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SEISMIC SAFETY OF BUILDINGS IN UPGRADED EARTHQUAKE ZONES

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dc.contributor.author Desai, J. P.
dc.date.accessioned 2014-09-28T06:19:44Z
dc.date.available 2014-09-28T06:19:44Z
dc.date.issued 1974
dc.identifier M.Tech en_US
dc.identifier.uri http://hdl.handle.net/123456789/2532
dc.guide Mathur, B. C.
dc.description.abstract The design seismic coefficients pxbvidsd for In the code, are quit* ss-all. Because of this,,fro;usnt upgrading of seismic zones becomes necessary as and when major earth• qua kesoccuy! In the present study, it Is shown that buildings have sufficient builtain seismic safety, so that such upgred• Mg of sei,mic one may not be viewed with a great eoncc . Such upgrading only helps the construction of new buildings on a sore rational bail s in Such areas. Th the presort study, muitlstoray reinforced cone crate framed buildings are first analysed and designed by working stress method without consideration of wzthquake forces and the design govnned by vertical load* only. A check is than ads to determine as to how much earthquake force the buildings can safely bar under the following cons, ditions t 1. Material street just reachfng yield point 2. Structure going in the Inelastic range 3, By ultimate load Malys is. A comparison is grade for the above three cases. A critical review of Lg 189 s 1.970 code provisions as for as buildings are concerned is also given, en_US
dc.language.iso en en_US
dc.subject EARTHQUAKE ENGINEERING en_US
dc.subject SEISMIC SAFETY en_US
dc.subject UPGRADED EARTHQUAKE ZONES en_US
dc.subject WORKING STRESS METHOD en_US
dc.title SEISMIC SAFETY OF BUILDINGS IN UPGRADED EARTHQUAKE ZONES en_US
dc.type M.Tech Dessertation en_US
dc.accession.number 108012 en_US


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