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1.
城区天然气管道泄漏数值模拟与爆炸危害分析   总被引:1,自引:0,他引:1  
在人口密度为三级和四级的城区内,密集的高建筑物对天然气管道泄漏后的扩散和流场形成产生重要影响。本文以某城市的实际情况为例,建立多建筑物的空间几何模型,采用k-ε湍流方程,SIMPLE算法,模拟了在三种不同风流速度、三种不同压力条件下,城区天然气管道泄漏气体在多建筑物地形中的扩散情况。根据模拟结果,依据天然气的爆炸极限,对模拟结果及其火灾爆炸危害的范围进行了对比分析。结果表明,CH4气体的泄漏扩散同时受管道压力、风流速度和周围建筑物的影响;同时受当地风速的影响,泄漏气柱在风流作用下会发生偏折,造成阻挡风流的建筑物内侧危险气体浓度升高,大大增加建筑物周围环境的危险性。研究结果对城区天然气管道的建设具有一定的指导意义。  相似文献   

2.
为评估城市天然气管道泄漏连锁爆燃事故后果,基于计算流体力学(CFD)方法构建穿越城市区域的天然气管道泄漏连锁爆燃后果预测与评估模型,以某城市生活区域为例,在城市生活区域建筑物内风场流动计算的基础上,模拟风场作用下可燃气体在城市建筑物空间内的运移规律,预测可燃气云的积聚区域;考虑意外点火的情况,计算城市生活区域内可燃气云爆燃灾害特征,预测爆燃超压、热辐射和高温的影响。研究结果表明:由于建筑物之间的阻挡与反射作用,建筑物下风向有明显的低风速区域,并在一定时间段后扩散过程趋于稳定;在爆燃火焰作用下,高温和热辐射会造成建筑物部分钢结构发生失效变形。  相似文献   

3.
重烟羽扩散的风洞模拟实验研究   总被引:13,自引:7,他引:6  
介绍利用风洞研究重气烟羽扩散特征以及围墙和树对其影响.实验使用的源是地面上的圆形面源.通过实验,提出了基于"变形源"假设的重气烟羽扩散物理过程;发现围墙在低Froude数下对重气烟羽有阻挡作用,而树对重气没有阻挡作用,但对"变形源"的形状有影响;从对危险气体的防护角度看,对测量范围的围墙外,围墙的防护效果明显,而围墙外加树与否影响不大.  相似文献   

4.
高压管道天然气泄漏扩散过程的数值模拟   总被引:5,自引:2,他引:3  
采用CFD模型的方法对高压管道内的天然气泄漏和扩散过程进行了数值模拟。其结果表明,从高压管道泄出的天然气在大气中主要表现为高速射流的泄漏过程和随后的扩散过程。在泄漏过程中,天然气在泄漏口附近为欠膨胀射流,整个泄漏过程具有一定的高度;在扩散过程中,天然气在浮力作用下以向上扩散的形式发展。研究了不同环境风速对扩散过程的影响,较大的风速可以使天然气向下风方向更远的距离扩散,从而增大了天然气爆炸危险浓度的范围。研究结果可  相似文献   

5.
Computational fluid dynamics (CFD) simulations have been conducted for dense gas dispersion of liquefied natural gas (LNG). The simulations have taken into account the effects of gravity, time-dependent downwind and crosswind dispersion, and terrain. Experimental data from the Burro series field tests, and results from integral model (DEGADIS) have been used to assess the validity of simulation results, which were found to compare better with experimental data than the commonly used integral model DEGADIS. The average relative error in maximum downwind gas concentration between CFD predictions and experimental data was 19.62%.The validated CFD model was then used to perform risk assessment for most-likely-spill scenario at LNG stations as described in the standard of NFPA 59A (2009) “Standard for the Production, Storage and Handling of Liquefied Natural Gas”. Simulations were conducted to calculate the gas dispersion behaviour in the presence of obstacles (dikes walls). Interestingly for spill at a higher elevation, e.g., tank top, the effect of impounding dikes on the affected area was minimal. However, the impoundment zone did affect the wind velocity field in general, and generated a swirl inside it, which then played an important function in confining the dispersion cloud inside the dike. For most cases, almost 75% of the dispersed vapour was retained inside the impoundment zone. The finding and analysis presented here will provide an important tool for designing LNG plant layout and site selection.  相似文献   

