具有连续幕墙的多层建筑新型通风系统的实验表征

IF 0.9 Q4 CONSTRUCTION & BUILDING TECHNOLOGY
A. Fascetti, Alessandro Palladino
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引用次数: 0

摘要

本文的目的是介绍对最近开发的消防系统(FPS)进行的实验活动的结果,该系统专门设计用于安装在典型的多层建筑的连续玻璃幕墙系统上。设计/方法/方法作者将首先根据现有的规范和标准,给出描述和预测火灾演变和闪络概率的相关参数的理论推导。然后,从温度场、热梯度和中性面位置三个方面给出两个全尺寸试验的结果。实验证据表明,所提出的系统如何能够显着降低受火灾影响的房间的内部温度,并通过增加中性平面的高度来实现更安全的疏散程序。新颖的窗框元素包括一个自动双会聚孔径系统,通过增加受火灾影响的房间的内部对流来诱导隔间内的通风。这样可以有效地分散热气体和烟雾,并大大提高居住者和消防操作员的安全性。然后将理论结果与实验证据进行比较,以在现有标准和设计程序的背景下评估拟议通风系统的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Experimental characterization of a novel ventilation system for multi-story buildings with continuous curtain walls
PurposeThe purpose of this paper is to present the results of an experimental campaign conducted on a recently developed fire protection system (FPS), specifically designed for installation on continuous glass curtain walls systems typical of multi-story buildings.Design/methodology/approachThe authors will first present the theoretical derivation of the relevant parameters to characterize and predict the fire evolution and probability of flashover, according to existing codes and standards. Then, the results of two full-scale tests will be presented in terms of temperature fields, thermal gradients and position of the neutral plane.FindingsThe experimental evidence shows how the proposed system is able to dramatically reduce internal temperatures in the rooms interested by the fire, also allowing for safer evacuation procedures by increasing the height of the neutral plane.Originality/valueThe novel window frame element comprises an automatic doubly convergent aperture system that induces ventilation in the compartment by increasing internal convection in the rooms subject to the fire. This allows for an efficient dispersion of hot gases and fumes and a drastic improvement in safety for both the occupants and firefighting operators. The theoretical results are then compared to the experimental evidence to evaluate the performance of the proposed ventilation system in the context of existing standards and design procedures.
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来源期刊
Journal of Structural Fire Engineering
Journal of Structural Fire Engineering CONSTRUCTION & BUILDING TECHNOLOGY-
CiteScore
2.20
自引率
10.00%
发文量
28
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