Fire‐Induced Collapse of Automated Rack‐Supported Warehouses

Author:

Mei Alessandro1,Orlando Maurizio1,Salvatori Luca1,Thiele Klaus2

Affiliation:

1. University of Florence Florence Italy

2. TU‐Braunschweig Braunschweig Germany

Abstract

AbstractAutomated self‐supporting rack warehouses are becoming increasingly common in the international logistics sector. Their static and seismic design has been studied in the literature; however, the fire design still needs to be improved. Some Standards, such as the Eurocodes or Italian Fire Code, accept the collapse of rack warehouses during fires but require avoiding a progressive collapse or obtaining an implosive collapse regardless of any other active or passive fire protection systems. A hierarchy that guides the kinematics of collapse needs to be defined appropriately but without any Code going into further details. Moreover, the scientific literature focuses more on optimizing fire protection systems for racks, such as sprinklers, rather than preventing fire‐induced progressive collapse. Here, a case study is presented, which, using finite element modelling, provide a first robustness evaluation and highlights some possible aspects to be considered in the structural design to avoid a progressive collapse in the event of a fire. The analyses are performed using the LOCAFI method for localized fires and nonlinear dynamic finite element simulations.

Publisher

Wiley

Subject

General Earth and Planetary Sciences,General Environmental Science

Reference23 articles.

1. EN1993‐1‐1 “Eurocode 3 Design of Steel Structures ‐ Part 1‐1: General rules and rules for buildings ”2005.

2. EN1998‐1‐1 “Eurocode 8 Design of Structures for earthquake resistance ‐ Part 1: General rules seismic actions and rules for buildings ”2004.

3. CEN European Committee for Standardization “EN 16681 Steel static storage systems ‐ Adjustable pallet racking systems ‐ Principles for seismic design ”2016.

4. CEN European Committee for Standardization “EN 15512 Steel Static Storage Systems ‐ Adjustable Pallet Racking Systems ‐ Principles for Structural Design ”2009.

5. Experimental, numerical, and regulatory P-M-M domains for cold-formed perforated steel uprights of pallet-racks

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