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Clearance Between Single-Story Steel Frames and Firewalls

机译:单层钢框架和防火墙之间的间隙

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摘要

A simple formula is developed to estimate the separation distance required between single-story steel frames and firewalls so that during an uncontrolled fire the frame can expand without contacting and damaging the wall. Detailed analysis shows that the frames reach their maximum lateral displacement at the birth of plastic hinges in the girders. The hinges allow the girders to sag excessively, pulling inward on the columns and causing the frame to collapse away from firewalls. The simple method presented uses the frame geometry, member cross sections, loads, and the temperature-dependent steel properties to predict the steel temperature at which the plastic hinges form. The formula uses this temperature and the equilibrium of the deformed frame to calculate the minimum acceptable clearance. The fire is assumed stationary and fully developed. The exposed portions of the structure are assumed totally enveloped by the hot gas. The method includes the column resistance to thermal expansion and the plastic deformations that originate from the second-order effects due to the axial loads in columns acting on the deformed frame. The approach lends itself to spreadsheet calculations for fast design decisions and is accurate, which is demonstrated by good agreement with experimentally validated finite element results.
机译:开发了一个简单的公式来估算单层钢框架和防火墙之间所需的分隔距离,以便在不受控制的火灾期间,框架可以扩展而不会接触和损坏墙壁。详细分析表明,在大梁中的塑料铰链诞生时,框架达到最大横向位移。铰链使大梁过分下垂,向内拉动立柱,并使框架从防火墙上塌下来。提出的简单方法使用框架的几何形状,构件横截面,载荷以及与温度相关的钢属性来预测塑料铰链形成时的钢温度。该公式使用该温度和变形框架的平衡来计算最小可接受间隙。假定这场大火是平稳的,并且已经完全燃烧。假定结构的裸露部分完全被热气体包围。该方法包括柱子的抗热膨胀性和塑性变形,这些变形是由于作用在变形框架上的柱子中的轴向载荷而引起的二次效应所致。该方法适用于快速设计决策的电子表格计算,并且非常精确,这与通过实验验证的有限元结果具有很好的一致性。

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