6.
含硫天然气泄漏扩散是一个非常复杂的扩散过程,它受复杂地形空间、不同风向、风速等各种条件的影响。为此,采用可行的计算流体动力学(CFD)对这一过程进行了三维数值模拟,根据龙岗001-81井含硫天然气泄漏扩散事故现场,利用ArcGIS软件提取该井周围2 500 m范围内的地形数据建立计算域物理模型,模拟了在多种工况下(不同地形、风向、风速)含硫天然气的扩散规律,对扩散结果进行规律性总结。  相似文献   

7.
This paper presents a risk assessment methodology for high-pressure CO2 pipelines developed at the Health and Safety Laboratory as part of the EU FP7 project CO2Pipehaz.Traditionally, consequence modelling of dense gas releases from pipelines at major hazard impact levels is performed using integral models with limited or no consideration being given to weather bias or topographical features of the surrounding terrain. Whilst dispersion modelling of CO2 releases from pipelines using three-dimensional CFD models may provide higher levels of confidence in the predicted behaviour of the cloud, the use of such models is resource-intensive and usually impracticable. An alternative is to use more computationally efficient shallow layer or Lagrangian dispersion models that are able to account for the effects of topography whilst generating results within a reasonably short time frame.In the present work, the proposed risk assessment methodology for CO2 pipelines is demonstrated using a shallow-layer dispersion model to generate contours from a sequence of release points along the pipeline. The simulations use realistic terrain taken from UK topographical data. Individual and societal risk levels in the vicinity of the pipeline are calculated using the Health and Safety Laboratory's risk assessment tool QuickRisk.Currently, the source term for a CO2 release is not well understood because of its complex thermodynamic properties and its tendency to form solid particles under specific pressure and temperature conditions. This is a key knowledge gap and any subsequent dispersion modelling, particularly when including topography, may be affected by the accuracy of the source term.  相似文献   

8.
Dispersion of several common `heavy' gases (ethylene, propylene, ammonia, and chlorine) has been modelled on the basis of modifications in plume path theory. The model takes into account, among other things, the variations in temperature, density, and specific heat during the movement of the heavy gas plume. The effects of wind speed, density of the gas, and venting speed on the plume dispersion have been simulated. Based on the simulations a set of empirical equations has been developed. The equations have been validated by theoretical as well as experimental studies.Studies have also been carried out to simulate the effect of venting speed (manipulated by injecting hot air with the released gas) on the plume dispersion. The study reveals that the effect of venting speed on dispersion is very pronounced and can be used to reduce the risk posed by the accidental luxurious release of toxic/flammable gases. For example an increase of 20% in venting speed of chlorine (54.1 m/s) can reduce the distance up to which toxic concentration would occur by about 1100 meters.  相似文献   

9.
10.
以风洞模拟方式研究中性层结条件下南山铁矿凹山采场地域边界层风场特征,并以示踪气体扩散摸拟方法给出该地域大气扩散参数的实验结果。  相似文献   

11.
合理长度的挡风帘可以有效减少工作面漏风量,避免瓦斯超限、爆炸等事故发生,保证工作面安全生产。模拟了有无挡风帘时和不同挡风帘长度时“U+L”型通风综采面采空区流场、瓦斯分布及上隅角等地瓦斯情况,验证了数学模型和参数的适用性,分析了挡风帘对采空区压力分布及瓦斯分布的影响,确定了“U+L”型通风综采面合理挡风帘长度。研究表明:挡风帘对采空区压力及瓦斯分布都有重要影响,挡风帘可以使采空区内特别是挡风帘遮挡区域采空区压力下降、瓦斯浓度升高; 随着挡风帘长度的增加,上隅角瓦斯浓度变化不大,采煤机机尾瓦斯浓度逐渐降低,滞后横川瓦斯浓度呈增大趋势;综合分析确定该采面合理挡风帘长度为120 m。  相似文献   

