phase 8, One Meridian Plaza; Mandarin Towers). Probability Based High Temperature Engineering: Creep and Structural Fire Resistance successfully bridges the information gap between aerospace, structural, and engineers; building inspectors, architects, and code officials
http://library.link/vocab/creatorName
Razdolsky, Leo
Image bit depth
0
LC call number
TA349-359
Literary form
non fiction
http://library.link/vocab/relatedWorkOrContributorName
SpringerLink
http://library.link/vocab/subjectName
  • Engineering
  • Structural mechanics
  • Buildings
  • Building
  • Construction
  • Engineering, Architectural
  • Building materials
  • Engineering
  • Structural Mechanics
  • Building Construction
  • Building Materials
Label
Probability Based High Temperature Engineering : Creep and Structural Fire Resistance, by Leo Razdolsky, (electronic resource)
Instantiates
Publication
Antecedent source
mixed
Carrier category
online resource
Carrier category code
  • cr
Carrier MARC source
rdacarrier
Color
not applicable
Content category
text
Content type code
  • txt
Content type MARC source
rdacontent
Contents
Introduction -- Integral Volterra Equations -- Phenomenological Time Invariant Creep Models -- Phenomenological Time Variant Nonlinear Creep Models -- Transient Engineering Creep of Materials Under Various Fire Conditions -- Anisotropic Materials and Composite Structures -- Probabilistic Modeling of Creep and Stress-Strain Diagram -- Probability-based Engineering Creep and Design Fire Exposure -- Fire Severity and Structural Creep Analysis/Design
Dimensions
unknown
Extent
XV, 656 p. 308 illus., 257 illus. in color.
File format
multiple file formats
Form of item
electronic
Isbn
9783319419091
Level of compression
uncompressed
Media category
computer
Media MARC source
rdamedia
Media type code
  • c
Other control number
10.1007/978-3-319-41909-1
Other physical details
online resource.
Quality assurance targets
absent
Reformatting quality
access
Specific material designation
remote
System control number
(DE-He213)978-3-319-41909-1
Label
Probability Based High Temperature Engineering : Creep and Structural Fire Resistance, by Leo Razdolsky, (electronic resource)
Publication
Antecedent source
mixed
Carrier category
online resource
Carrier category code
  • cr
Carrier MARC source
rdacarrier
Color
not applicable
Content category
text
Content type code
  • txt
Content type MARC source
rdacontent
Contents
Introduction -- Integral Volterra Equations -- Phenomenological Time Invariant Creep Models -- Phenomenological Time Variant Nonlinear Creep Models -- Transient Engineering Creep of Materials Under Various Fire Conditions -- Anisotropic Materials and Composite Structures -- Probabilistic Modeling of Creep and Stress-Strain Diagram -- Probability-based Engineering Creep and Design Fire Exposure -- Fire Severity and Structural Creep Analysis/Design
Dimensions
unknown
Extent
XV, 656 p. 308 illus., 257 illus. in color.
File format
multiple file formats
Form of item
electronic
Isbn
9783319419091
Level of compression
uncompressed
Media category
computer
Media MARC source
rdamedia
Media type code
  • c
Other control number
10.1007/978-3-319-41909-1
Other physical details
online resource.
Quality assurance targets
absent
Reformatting quality
access
Specific material designation
remote
System control number
(DE-He213)978-3-319-41909-1

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