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Finite Element Modelling of Post-tensioned Timber Beams at Ambient and Fire Conditions

机译:环境和火灾条件下张紧木材梁的有限元建模

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摘要

An increased environmental conscientiousness in society and the abundance of timber in Canada has inevitably led to the desire for more timber construction. In order to increase the opportunity for timber products in construction, novel building systems such as post-tensioned (PT) timber have been developed. Limited development on numerical modelling has been done on PT timber systems for the optimization of design for fire performance. In industry, there is need for a modelling software capable of approximating complex timber system behaviours that is accessible to practitioners. This research program serves to evaluate the current capabilities or shortcomings of modelling PT timber in both ambient and fire conditions, and to develop a methodology for analyzing the performance of the system. Several numerical models of PT timber beam tests are developed and validated using general purpose FEM software ABAQUS. This software is a good research tool and the lessons learned may be used to refine an accessible model for practitioners. Various material definitions are compared including isotropic and orthotropic models. The numerical models show highly promising results for demonstrating the loading and failure behaviour of PT timber beams. Material property directionality is paramount, captured best with the use of Hill's Potential Function for non-elastic behaviour. Ambient beam tests are modelled with accurately demonstrated load-deflection behaviour and peak loads are computed to within 5% of experimentally recorded values. For PT timber beam standard fire furnace tests, beam failure times are modelled within 3 min of experimental beam failure times for various fire exposure durations (about 5%), and load-deflection behaviour and failure mechanisms are accurately demonstrated. Thermal gradients align with the recorded thermocouple readings and char depths are computed within 4 mm of the observed layers.
机译:加拿大的环境良心和加拿大的木材丰富的环境不可避免地导致了更多的木材建设。为了增加施工中木材产品的机会,已经开发了新颖的建筑系统,如后张力(PT)木材。在PT木材系统上完成了数值建模的有限发展,用于优化防火性能设计。在工业中,需要一种建模软件,其能够近似从业者访问的复杂木材系统行为。该研究计划用于评估在环境和火灾条件下建模PT木材的当前能力或缺点,并开发一种分析系统性能的方法。使用通用FEM软件ABAQUS开发并验证了几种数值模型。该软件是一个很好的研究工具,所吸取的经验教训可用于改进从业者的可访问模型。将各种材料定义进行比较,包括各向同性和正交模型。数值模型显示出高度有希望的结果,用于说明PT木梁的装载和失效行为。物质性质方向性至关重要,利用Hill的潜在功能来捕获非弹性行为。环境束测试用精确显示的负载偏转行为建模,并且将峰值负载计算到实验记录值的5%内。对于PT木梁标准消防炉测试,梁故障时间在3分钟内建模的实验梁故障时间为各种火灾曝光持续时间(约5%),并且准确地证明了负载偏转行为和失效机制。热梯度与记录的热电偶读数和Char深度对齐,在观察层的4毫米内计算。

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