4.6 Article

Potentiality of Using Vertical and Three-Dimensional Isolation Systems in Nuclear Structures

Journal

NUCLEAR ENGINEERING AND TECHNOLOGY
Volume 48, Issue 5, Pages 1237-1251

Publisher

KOREAN NUCLEAR SOC
DOI: 10.1016/j.net.2016.03.005

Keywords

3D Isolation Systems; Isolator; Nuclear Power Plant; Response Spectrum; Rocking Effect; Vertical Isolation

Funding

  1. National Natural Science Foundation of China [51478357, 51308418]
  2. National Science and Technology Pillar Program [2015BAK17B04]
  3. KEPCO Engineering and Construction Company Inc.
  4. Electric Power Research Institute

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Although the horizontal component of an earthquake response can be significantly reduced through the use of conventional seismic isolators, the vertical component of excitation is still transmitted directly into the structure. Records from instrumented structures, and some recent tests and analyses have actually seen increases in vertical responses in base isolated structures under the combined effects of horizontal and vertical ground motions. This issue becomes a great concern to facilities such as a Nuclear Power Plants (NPP), with specialized equipment and machinery that is not only expensive, but critical to safe operation. As such, there is considerable interest worldwide in vertical and three-dimensional (3D) isolation systems. This paper examines several vertical and 3D isolation systems that have been proposed and their potential application to modern nuclear facilities. In particular, a series of case study analyses of a modern NPP model are performed to examine the benefits and challenges associated with 3D isolation compared with horizontal isolation. It was found that compared with the general horizontal isolators, isolators that have vertical frequencies of no more than 3 Hz can effectively reduce the vertical in-structure responses for the studied NPP model. Among the studied cases, the case that has a vertical isolation frequency of 3 Hz is the one that can keep the horizontal period of the isolators as the first period while having the most flexible vertical isolator properties. When the vertical frequency of isolators reduces to 1 Hz, the rocking effect is obvious and rocking restraining devices are necessary. Copyright (C) 2016, Published by Elsevier Korea LLC on behalf of Korean Nuclear Society.

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