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1.
The inhibition effect of heptafluoropropane (CF3CHFCF3) on methane explosions under different inhibitor concentrations in a closed vessel was studied. A high-speed camera and a pressure sensor were adopted respectively to record flame propagation characteristics and pressure data. Results indicate that the relationship between flame propagation and pressure rising was correlated. As the equivalent ratio (ϕ)≤1, the pressure presented a trend of rising firstly and then decreasing with increasing CF3CHFCF3 concentration, and it was found that there existed a critical concentration for pressure decrease. As ϕ > 1, the pressure exhibited a decreasing trend. Although the pressure appeared to seemingly increase, the moment that the pressure began to rise (trise) and the moment that the maximum explosion overpressure appeared (tPmax) were obviously delayed. The average rate of pressure rise ((dP/dt)ave) was decreased as the concentration of CF3CHFCF3 increased. It indicates that CF3CHFCF3 can effectively reduce the explosion reaction rate. The critical concentration of CF3CHFCF3 for complete inhibition was determined. Meanwhile, the synergy of CF3CHFCF3-inert gas can improve the inhibition effect. Compared with CF3CHFCF3–N2, the synergy of CF3CHFCF3–CO2 presented a better inhibition effect, and the inhibition effect was increased with increasing inert gas concentration. And the mechanisms of physical and chemical effects on explosion inhibition were analyzed.  相似文献   
2.
Large TNT equivalent explosions usually arise from accidents occurring during the transportation, storage, and manufacturing of chemicals relevant to process industries. The blast wave generated by the explosion will spread and interact with the surrounding factories and storehouses, damaging the building structures within several kilometers and causing significant casualties and property losses. This study aims to develop an efficient numerical simulation method to predict blast loads to estimate the consequences of accidents involving far-field free air bursts or surface burst explosions. Before its interaction with the interested target, a blast wave is generated in the numerical model by specifying the initial and boundary conditions of the disturbed air. Based on empirical data of incident overpressure, an explicit formula to calculate the air particle velocity is derived from the governing equations of a perfect inviscid gas. A simplified path line method is proposed to calculate the air density. The proposed method is applied to the LS-DYNA CESE solver to simulate the blast loads on building structures in the far field. Validations against empirical data and experiments indicate that the proposed method is sufficiently accurate for engineering applications and, through a case study, presents a more efficient performance than the LOAD_BLAST_ENHANCED (LBE) and mapping methods.  相似文献   
3.
To overcome the shortcomings of phosphorus-containing compounds (PCCs, not widely used) in fire suppression, the dry water powder containing phosphoric acid was analyzed for a new fire suppressant (SiO2-P). First, the fine conditions (solid-to-liquid ratio, stirring time and stirring speed) were determined to prepare the new powder. The particle size distributions and XPS of SiO2-P powder were analyzed. The TG tests were conducted to study the decomposition of powder, and there was a major decomposition peak. Second, the extinguishing time of SiO2-P powder was tested, which showed that the SiO2-P powder containing phosphorus species could significantly improve the fire suppression ability. In addition, the kinetic parameters of powder decomposition reaction were determined by genetic algorithm based on TG results. Last, based on the decomposition products and kinetic parameters, the burning velocity and mass fraction of free radicals of CH4/air flame with SiO2-P powder addition were studied theoretically. The results indicated that SiO2-P powder had great ability of reducing the burning velocity and scavenging free radicals. Furthermore, the suppression effects were analyzed, which indicated that the cooperation of H2O and P suppression effect dominated the suppression mechanism and resulted in the good suppression efficiency.  相似文献   
4.
运用有限元软件ABAQUS计算L形带肋钢管混凝土柱阴角相邻两面受火全过程下的耐火极限,分析了阴角邻面受火方式下构件内部温度场和应力场的变化规律,在此基础上分析荷载比、宽厚比、计算长度、加劲肋纵向间距、荷载偏心率、荷载角等参数对耐火极限的影响规律。数据表明:荷载比、计算长度对构件耐火极限影响较大,随着荷载比和计算长度的增大,耐火极限基本呈线性下降;加劲肋间距对构件耐火性能影响较小;由于L形柱的特殊形式,偏心荷载对耐火极限的影响规律较复杂,荷载作用点偏向低温区可以提高耐火极限。  相似文献   
5.
