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281.
This study investigates the impact of radiation heat transfer and heat conduction on dust cloud combustion. Radiation plays a very important role in the stability of dust cloud flame, and increasing the amount of radiation drastically raises the possibility of instability and explosion in a dust cloud mixture. Flame speed, which is a function of mixture characteristics, can exhibit a fluctuating behavior. By using the discrete heat source method, it would be possible to study the transient propagation of dust flames. Thus, the propagation speed of flame can be obtained, and as time goes by, the transient speed of dust flame will reach its steady state value. By considering the radiation effect, better agreement is observed between the obtained results and experimental data.  相似文献   
282.
The production and application of organophosphate esters (OPEs) have dramatically increased in recent years due to their use as a replacement for brominated flame retardants. In this study, 13 OPEs (Σ13OPEs) were analyzed in indoor air samples from kitchens and living rooms in 14 residential homes in Beijing, China. The concentrations of Σ13OPEs in kitchen air samples (mean: 13 ng/m3) were significantly (p < 0.05) higher than in living room air samples (5.0 ng/m3). In addition, paired window surface organic film samples were collected and analyzed to investigate film-air partitioning, exhibiting a mean concentration of Σ13OPEs of 4100 ng/m2. The congener profiles showed that tris(2-chloroisopropyl) phosphate (TCPP) was the predominant compound in both window film samples (48%) and the corresponding indoor air sample (56%). The estimated daily intakes (EDI) of OPEs via indoor air inhalation were 2.8 and 1.4 ng/kg/day for infants and adults, respectively, both of which are below the reference dose values (RfDs). Overall, these findings indicate that OPEs in the indoor air environment of residential homes in Beijing are not likely to pose a health risk to the general population.  相似文献   
283.
Experiments were performed in a single cylinder common-rail diesel engine that adopts a low temperature premixed charge compression ignition (PCCI) mode. Combustion features of dimethyl carbonate (DMC)-diesel blends under various centers of heat release (COHRs) were revealed in details. With retarding of COHR, all the peaks of pressure and pressure rise rate and bulk gas temperature are postponed and declined in sequence. Normally, the crank angle of peak pressure is quite close to the COHR, while the peak of bulk gas temperature appears about 7°CA after COHR as a rule. The prolongation can be demonstrated at every stage of combustion such as q10 and q90 with the COHR being put backward. In addition, the heat release of diesel is completely slower than that of D10 fuel at various stages. Unfortunately, retarding of COHR implies a declining thermal efficiency of engines as well as a higher cyclic variation in general. Nevertheless, D10 blend has higher thermal efficiency than diesel thanks to high oxygen content of DMC and low boiling point that prompts better fuel atomization and complete combustion. Meanwhile, the cyclical variation of D10 is greater than diesel fuel owing to the low heat value, high latent heat of vaporization, and poor flammability of DMC. As a total, a comprehensive understanding of PCCI combustion features under different COHRs can be conducive to conducting effective management of combustion process and manipulating the subsequent emission performance to a favorable level.  相似文献   
284.
Long flame coal are abundant and widely distributed in China, but the resource utilization is quite low, the production efficiency is not high. Stamp-charging coke making technology can bend some long flame coal, which can reduce production cost and expand the coking coal resources. The long flame coal of different mass fraction is added into prime coking coal including fat coal from Longhu, 1/3 coking coal from Xinjian and coking coal from Didao in experiment. The swelling pressure is tested on-line detection using pressure sensor in coke making process, and the pores are observed by scanning electron microscopy. The results show that, the swelling pressure first increase and then decrease with the temperature increased and the maximum swelling pressure reduces gradually with mass fraction of the Long flame coal from Shenmu increased in coke making process. The SEM images of resultant coke display that the coke get more and more loose and the amount of pores is increased with mass fraction of the long flame coal from Shenmu increased. The amount pores and the pore diameter both is minimum for coking coal from Didao as prime coking coal under the same fraction of long flame coal.  相似文献   
285.
