Applications of Structural Fire Engineering : proceedings of the International Conference of Applications of Structural Fire Engineering (ASFE 2017), September 7-8, 2017, Manchester, United Kingdom
معرفی کتاب «Applications of Structural Fire Engineering : proceedings of the International Conference of Applications of Structural Fire Engineering (ASFE 2017), September 7-8, 2017, Manchester, United Kingdom» نوشتهٔ Martin Gillie, Yong Wang، منتشرشده توسط نشر CRC Press : Taylor & Francis در سال 2017. این کتاب در فرمت pdf، زبان انگلیسی ارائه شده است.
**Applications of Structural Fire Engineering** contains the papers presented at ASFE 2017(Manchester, UK, 7-8 September 2017. The ASFE’17 conference is the next in a series (2009, 2011, 2013, 2015) of successful conferences that aim to bring together experts and specialists in design against fire from all over the world to share ideas and to acquire knowledge in the field of structural fire engineering. Practice in structural engineering increasingly accepts the benefits of performancebased approaches to the design of structures for fire resistance. **Applications of Structural Fire Engineering** focusses on the application of design methods, both manual and computational, for structures to resist fire. Particularly relevant themes are fire modelling, simulation of the heat transfer between fire and structures, and modelling of structural behaviour at elevated temperatures using numerical methods or software implementations of design codes. Cover -- Half Title -- Title Page -- Copyright Page -- Table of Contents -- Preface -- Sensitivity of resistance of cold-formed steel tubular columns to elevated temperature mechanical properties -- Fire performance of CFRP strengthened cold-formed steel tubular columns -- Sensitivity of elevated temperature load carrying capacity of thin-walled steel members to local imperfections -- High-temperature properties of aluminum alloy EN6082AW T6 -- A manual calculation method for the check of the fire resistance of concrete columns subjected to a standard fire -- Fire design of continuous concrete filled steel tubular column for a multi-storey building -- Performance-based fire design of a 14-story residential mass timber building -- Influence of heating rate and thermal incompatibilities on the test results of concrete cylinder specimens with polypropylene fibres under heating -- To fire resistance of the steel and fibre-reinforced concrete circular hollow section column -- Fire resistance of axially restrained and partially unprotected Ultra Shallow Floor Beams (USFB®) and DELTABEAM® composite beams -- Behaviors of axially restrained tubular members under fire-part 1: A novel test set-up -- Behaviors of axially restrained tubular members under fire-part 2: Experimental study -- Robustness index for steel portal frames against fire-induced progressive collapse -- Fire safety of high-rise residential buildings: Scope of fire engineering and comparison between UK and Turkish practice -- Comparative fire analysis of steel-concrete composite buildings designed following performance-based and US prescriptive approaches -- Fire resistance of reinforced concrete columns: A systematic review -- Reviewing the veracity of a zone-model-based-approach for the assessment of enclosures formed of exposed CLT "This book holds the proceedings of the Conference on Applications of Structural Fire Engineering (ASFE 2017), held on September 7-8, 2017, in Manchester, UK. The ASFE'17 conference will be the next in a series (2009, 2011, 2013, 2015) of successful conferences that aim to bring together experts and specialists in design against fire from all over the world to share ideas and to acquire knowledge in the field of structural fire engineering. Practice in structural engineering increasingly accepts the benefits of performance-based approaches to the design of structures for fire resistance. This conference will focus on the application of design methods, both manual and computational, for structures to resist fire. Particularly relevant themes will be fire modelling, simulation of the heat transfer between fire and structures, and modelling of structural behaviour at elevated temperatures using numerical methods or software implementations of design codes."--Provided by publisher Applications of Structural Fire Engineering contains the papers presented at ASFE 2017 (Manchester, UK, 7-8 September 2017. The ASFE’17 conference is the next in a series (2009, 2011, 2013, 2015) of successful conferences that aim to bring together experts and specialists in design against fire from all over the world to share ideas and to acquire knowledge in the field of structural fire engineering. Practice in structural engineering increasingly accepts the benefits of performancebased approaches to the design of structures for fire resistance. Applications of Structural Fire Engineering focusses on the application of design methods, both manual and computational, for structures to resist fire. Particularly relevant themes are fire modelling, simulation of the heat transfer between fire and structures, and modelling of structural behaviour at elevated temperatures using numerical methods or software implementations of design codes.
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