TABLE OF CONTENTS
Introduction……………………………………………………………………………………………………………..2
History........................................................................................................................3
History………………………................................................................................................4
Classification of Structural Vibration Control…………………………………………………………….5
Application of different types of Structural Vibration Control…………………………………..6
Summary………………………………………………………………………………………………………………….7
References……………………………………………………………………………………………………………
, Introduction
An estimated of 53,469 earthquake with magnitude between 7.0-4.0 magnitude
occurred in the Philippines in the year of 2020. According to the government in the Philippines,
6.9 magnitude earthquake in Matanao Davao del Sure (Region XI) as of January 10,2020. A total
of 86,548 families affected. Due to earthquake disaster, the researcher come up to study with
Structural Vibration Control.
Structural Vibration Control is to control the vibration of structure under earthquake
and wind by changing rigidity, mass, damping and shape or applying passive or active control
forces. Structural Vibration Control technology has gradually one of the most effective technical
mean to resist strong earthquakes and wind due to its safety, economy and effective
characteristic.
This study aims to mitigate seismic impacts in building structures and strengthen the
structure through structural vibration control.