12.
采用大气边界层模式和随机游动扩散模式相连接的模拟方法,对上海市拟建的交通隧道排气口附近街道建筑物区域的气流分布和废气排放物浓度场进行了数值模拟分析,设计了6种方案,并按不同的废气排放形式,分别分析了街区的地面污染物质量浓度分布.结果表明,在建筑物存在的情况下,排风口造成的地面污染物质量浓度的最高值会很大,可达0.44 mg/m3,若换成排风塔,则为0.13 mg/m3; 没有建筑物的情况下,由排风口和排风塔造成的地面污染物最高质量浓度分别为0.11 mg/m3,0.4 mg/m3.当风速增大,质量浓度会降低,最大值分别从0.44 mg/m3降为0.2 mg/m3,和从0.13 mg/m3降为0.1mg/m3.分析表明,建筑物附近的气流特征对污染物扩散会起引导作用: 垂直方向上,导致污染物从高空被带入地面; 水平方向上,使得污染物在下风向堆积; 当风速增大时,地面污染物质量浓度值降低.同时研究表明,对排风塔污染物散布起主要作用的是水平方向的气流结构,而对排风口的污染物散布起主要作用的则是其附近建筑物的背风侧的气流下洗效应和水平流场,因此建筑物背风侧有可能成为重污染区.  相似文献   

13.
架空天然气管道泄漏事故后果数值模拟研究   总被引:1,自引:1,他引:0  
针对架空天然气管道泄漏引起的火灾爆炸问题,采用事件树分析泄漏扩散引起的事故后果,并在数值模拟中着重分析了模拟数学模型的选择。在三种不同泄漏孔径、两种不同风速、两种不同运行压力条件下分别应用ALHOA软件对事故后果进行数值模拟,结果表明:泄漏孔径、运行压力与危害影响范围成正比关系;在闪火和蒸气云爆炸中,风速与危害影响范围成反比关系,而风速对射流火灾的热辐射范围基本没有影响。  相似文献   

14.
城市天然气管道泄漏数值模拟   总被引:2,自引:0,他引:2  
针对城市天然气管道和城市周围环境的特点,进行了城市管道天然气泄漏事故动态数值模拟,得到了天然气泄漏5,10,15,20 s时甲烷浓度分布图和安全区域图,结果显示城市天然气管道泄漏的规律不同于在平坦地势的泄漏规律,模拟结果可以为城市管道设计和事故求援提供指导依据。  相似文献   

15.
The present study examined the accidental spill of ethylene oxide, and a sensitivity analysis of the corresponding consequences was conducted using computational fluid dynamics (CFD). A validation of the gas dispersion CFD model against the experimental data sets included in the model evaluation protocol (MEP) was performed. The effect of the variability of the wind velocity on the extension of the hazardous areas and pool evaporation characteristics was evaluated. Additionally, the mitigation effects of the dike walls surrounding a spill were discussed. CFD simulation results have shown that the mitigation effect of dike walls is determined by their influence on both gas dispersion and pool evaporation and depends strongly on wind velocity in terms of toxic impact distances.  相似文献   

16.
黄斌  舒雅  姚斌 《火灾科学》2016,25(3):140-147
"Z型"中庭自然排烟设计已经在部分高层建筑中实际运用。然而,现有规范对此类设计方法无具体指导性消防安全要求,同时缺乏相关研究。通过在海南某高层建筑中开展全尺寸火灾实验,选取中庭和办公室不同火灾区域和规模,在不同外界风向和风速下,通过监测有毒气体浓度、烟气温度和能见度以及烟气层厚度等参数,研究超过12m的"Z型"高大中庭烟气流动特性及自然排烟效果,并分析其对中庭和人员安全性的影响。研究结果表明:该建筑采用"Z型"中庭能够有效排出烟气,自然排烟设计合理。所得结论可为消防部门审核该项目提供参考,也为类似高大中庭自然排烟设计提供科学依据。  相似文献   

