Published September 1984 | Version v1
Book

Simplified design of flexible expansion anchored plates for nuclear structures

  • 1. Sargent and Lundy, Chicago, IL
  • 2. Structural Engineering

Description

In nuclear power plant construction, expansion anchored plates are used to support pipe, cable tray and HVAC duct hangers, and various structural elements. The expansion anchored plates provide flexibility in the installation of field-routed lines where cast-in-place embedments are not available. General design requirements for expansion anchored plate assemblies are given in ACI 349, Appendix B (1). The manufacturers recommend installation procedures for their products. Recent field testing in response to NRC Bulletin 79-02 (2) indicates that anchors, installed in accordance with manufacturer's recommended procedures, perform satisfactorily under static and dynamic loading conditions. Finite element analysis is a useful tool to correctly analyze the expansion anchored plates subject to axial tension and biaxial moments, but it becomes expensive and time-consuming to apply this tool for a large number of plates. It is, therefore, advantageous to use a simplified method, even though it may be more conservative as compared to the exact method of analysis. This paper presents a design method referred to as the modified rigid plate analysis approach to simplify both the initial design and the review of as-built conditions

Additional details

Publishing Information

Publisher
A.S.C.E.
Imprint Place
New York, NY (USA)
Imprint Title
Structural engineering in nuclear facilities, vol. 2
Journal Page Range
p. 1013-1036.

Conference

Title
Conference on structural engineering in operating nuclear facilities.
Dates
10-12 Sep 1984.
Place
Raleigh, NC (USA).

INIS

Country of Publication
United States
Country of Input or Organization
United States
INIS RN
16061380
Subject category
S21: SPECIFIC NUCLEAR REACTORS AND ASSOCIATED PLANTS;
Resource subtype / Literary indicator
Conference
Descriptors DEI
EXPANSION; FASTENERS; FINITE ELEMENT METHOD; FLEXIBILITY; FOUNDATIONS; MECHANICAL STRUCTURES; PLATES; POWER REACTORS; REACTOR SAFETY; SPECIFICATIONS; STRESS ANALYSIS; SUPPORTS
Descriptors DEC
MECHANICAL PROPERTIES; NUMERICAL SOLUTION; REACTORS; SAFETY; TENSILE PROPERTIES