Fragility Analysis of the Main Building–Coal Conveyor Trestle Interaction System of a Thermal Power Plant

Author:

Hu Yang12,Bai Wen1,Dai Junwu1,Li Qingwen2

Affiliation:

1. Key Laboratory of Earthquake Engineering and Engineering Vibration, Institute of Earthquake Mechanics, China Earthquake Administration, Harbin 150080, China

2. China Energy Engineering Group Liaoning Electric Power Survey & Design Co., Ltd., Shenyang 110170, China

Abstract

Thermal power plants play a crucial role in the power system as critical lifeline infrastructure. In order to meet the production process requirements, the main building of a thermal power plant is often connected to a coal conveyor trestle. This study focuses on investigating the seismic interaction between the common three-row reinforced concrete frame-bent main building and the steel trestle in a circulating fluidized bed (CFB) unit. The objective is to assess the influence of the trestle on the main building and understand the failure mode of the trestle structure. The seismic interaction is analyzed through fragility analysis based on Incremental Dynamic Analysis (IDA). The results indicate that the trestle has minimal influence on the main building, except during the large deformation stage. The study identifies the failure mode of the coal conveyor trestle as excessive relative displacement along the longitudinal direction at the connection points, leading to collisions or falls. A seismic demand model based on longitudinal relative displacement is developed to obtain the fragility curve for the trestle structure. These findings offer valuable insights for assessing the seismic performance of thermal power plants.

Funder

Yunnan Provincial and Municipal Integration Project

National Natural Science Foundation of China

Publisher

MDPI AG

Subject

Building and Construction,Civil and Structural Engineering,Architecture

Reference20 articles.

1. The Effect of Roof Systems on Seismic Performance of Reinforced Concrete Frame-Bent Main Building of Large-Scale Thermal Power Plant: Seismic Performance for RC frame-bent main building;Chen;Struct. Des. Tall Spec. Build.,2015

2. Design Management Bureau of Ministry of Coal Industry (1980). Selection of Special Summary of the Design Battle for Restoring Kailuan Coal Mine II-Earthquake Damage of Buildings and Structures, Design Management Bureau of Ministry of Coal Industry.

3. Liu, H.X. (1986). Damage of Tangshan Earthquake, Volume II, Seismological Press.

4. Wei, L., and Xie, J.F. (1989). The Forty Years’ Seismic Research of China Engineering 1949–1989, Seismological Press.

5. (2008). Standard for Classification of Seismic Protection of Building Constructions (Standard No. GB50223-2008).

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