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・ Earthquake environmental effects
・ Earthquake Game
・ Earthquake Glue
・ Earthquake in Chile (film)
・ Earthquake in New York
・ Earthquake in Zipland
・ Earthquake insurance
・ Earthquake light
・ Earthquake location
・ Earthquake map
・ Earthquake Memorial Bridge
・ Earthquake of 1343
・ Earthquake prediction
・ Earthquake Reconstruction and Rehabilitation Authority
・ Earthquake Research Institute, University of Tokyo
Earthquake resistant structures
・ Earthquake rotational loading
・ Earthquake rupture
・ Earthquake scenario
・ Earthquake sensitive
・ Earthquake shaking table
・ Earthquake simulation
・ Earthquake storm
・ Earthquake swarm
・ Earthquake Synod
・ Earthquake Terror
・ Earthquake Valley
・ Earthquake valve
・ Earthquake Visions
・ Earthquake warning system


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Earthquake resistant structures : ウィキペディア英語版
Earthquake resistant structures
(詳細はstructures designed to withstand earthquakes. While no structure can be entirely immune to damage from earthquakes, the goal of earthquake-resistant construction is to erect structures that fare better during seismic activity than their conventional counterparts.
According to building codes, earthquake-resistant structures are intended to withstand the largest earthquake of a certain probability that is likely to occur at their location. This means the loss of life should be minimized by preventing collapse of the buildings for rare earthquakes while the loss of functionality should be limited for more frequent ones.
To combat earthquake destruction, the only method available to ancient architects was to build their landmark structures to last, often by making them excessively stiff and strong, like the El Castillo pyramid at Chichen Itza.
Currently, there are several design philosophies in earthquake engineering, making use of experimental results, computer simulations and observations from past earthquakes to offer the required performance for the seismic threat at the site of interest. These range from appropriately sizing the structure to be strong and ductile enough to survive the shaking with an acceptable damage, to equipping it with base isolation or using structural vibration control technologies to minimize any forces and deformations. While the former is the method typically applied in most earthquake-resistant structures, important facilities, landmarks and cultural heritage buildings use the more advanced (and expensive) techniques of isolation or control to survive strong shaking with minimal damage. Examples of such applications are the Cathedral of Our Lady of the Angels and the Acropolis Museum.
==Trends, projects ==
Some of the new trends and/or projects in the field of earthquake engineering structures are presented below.

抄文引用元・出典: フリー百科事典『 ウィキペディア(Wikipedia)
ウィキペディアで「Earthquake resistant structures」の詳細全文を読む



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