17.
Toxic gas leakage in a tank area can have catastrophic consequences. Storage tank leakage location (particularly for high leakage) and downwind storage tanks potentially influence gas diffusion in tank areas. In this study, we developed a numerical and experimental method to investigate the impact of a high leakage location and downwind storage tank on gas diffusion based on three (1.05H, 0.90H, and 0.77H, H was the tank height, 22m) leakage field experiments on the leeward side of storage tank, which have been not conducted before. The experiments revealed an unexpected phenomenon: the maximum ground concentration first decreased and then increased with increasing leakage height. The simulations illustrated that the differences in micrometeorological conditions caused the maximum ground concentration of gas emitted from the roof to be higher than that emitted from the tank wall near the storage tank height. The downwind storage tank 1) had little influence on the entire diffusion direction but altered the local diffusion pattern; 2) reduced the maximum ground concentration (∼18.7%) and the distance from the emission source (approximately a storage tank diameter); and 3) had strong influences on the concentration, velocity, turbulence, and pressure on the leeward side. The concentration negatively correlated with the velocity, pressure, and turbulence in the middle of the two storage tanks on wind centerline. Our results can improve understanding of gas dispersion in tank areas and provide references for mitigating loss and protecting lives during emergency response processes.  相似文献   

18.
为研究环境风速对液化天然气(LNG)泄漏扩散过程的影响,采用Fluent建立LNG连续泄漏计算流体力学模型,开展不同风速下LNG泄漏扩散过程的数值模拟研究。结果表明,LNG泄漏扩散分为扩散初期、扩散中期、扩散后期3个阶段,扩散过程中LNG从低温重气逐渐转变成轻质气体。环境风速对气云的扩散主要体现在:低于5级风时,云团以两侧卷吸为主,气云表现为"叶状分叉"、中间低两端高,此时气云横风向扩散较快,甲烷扩散距离与冻伤距离随风速增大而增大;而高于5级风时,云团以顶部卷吸为主,气云表现为云团坍塌、中间高两端低,此时气云垂直风向扩散较快,甲烷扩散距离与冻伤距离随风速增大而减小。初步建立了LNG蒸气云爆炸风险范围与冻伤区域和泄漏时间、环境风速的函数关系,可为爆炸风险区域和低温冻伤区域的预测提供理论支撑。  相似文献   

19.
重气连续泄漏扩散的风洞模拟实验与数值模拟结果对比分析   总被引:12,自引:2,他引:12  
将重气连续泄漏的风洞模拟实验结果与SLAB重气扩散模型的预测结果进行了对比 ,分析了实验结果与模型预测结果的一致性 ,剖析了重气连续扩散的特点 ,特别是风速对重气连续泄漏扩散的影响 ,提出了在风洞模拟实验及扩散模型方面下一步应做的工作  相似文献   

20.
Having a risk analysis of harmful releases over mountainous terrains through wind tunnel experiment is a frontier problem in China. In this paper, a straight-flow wind tunnel is applied to simulate the atmospheric boundary layer and research the motion of high-sulfur gas released to atmosphere when accidental releases occur in a gathering station over the mountainous terrain. After an analysis of hourly concentration in the field accident for eight wind directions, experimental results reveal that nearby concentration fields are dominated by wind and far-field concentration distribution is dominated by topography, which leads to complete levels of consequence impact for the personnel risk inside and around the gathering station. Based on CFD techniques, a three-dimensional modelling was established in comparison with the wind tunnel experiment, which suggests that CFD prediction had underestimated the near-field gas concentration and the performance could not precisely match actual risks the gathering station causes to the mountainous terrain, which leads to a modified equation for numerical prediction. Instead of proposing a lower personnel risk evaluation obtained through the use of CFD techniques, the wind tunnel experiment offers a new choice for the consequence impact analysis for the petrochemical industry in China.  相似文献   

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