ASPEK BUKAAN DINDING TERHADAP KEKUATAN STRUKTUR PADA BANGUNAN TAHAN GEMPA (Studi Kasus Pada Model Bangunan Gedung KBGI: Griya Bestari)

Main Author: Widyarto, Andri Candra
Format: Thesis NonPeerReviewed Book
Bahasa: eng
Terbitan: , 2010
Subjects:
Online Access: http://eprints.umm.ac.id/531/1/ASPEK_BUKAAN_DINDING_TERHADAP_KEKUATAN_STRUKTURPADA_BANGUNAN_TAHAN_GEMPA.pdf
http://eprints.umm.ac.id/531/
ctrlnum 531
fullrecord <?xml version="1.0"?> <dc schemaLocation="http://www.openarchives.org/OAI/2.0/oai_dc/ http://www.openarchives.org/OAI/2.0/oai_dc.xsd"><relation>http://eprints.umm.ac.id/531/</relation><title>ASPEK BUKAAN DINDING TERHADAP KEKUATAN STRUKTUR PADA BANGUNAN TAHAN GEMPA (Studi Kasus Pada Model Bangunan Gedung KBGI: Griya Bestari)</title><creator>Widyarto, Andri Candra</creator><subject>TA Engineering (General). Civil engineering (General)</subject><description>With full of scale at building model (KBGI: Griya Bestari) residing in Malang city with earthquake zona region (4), this research is meant to know how big influence of opening wall to ability of high rise building structure in accepting earthquake burden. This comparative research with opening degree of comporasion 0%, 10%, 25%, and 35%. With structure type (1) portal without wall, (2) opening wall model without cushion and (3) opening wall model with cushion to be analysed by using calculation of style shift effect of earthquake burden. From result of research show biggest displacement and biggest inersia, structure (1) &#x3B4;= 1,326 mm and K = 63,94 ton/cm, structure (2) &#x3B4;= 0,519 mm and K = 265,52 ton/cm and structure (3) &#x3B4;= 0,52 mm and K = 218,78 ton/cm. result of calculation of opening ever greater of displacement. But inversely proportional with is ever greater wide of opening hence smaller inersia of structure. Third of this model is including very peaceful from influence of style of lateral effect of earthquake because yielded displacement smaller than condition of displacement used.</description><date>2010</date><type>Thesis:Thesis</type><type>PeerReview:NonPeerReviewed</type><type>Book:Book</type><language>eng</language><identifier>http://eprints.umm.ac.id/531/1/ASPEK_BUKAAN_DINDING_TERHADAP_KEKUATAN_STRUKTURPADA_BANGUNAN_TAHAN_GEMPA.pdf</identifier><identifier> Widyarto, Andri Candra (2010) ASPEK BUKAAN DINDING TERHADAP KEKUATAN STRUKTUR PADA BANGUNAN TAHAN GEMPA (Studi Kasus Pada Model Bangunan Gedung KBGI: Griya Bestari). Other thesis, University of Muhammadiyah Malang. </identifier><recordID>531</recordID></dc>
language eng
format Thesis:Thesis
Thesis
PeerReview:NonPeerReviewed
PeerReview
Book:Book
Book
author Widyarto, Andri Candra
title ASPEK BUKAAN DINDING TERHADAP KEKUATAN STRUKTUR PADA BANGUNAN TAHAN GEMPA (Studi Kasus Pada Model Bangunan Gedung KBGI: Griya Bestari)
publishDate 2010
topic TA Engineering (General). Civil engineering (General)
url http://eprints.umm.ac.id/531/1/ASPEK_BUKAAN_DINDING_TERHADAP_KEKUATAN_STRUKTURPADA_BANGUNAN_TAHAN_GEMPA.pdf
http://eprints.umm.ac.id/531/
contents With full of scale at building model (KBGI: Griya Bestari) residing in Malang city with earthquake zona region (4), this research is meant to know how big influence of opening wall to ability of high rise building structure in accepting earthquake burden. This comparative research with opening degree of comporasion 0%, 10%, 25%, and 35%. With structure type (1) portal without wall, (2) opening wall model without cushion and (3) opening wall model with cushion to be analysed by using calculation of style shift effect of earthquake burden. From result of research show biggest displacement and biggest inersia, structure (1) δ= 1,326 mm and K = 63,94 ton/cm, structure (2) δ= 0,519 mm and K = 265,52 ton/cm and structure (3) δ= 0,52 mm and K = 218,78 ton/cm. result of calculation of opening ever greater of displacement. But inversely proportional with is ever greater wide of opening hence smaller inersia of structure. Third of this model is including very peaceful from influence of style of lateral effect of earthquake because yielded displacement smaller than condition of displacement used.
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