Cart (0)
  • No items in cart.
Total
$0
There is a technical issue about last added item. You can click "Report to us" button to let us know and we resolve the issue and return back to you or you can continue without last item via click to continue button.
Filters:
EDITION
to
PUBLISHER
(1)
(338)
(621)
(599)
(55)
(234)
(1006)
(696)
(2183)
(117)
(95207)
(63)
(584)
(124)
(33)
(21)
(20)
(96195)
(17)
(1)
(374)
(325)
(7076)
(241)
(21)
(6)
(1667)
(18)
(19)
(28)
(4)
 
(6)
(7)
(115)
(3)
(57)
(5)
(5)
(1)
(1)
(2)
(28)
(27)
(27)
(13)
(61)
(24)
(22)
(7)
(8)
(20)
(1)
(3)
(50)
(6)
(33)
CONTENT TYPE
 Act
 Admin Code
 Announcements
 Bill
 Book
 CADD File
 CAN
 CEU
 Charter
 Checklist
 City Code
 Code
 Commentary
 Comprehensive Plan
 Conference Paper
 County Code
 Course
 DHS Documents
 Document
 Errata
 Executive Regulation
 Federal Guideline
 Firm Content
 Guideline
 Handbook
 Interpretation
 Journal
 Land Use and Development
 Law
 Legislative Rule
 Local Amendment
 Local Code
 Local Document
 Local Regulation
 Local Standards
 Manual
 Model Code
 Model Standard
 Notice
 Ordinance
 Other
 Paperback
 PASS
 Periodicals
 PIN
 Plan
 Policy
 Product
 Product - Data Sheet
 Program
 Provisions
 Requirements
 Revisions
 Rules & Regulations
 Standards
 State Amendment
 State Code
 State Manual
 State Plan
 State Standards
 Statute
 Study Guide
 Supplement
 Sustainability
 Technical Bulletin
 All
  • ACI
    ACI PRC-349.1-24: Reinforced Concrete Design for Thermal Effects on Nuclear Safety-Related Structures - Report
    Edition: 2024
    $68.04
    / user per year

Content Description

This report presents a design-oriented approach for considering thermal effect on nuclear safety-related concrete structures. The approach presented in this report is intended to assist the licensed design professional in addressing the requirements of Appendix E of ACI CODE-349-13. Although this report is focused on the requirements of ACI CODE-349, the general behavior of structures under thermal effects and the significant issues to consider in design are broadly applicable in the design of other types of reinforced concrete members and structures. Three types of structures - frame structures, concrete wall structures, and axisymmetric structures - are addressed. For concrete wall structures, thermal and structural behaviors are discussed. Guidelines are provided for determining the required strengths for concrete walls subject to thermal loading combinations. For frame structures, a rationale is described for determining the extent of component cracking that can be assumed for purposes of obtaining the cracked structure thermal forces and moments. Stiffness coefficients and carryover factors are presented in graphical form as a function of the extent of component cracking along its length and the reinforcement ratio. Fixed-end thermal moments for cracked components are expressed in terms of these factors for: 1) a temperature gradient across the depth of the component; and 2) end displacements due to a uniform temperature change along the axes of adjacent components. For the axisymmetric shells, normalized cracked section thermal moments are presented in graphical form. These moments are normalized with respect to the cross-sectional dimensions and the temperature gradient across the section. The normalized moments are presented as a function of the internal axial forces and moments acting on the section and the reinforcement ratio. Use of the graphical information is illustrated by examples. Keywords: concrete walls; cracking (fracturing); frames; nuclear safety-related structures; shells; structural analysis; structural design; temperature; thermal effect; thermal gradient; thermal properties.

GROUPS