首页> 外文学位 >Numerical studies of fire and sprinkler induced air flows in atria.
【24h】

Numerical studies of fire and sprinkler induced air flows in atria.

机译:火灾和喷头诱导的气流在心房中的数值研究。

获取原文
获取原文并翻译 | 示例

摘要

The objective of this thesis is to study the interaction between sprinkler water spray and fire-induced air flow in atria with the application of Computational Fluid Dynamics (CFD). This involves numerical simulations on the two-phase, three-dimensional, compressible, turbulent flow. The studies can be divided into two sections: studies on the liquid phase (sprinkler water spray) and studies on the gaseous phase (smoke generated by atrium fire).; For the sprinkler system, the sprinkler water spray is considered as a group of water droplets with variable values of initial diameter and velocity component. It is very important to understand the properties of sprinkler water spray, which include water droplet size distribution and trajectory of water droplets. A new droplet size distribution functions for water spray, known as Chow-Yin distribution function, is proposed to describe the droplet size distribution. It is derived from earlier expressions obtained from information theory. The parameters concerned can be measured more easily. Results predicted using the new function are compared with experimental data and fairly good agreement is found.; The trajectories of water droplets discharged from an atrium sprinkler head are studied by solving the equation of motion, with the velocity components of droplets expressed in analytical form. With the Chow-Yin droplet distribution function, the shape of the sprinkler water sprays is calculated. The result is useful in studying the interaction between sprinkler and fire-induced air flow. Furthermore another important parameter—water volume density rate was determined with the volume of water received at the floor level being calculated.; For the gaseous phase, fire field model/CFD is applied to study the fire-induced air flow in atrium. The self-developed software CY-TEAM and the commercial software CFX4 are selected to carry out the studies in this thesis.; Among the field models, the two-equation k-ϵ turbulence model is widely used and is applied here for its robustness and simplicity. Tuning the parameters concerned would give better results. In this thesis, the diffusion coefficient and Prandt number of k-ϵ turbulence model are tuned. Numerical results are compared with the experimental data reported in the literature. Plume expressions proposed in the literature are assessed and it is confirmed that the plumic expressions are good enough for use as design equations.; Applying fire field modeling in simulating: fire-induced air flow in atria would require specification of free boundary conditions. Improper description of the free boundary conditions would give very different results. Three free boundary conditions commonly used are tested. Results predicted from all these different geometry, conditions and software are compared. It is concluded that free boundary condition should be specified carefully in simulating fire-induced air flow with CFD.; With the application of CFD, testing is done on scaling laws for compartment fires. Scale modeling studies are useful in understanding the smoke movement pattern, but scaling parameters have to be selected carefully. Two sets of scaling parameters on temperature and air speed proposed in the literature are evaluated by CY-TEAM. The predicted results are applied to criticize these two sets of scaling parameters.; With sprinklers commonly installed in the high headroom atrium of a building, it is doubtful whether those sprinkler heads can be activated in case of fire. The actuation time of sprinkler heads located at the atrium ceiling is estimated by a fire field model. Comparison with some experiments reported in the literature is made. Satisfactory agreement between the predicted and measured results is found.; Finally, numerical studies on the atrium fire environment with the sprinkler-water spray interaction are carried out by using CFX. Models for both steady state and time-dependent situations are developed. Results
机译:本文的目的是利用计算流体力学(CFD)研究喷水喷头与火灾引起的心房气流的相互作用。这涉及到对两相,三维,可压缩湍流的数值模拟。研究可分为两部分:液相研究(洒水喷水)和气相研究(中庭火灾产生的烟)。对于洒水系统,洒水喷水被视为一组水滴,其初始直径和速度分量的值可变。了解洒水喷头的特性(包括水滴尺寸分布和水滴轨迹)非常重要。提出了一种新的用于水喷雾的液滴尺寸分布函数,称为周阴分布函数,以描述液滴尺寸分布。它源自从信息论获得的较早的表达式。有关的参数可以更容易地测量。将使用新功能预测的结果与实验数据进行比较,并找到了很好的一致性。通过求解运动方程来研究从中庭喷头喷出的水滴的轨迹,并以解析形式表示水滴的速度分量。利用周阴液滴分布功能,可以计算出洒水喷头的形状。该结果对于研究洒水喷头与火灾引起的气流之间的相互作用非常有用。此外,另一个重要参数是:确定水的体积密度,并计算地板水位的接收水量。对于气相,应用火场模型/ CFD来研究由火引起的中庭气流。本文选择了自行开发的软件CY-TEAM和商业软件CFX4进行研究。在现场模型中,二等式k-ϵ湍流模型由于其健壮性和简单性而被广泛使用和应用。调整相关参数将获得更好的结果。本文研究了k-ε的扩散系数和普朗特数。湍流模型已调整。将数值结果与文献中报道的实验数据进行比较。评估了文献中提出的羽状表达式,并证实了该羽状表达式足以用作设计方程。在模拟中应用火场建模:火在心房中引起的气流将需要自由边界条件的规范。自由边界条件的不正确描述将给出截然不同的结果。测试了三个常用的自由边界条件。比较了所有这些不同的几何形状,条件和软件所预测的结果。结论是,在使用CFD模拟火灾引起的气流时,应仔细指定自由边界条件。随着CFD的应用,将根据舱室火灾的定标规律进行测试。比例模型研究对于理解烟雾运动模式很有用,但是必须仔细选择比例参数。 CY-TEAM评估了文献中提出的两组关于温度和空气速度的缩放参数。将预测结果用于批判这两套缩放参数。由于喷水器通常安装在建筑物的高净空中庭,因此在发生火灾时是否可以激活这些喷水器头令人怀疑。通过火场模型估算位于中庭天花板上的洒水喷头的启动时间。与文献中报道的一些实验进行了比较。在预测结果和测量结果之间找到令人满意的一致性。最后,利用CFX对中庭火灾环境与洒水-水喷雾的相互作用进行了数值研究。开发了稳态和时间相关情况的模型。结果

著录项

  • 作者

    Rumin, Yin.;

  • 作者单位

    Hong Kong Polytechnic (People's Republic of China).;

  • 授予单位 Hong Kong Polytechnic (People's Republic of China).;
  • 学科 Engineering Mechanical.; Engineering Civil.
  • 学位 Ph.D.
  • 年度 2001
  • 页码 373 p.
  • 总页数 373
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 机械、仪表工业;建筑科学;
  • 关键词

  • 入库时间 2022-08-17 11:46:54

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号