采用密封高压消解法,参照GB/T17138-1997规定的步骤,对编号为D075-540的ERA能力验证土壤样品中铜的含量进行测定,开展对影响测定结果的各不确定度进行分析,归纳提出了影响土壤样品中铜测量不确定度的主要因素和不确定度分量的主要来源,并给出了相对标准不确定度分量,得出了该铜土壤标准样品测量不确定度的评定结果:扩展不确定度为U=3mg/L。结论:评定程序和方法符合技术规范要求,操作简便、结果可靠,有较高的应用价值。  相似文献   
286.
C3H8是液化石油气(LPG)的主要成分,其火焰结构的数值预测对于消防等相关行业具有重要意义。单步或总包反应过于简单,不能描述碳氢燃料的氧化机制,而耦合燃料详细机理的燃烧模拟计算量大,且描述反应的数学系统具有极强的“刚性”,限制了反应机理的实际应用,而去除冗余反应和组分的简化机理具有描述燃烧的全面性优点,且降低了数学系统的“刚性”,因此耦合简化机理的火焰结构数值预测具有优势。本文采用基于矩阵分析的主成分(PCA)分析技术,分析研究了wang等发展的469步C3H8详细反应动力学机理,获得了组分的重要性排序,基于此分别构筑了320步和214步两个简化机理,针对典型扩散火焰的计算,表明建立的两个简化机理具有较高的模拟可靠性,同时也提供了一种框架简化机理的构筑方法。  相似文献   
287.
准确地预测可燃混合气体的爆炸极限,对防止工业生产中时有发生的混合气体爆炸事故有着重大的意义。通过采用Gaseq软件计算CH4,C3H8,C2H4,C3H6,CH3OCH3和CO的绝热火焰温度(CAFT),分析初始温度对甲烷和丙烷混合气体(体积比1∶1)爆炸下限(LEL)的影响。结果表明:随着初始温度的升高,临界火焰温度基本不变,而LEL线性下降。使用计算绝热火焰温度法对不同比例的二元混合气体(体积比1∶1,3∶1,1∶3)以及三元混合气体(体积比1∶1∶1)的LEL进行预测,在选取的35组不同组份的混合气体中,LEL的预测值与文献值的平均绝对误差为0.081 8,平均相对误差为0.02。  相似文献   
288.
为研究狭长空间内细水雾幕对顶棚射流火焰的抑制效果,通过全尺寸试验研究不同工作压力对射流火焰蔓延形态、雾幕隔热效果及烟气沉降的影响。研究结果表明:随着工作压力的增加,雾滴的动量随之增大,雾幕对射流火焰的扰动作用增强,强化雾幕对射流火焰的阻挡效果;同时,雾幕的隔热效率有明显改善,2.5 MPa时的细水雾幕的隔热效率可达0.75。然而,过大的工作压力会造成烟气层的沉降,工作压力大于2.0 MPa时保护区内烟气层高度低于1.8 m。因此,应综合考虑细水雾幕对射流火焰和烟气的作用,选择适当的工作压力。  相似文献   
289.
原子捕集——火焰原子吸收光谱法测定环境土壤中痕量镉   总被引:1,自引:0,他引:1  
系统地考察了原子捕集测定环境土壤中镉的条件及10余种常见共存离子的干扰情况,测定环境土壤中镉含量原子捕集灵敏度较常规原子吸收光谱法高112倍,可达0.25μg/L/1%A,方法快速、简便、稳定,令人满意。  相似文献   
290.
陈银  蒋勇  叶美娟  邱榕 《火灾科学》2015,24(2):59-67
通过代码修改,在大涡模拟(LES)中嵌入气相化学反应速率、组分热力学性质和输运特性三大机理文件,严格意义上实现甲烷燃烧的四步简化机理与火灾动力学模拟软件(FDS)的成功对接。燃烧模型采用针对多组分燃料的涡耗散概念(EDC)模型,模拟0.3m直径的甲烷湍流扩散火焰,并分别与基于无限快反应速率的总包单步和两步化学反应预测结果对比。分析预测结果可知:四步机理能够很好的适应FDS框架,其模拟结果具有可靠性,时均温度、速度和主要反应物的预测结果高度一致;机理导入后可以预测CO2、H2O以及中间产物CO和H2的浓度,更合理地描述了火灾中气相产物的产生与输运过程。不同反应机制下主产物CO2和H2O浓度对比结果理想,在高温反应区内存在一定的差异,在高温反应区外呈现出高度的一致性。  相似文献   
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