Research on Collapse Testing of Nuclear Icebreaker Reactor Hull Structure Based on Distortion Similarity Theory

Author:

Lin Yi1,Cheng Ruiqi2,Chen Lizhi1,Kong Xiangshao23,Pei Zhiyong23ORCID

Affiliation:

1. China National Nuclear Power Co., Ltd., Shanghai 100045, China

2. Green & Smart River-Sea-Going Ship, Cruise and Yacht Research Center, Wuhan University of Technology, Wuhan 430063, China

3. Hubei Province Engineering Research Center on Green & Smart River-Sea-Going Ship, Wuhan 430063, China

Abstract

In this study, the finite element method combined with the model test method are used to investigate the ultimate strength of a target ship reactor hull structure under a pure bending load. Based on the distortion similarity theory and nonlinear similarity method, a scale model of the actual ship reactor hull structure is designed and the model collapse test is conducted. The ultimate bending moment obtained by the model test is transformed to the actual ship through the similarity transformation relationship and compared with the nonlinear finite element analysis result of the actual structure. The results are consistent with each other, which indicates that the collapse characteristics of the actual ship reactor hull structure can be better forecasted using the model test results when the test model is designed based on the nonlinear similarity method and distortion similarity theory.

Publisher

MDPI AG

Reference22 articles.

1. Wang, D. (2022). Study on Structural Strength Evaluation Method of Containment Compartment of Nuclear Powered Icebreaker. [Master’s Thesis, Dalian Maritime University]. (In Chinese).

2. Wang, Q. (2019). Study on the Physical and Mechanical Engineering Parameters of Sea Ice during Melt Season for Arctic Passage. [Ph.D. Thesis, Dalian University of Technology]. (In Chinese).

3. Prospects for the Development of Nuclear Powered Icebreakers;Wu;Energy Environ.,2019

4. Research on Conceptual Design of Nuclear-powered Icebreaker;Xu;Prog. Rep. China Nucl. Sci. Technol.,2009

5. Cheng, R. (2019). Research on Nonlinear Similarity Method under Torsion Moment for Hull Structure. [Master’s Thesis, Wuhan University of Technology]. (In Chinese).

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