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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.
丁蕾  蒋惠亮 《环境工程》2012,(Z2):289-292
为了研究废砂浆中碳化硅粉和硅粉的分离情况,选用混合模型对柱型水力旋流器多相流流场进行数值模拟。模拟结果表明:柱型水力旋流器的分离效率与入口速度、进口浓度等因素有关,并分析出一定条件下当主、次相的入口速度均为1.1m/s时颗粒分离效果较好,分离效率较高,实验检测分离性能较好,为进一步实验研究提供一定的指导。  相似文献   
5.
Dry deposition velocity of total suspended particles (TSP) is an effective parameter that describes the speed of atmospheric particulate matter deposit to the natural surface. It is also an important indicator to the capacity of atmosphere self-depuration. However, the spatial and temporal variations in dry deposition velocity of TSP at different urban landscapes and the relationship between dry deposition velocity and the meteorological parameters are subject to large uncertainties. We concurrently investigated this relationship at four different landscapes of Guangzhou, from October to December of 2009. The result of the average dry deposition velocity is (1.49 ± 0.77), (1.44 ± 0.77), (1.13 ± 0.53) and (1.82 ± 0.82) cm/sec for urban commercial landscape, urban forest landscape, urban residential landscape and country landscape, respectively. This spatial variation can be explained by the difference of both particle size composition of TSP and meteorological parameters of sampling sites. Dry deposition velocity of TSP has a positive correlation with wind speed, and a negative correlation with temperature and relative humidity. Wind speed is the strongest factor that affects the magnitude of TSP dry deposition velocity, and the temperature is another considerable strong meteorological factor.We also find out that the relative humidity brings less impact, especially during the dry season. It is thus implied that the current global warming and urban heat island effect may lead to correlative changes in TSP dry deposition velocity, especially in the urban areas.  相似文献   
6.
采用体积信息熵表征颗粒污泥系统稳定性及其稳定机制   总被引:1,自引:1,他引:0  
SBR反应器中培养自养硝化颗粒污泥,在絮体转化为颗粒过程中,颗粒的体积信息熵从2.05(27 d,初见颗粒)降低为1.85(95 d),熵值降低的主要动力来自于松散的絮体在较快沉速选择压条件下被淘洗出系统.当絮体被淘洗出系统即完成颗粒化过程,在129 d时测得系统中颗粒沉速分布的中位数为6.27 m.h-1,因此颗粒体积熵值的变化不再受沉速选择压(6m.h-1)的控制.颗粒的粒径、沉速及体积熵值分布均呈现周期性变化,其中信息熵的均值为2.16,最小值为1.79,最大值为2.63.在这种周期性变化过程中,系统总是表现为粒径均值先增大后减小.熵值的波动的驱动力来自于颗粒的破碎与破碎体的成长,体积分布信息熵的大小可以很好地表征系统的稳定性及其稳定机制.  相似文献   
7.
采用图像法和沉降柱法分别研究了A2/O工艺中好氧污泥絮体的形貌、粒度分布、低维分形维数和沉降速率、有效密度、空隙率以及质量分形维数,并尝试探讨了上述相关性质与这些污泥宏观操作性质(沉降、压缩、脱水和稳定性)相关的各种理化指标以及胞外高分子物质(EPS)的含量之间的变化关系.结果表明,污泥絮体呈现不规则的形貌,表面具有空隙.其有效密度一般随着其粒径的增加而降低,而空隙率和沉降速率却呈现与有效密度相反的变化趋势,这些均表明了污泥絮体的分形结构的存在.2次所采集的污泥絮体的中位直径分别为248.81、332.86μm,有效密度的平均值分别为0.0040、0.0072g·cm-3,自由沉降速率的平均值分别为2.67、4.79mm·s-1,空隙率的平均值分别为0.94、0.89,一维分形维数分别为1.03、1.19,二维分形维数分别为1.64、1.84,采用基于Logan经验公式的有效密度-最大直径的双对数关系确定的质量分形维数分别为1.74、2.29.尽管第2次所采集的污泥絮体较为密实,但其表面粗糙程度却比第1次的低.此外,研究中发现絮凝能力较高或负电荷较高的A2/O好氧污泥絮体具有高的SVI和ZSV值;分形维数较低...  相似文献   
8.
A2/O工艺中好氧污泥絮体的分形结构与理化特征分析   总被引:2,自引:2,他引:0  
采用图像法和沉降柱法分别研究了A2/O工艺中好氧污泥絮体的形貌、粒度分布、低维分形维数和沉降速率、有效密度、空隙率以及质量分形维数,并尝试探讨了上述相关性质与这些污泥宏观操作性质(沉降、压缩、脱水和稳定性)相关的各种理化指标以及胞外高分子物质(EPS)的含量之间的变化关系.结果表明,污泥絮体呈现不规则的形貌,表面具有空隙.其有效密度一般随着其粒径的增加而降低,而空隙率和沉降速率却呈现与有效密度相反的变化趋势,这些均表明了污泥絮体的分形结构的存在.2次所采集的污泥絮体的中位直径分别为248.81、 332.86 μm,有效密度的平均值分别为0.004 0、 0.007 2 g·cm-3,自由沉降速率的平均值分别为2.67、 4.79 mm·s-1,空隙率的平均值分别为0.94、 0.89,一维分形维数分别为1.03、 1.19,二维分形维数分别为1.64、 1.84,采用基于Logan经验公式的有效密度-最大直径的双对数关系确定的质量分形维数分别为1.74、 2.29.尽管第2次所采集的污泥絮体较为密实,但其表面粗糙程度却比第1次的低.此外,研究中发现絮凝能力较高或负电荷较高的A2/O好氧污泥絮体具有高的SVI和ZSV值;分形维数较低的污泥具有高的剪切敏感性和低絮体强度,相应的污泥稳定性低;EPS总量高的污泥脱水性能差,EPS中蛋白质含量高的污泥其表面电荷也较高.  相似文献   
9.
基于Fluent软件,采用雷诺应力(RSM)湍流模型对不同出口结构分离器内气相旋流流场进行了数值模拟。模拟结果表明:分离器出口角度Ф变化对流场的影响显著,出口直径H变化对流场的影响甚微;有出口装置分离器内的切向速度均有所增加,最大切向速度向轴心方向移动。  相似文献   
10.
藻类生长的水动力学因素影响与数值仿真   总被引:9,自引:4,他引:5  
王华  逄勇 《环境科学》2008,29(4):884-889
为了定量研究水动力条件对藻类生长影响,选择微囊藻进行了室内扰动实验.通过维持光照、温度、营养盐等生境因子的一致性,调整振荡器转速,研究了不同扰动强度对藻类生长规律的影响;提出了"水动力影响参数a"对藻类生长公式进行了修正,以内江为例建立了二维非稳态藻类生长模型.对不同方案下内江藻类暴发特征进行了预测分析.结果表明,水动力条件对藻类生长影响明显,低流速有利于藻类生长,而在静止与高流速条件下,藻类生长受到抑制;内江引航道节制闸关闭后,流速减缓,藻类易于暴发,可能发生水华的水域面积约2.5 km2,占总面积的36.8%;完全静止状态以及节制闸开启后内江水动力条件改善条件下,藻类暴发程度有所减小,可能发生水华面积分别为0.78 km2和0.18 km2.  相似文献   
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