Table of Contents


Introduction. 3

Earthquake engineering. 4

Innovations in Earthquake Engineering. 5

Conclusion. 9

References. 10


Фрагмент работы:

This paper is dedicated to the issues covering the problem of earthquake engineering and the options developed and used to minimize the damage and casualties resulting from the earthquakes.

Earthquake engineering is a subdivision of structural engineering that focuses on designing structures capable of withstanding the immense levels of stress caused by seismic forces. Civil engineers specializing in this field usually work in geographic areas that frequently experience earthquakes, allowing them to test new technologies in real-world earthquake scenarios.

The paper describes the key innovations that help buildings withstand earthquakes. They are as follows: lead-rubber bearings, steel plate shear walls, controlled rocking, tuned mass dampers, seismic cloaking.

There are many ways to make a building resilient against earthquakes. In wood structures, extra strappings can be nailed to key parts of the frame. Steel-reinforced concrete is another option, with the strengths and weaknesses of each compound offsetting the other, though even that may not be enough to prevent damage in a large quake. Some buildings use dampers similar to shock-absorbers in a car. The most effective, though, may be base isolation, where the building is separated from the ground using dampers or bearings.


Список использованной литературы:

How Have Earthquakes Shaped Civil Engineering [Electronic Resource]. – Mode of access:  Kelly, J. A Tested, Inexpensive Way to Protect Buildings from Earthquakes / J. Kelly // Nova [Electronic Resource]. – Mode of access:  Lucas, J. What Is Civil Engineering? / J. Lucas [Electronic Resource]. – Mode of access:  5 Civil Engineering Innovations That Help Buildings Withstand Earthquakes [Electronic Resource]. – Mode of access: 

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ИП Глухов Руслан Алексеевич, Свид-во о гос. рег. № 190616554 от от 07.04.2005 г., Мингорисполком.
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