Fluid-Solid-Thermal Coupled Freezing Modeling Test of Soil under the Low-Temperature Condition of LNG Storage Tank

Author:

Jin Guolong12ORCID,Xie Xiongyao1,Li Pan1,Li Hongqiao2,Zhao Mingrui3,Zou Meitao1

Affiliation:

1. Department of Geotechnical Engineering, College of Civil Engineering, Tongji University, Shanghai 200092, China

2. China Shipbuilding NDRI Engineering Co., Ltd., Shanghai 200090, China

3. CNOOC Gas and Power Group, Beijing 100010, China

Abstract

Due to the extensive utilization of liquid nature gas (abbreviated as LNG) resources and a multitude of considerations, LNG storage tanks are gradually transitioning towards smaller footprints and heightened safety standards. Consequently, underground LNG storage tanks are being designed and constructed. However, underground LNG storage tanks release a considerable quantity of cold into the ground under both accidental and normal conditions. The influence of cold results in the ground freezing, which further compromises the safety of the structure. Existing research has neglected to consider the effects of this. This oversight could potentially lead to serious safety accidents. In this work, a complete set of experiments using a novel LNG underground storage tank fluid-solid-thermal coupled cryogenic leakage scale model were conducted for the first time to simulate the effect of the tank on the soil temperature field, stress field, and displacement field and to analyze the development of the three fields and the results of the effect. This research helps the related personnel to better design, construct, and evaluate the LNG underground storage tanks to avoid the catastrophic engineering risks associated with cryogenic leakage and helps to improve the design process of LNG underground storage tanks.

Funder

National Key R&D Program of China

National Natural Science Foundation of China

Science and Technology Innovation Plan of Shanghai Science and Technology Commission

State Grid Shanghai Municipal Electric Power Company

Publisher

MDPI AG

Reference33 articles.

1. Sotoodeh, K. (2022). Chapter Two—LNG technology. Cryogenic Valves for Liquefied Natural Gas Plants, Gulf Professional Publishing.

2. A multi-zone thermodynamic model for predicting LNG ageing in Large cryogenic tanks;Chen;Energy,2023

3. Natural gas will enter a golden age of development;Zheng;Refin. Technol. Eng.,2015

4. LNG cold energy utilization: Prospects and challenges;He;Energy,2019

5. IEA (2023). World Energy Outlook 2023, IEA. Available online: https://www.iea.org/reports/world-energy-outlook-2023.

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