通过扫描电镜(FE-SEM)、能谱分析(EDX)、X射线衍射(XRD)、LMS-30激光粒度分析等室内试验探究了尾矿库内存在的酸、碱离子对尾矿颗粒的沉降、微观形貌、物质组成以及粒径级配的影响;建立酸、碱影响下的孔隙比与渗透系数的数学关系模型,并将建立的模型用来表征尾矿库内的应力渗-流场两场耦合机制,实现代入有限元计算软件的目的。结果表明:化学因素的存在影响着尾矿颗粒的多项性状,酸性环境下尾矿颗粒发生溶蚀,部分金属元素流失;碱性环境下尾矿颗粒间生成胶结物质,孔隙出现以含氢氧化铁为主的絮状、团簇状堵塞物,改变了渗流速度;尾矿库内浸润线高度在碱性、中性、酸性环境下依次降低,而渗流速度依次升高。  相似文献   
6.
为了分析2种灭火剂扑灭火旋风效果,采用实验室自制装置生成稳定的火旋风火焰,喷射CO2或ABC干粉灭火剂,获取火焰温度场及光电信号数据。研究结果表明:在CO2灭火剂或ABC干粉灭火剂作用下火旋风火焰温度场呈“下凹”型指数衰减;受灭火剂喷射位置影响,火焰根部、中部及顶端不同区域的灭火剂影响系数不同;基于火焰降温速率和光信号变化,相较于CO2灭火剂,对火焰起抑制作用的ABC干粉灭火剂降温效率更高、扑灭效果更好。  相似文献   
7.
为提高长大隧道施工及运营通风过程中竖井通风效率,实现隧道节能通风。依托实际隧道工程,基于Fluent软件,选用RNG k-ε湍流模型,对无竖井风塔、圆柱风塔、矩形风塔和凸台状风塔4种结构、不同环境风速工况下的流场进行数值模拟,并对模拟结果进行交叉比对分析,提出最优化的竖井风塔结构形式。研究结果表明:采用风塔结构竖井出流量要远大于无风塔结构竖井出流量;对于不同竖井风塔外型结构,竖井出流量与环境风速关系呈多项式函数;当倾斜角为45°、圆心角为90°时,凸台结构对应竖井出流量最大,且受环境风影响波动较小,通风稳定性较好。建议竖井出口结构选用矩形或凸台状,实现对环境风的高效利用,提高竖井通风效率。  相似文献   
8.
为研究负温对桩侧应力及桩间土拱效应的影响,通过FLAC3D软件模拟热力耦合作用下新型排桩冻结法中桩间土拱效应的变化及温度效应下的桩间距,并根据巴霍尔金单排管冻结稳态温度场解析解,建立冻结壁平均温度区域解。研究结果表明:桩土接触面的应力分量τxy近似线性变化,应力分量σx近似均匀分布,温度降低对应力分量τxy的分布影响较小,但对应力分量σx的影响较大;负温使桩间距发生变化,且整体平均应力的分布也更加均匀化;通过与巴霍尔金解析解对比,证明单排管冻结温度场模型的可行性,在此基础上建立的单排管冻结壁平均温度区域解,其与数值模拟结果相差不超过1 ℃,计算误差满足工程要求;随着冻结时间的增加,单排管冻结壁温度场呈抛物线形式降低。  相似文献   
9.
褚福友 《环境与发展》2020,(4):211-211,213
近年来,区块链技术快速发展,被广泛应用于多个领域,发挥了不错的成效,比如推动公共服务质量的提升。环保领域中,区块链技术的应用处于探索阶段,还面临着诸多挑战和困难需要加以克服。环保领域对区块链技术的需求很大,若能够切实发挥技术的优势,可有效推动环保事业的发展。现结合具体研究,作如下论述。  相似文献   
10.
通过对目前已出台油气田含油污泥处理相关标准的解析,针对标准之间存在着适用范围不一致、检测项目名称及限值不一致、检测方法不统一以及计算基础不统一等,造成油气田环保工作者和管理者认识上的混乱,对含油污泥处理技术的选用和治理市场的管理带来诸多问题。为加快促进油气田含油污泥处理减量化、资源化、无害化技术的发展,建议尽快出台有针对性、普适性强、统一的油气田含油污泥污染控制标准,确保含油污泥处理既科学合理,又经济可行;同时制定针对性强的含油污泥污染物检测方法,检测方法统一、计算公式一致,保证结果真实可靠,具有可比性。  相似文献   
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