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Regarding the general industrial dust aluminite powder, the firing delay time and the most tremendous pressure rise speed influence is very obvious to its maximum explosion pressure; Its maximum explosion pressure and the maximum pressure rise speed reduces along with the dust granularity increases: And increases the tendency to be obvious; Has a best dust loading, causes its maximum explosion pressure and the maximum pressure rise speed maximizing.

对于一般工业粉尘铝粉来说,点火延迟时间对其最大爆炸压力和最大压力上升速率的影响十分明显;其最大爆炸压力和最大压力上升速率随着粉尘粒度的减小而增加:且增加趋势明显;存在一个最佳粉尘浓度,使其最大爆炸压力和最大压力上升速率达到最大值。

Methods The rabbit model of maxillofacial blast injury was made by KTY-04 blasting cap.

采用改进的家兔颌面部爆炸伤动物模型,以KTY-04型雷管为爆炸源,复制颌面部爆炸损伤。

On the basis of the introduction and analysis of the history, current situation and development of explosive synthesis of superhard materials, the mechanism and technology of diamond and dense boron nitride synthesis by shock compression and some explosive mechanics problem in explosive synthesis have been studied systematically in this research.

本文在对超硬材料爆炸合成研究的历史、现状及发展趋势进行评介、总结与分析的基础上,以金刚石、高密相氮化硼为研究对象,对爆炸合成理论与技术,以及爆炸合成中所涉及的一些爆炸力学理论问题进行了较为系统的研究。其主要研究成果如下

Applying the method to the study on the origin of Tunguska explosion and making the following conclusions:(1) these excess elements were likely resulted from the Tunguska Cosmic Body explosion of 1908.(2) The Tunguska explosive body was composed of materials similar to Cl chondrite, and, most probably, a cometary object, which weighed more than 10〓 tons and had a radius of more than 126m.

将通古斯地区沉积物样品中PGE和其他微量元素的结果应用于通古斯爆炸的成因研究中,得出了如下结论:(1)Pd、Os、REE、Sr、Co和Ni等元素的异常是由于通古斯爆炸事件导致地外物质的增加所引起的;(2)通古斯爆炸物体可能与碳质球粒陨石成分类似,很可能是慧星,其质量大于10〓吨,半经大于126米。

Then, based on the testing results and inherent safety principles, preventive measures for coal dust explosion were discussed.

基于本质安全基本原理和试验结果,讨论预防煤粉爆炸的各种基本方法,并重点阐述本质安全原理与粉尘爆炸影响因素、不同的预防方法、过程设备的选择等之间的关系,对已制定的爆炸风险控制措施进行完善和补充。

The tanglesome problem,which includes the coupling of detonation of highexplosives,propagation of blast wave and interaction of explosion wave and shellstructures,is resolved by a staged calculation procedure.A numerical simulation tothe elasto-plastic structural response of the double-walled explosion containmentvessels closed with flat head,which has not been reported by other literatures before,was performed.The simulated results are in good agreement with that of theexperiment.The characteristics of the dynamic response of the vessels weresummarized.Some noticeable new phenomena were pointed out.

在数值分析方面,本文对一个包含有装药爆炸爆炸波传播、爆炸冲击波与结构相互作用的复杂耦合问题,提出了分段解耦的计算方法,并首次完成了带平板封头的双层圆柱形爆炸容器弹塑性结构响应的数值模拟,得出了与实验基本一致的结果,总结了圆柱形爆炸容器弹塑性结构响应的基本特点,并发现了一些值得注意的新现象和新问题。

On the basis of referring the foreign and domestic literatures and systematically generalizing the former research results, firstly, from the adsorption gas, coal spontaneous combustion and the heat resolves, thesis analyzes the ignitable gas occurrence. Secondly, though the experiment station of coal spontaneous combustion, thesis obtains the critical temperature 60 ℃~ 100 ℃, splits temperature 100℃~ 150 ℃, the fission temperature 150℃~ 180 ℃ and the speed-up temperature 210℃~ 250 ℃ and ignitable gas release rules in the several temperatures sections according to the results. Finally according to fire resource and the catastrophe theory, ignitable gas explosion characteristic and the influence factors have been conducted of the qualitative investigation and the quantitative determination. The gas explosion control technologies are put forward. It has built the certain foundation for the effective prevention gas explosion accident occurrence.

本论文采用理论分析和实验模拟相结合的综合研究方法,首先从煤层吸附瓦斯、煤氧复合过程及煤高温热解三方面对采空区可燃性气体的产生进行分析;其次通过对大型煤自然发火实验测试台的应用,根据实验结果得到临界温度60℃~100℃、干裂温度100℃~150℃、裂变温度150℃~180℃和增速温度210℃~250℃等几个温度段的可燃性气体释放规律;最后根据爆炸引火源,结合瓦斯爆炸流变-突变理论,对可燃性气体爆炸特性及影响因素进行了定性研究和定量测定,提出瓦斯爆炸事故的控制对策,为有效预防瓦斯爆炸事故的发生打下了一定的基础。

Survival: Your Immolation Trap, Explosive Trap and Explosive Shot have a 5/10/15% to stun targets for 2 sec when they deal damage, and increases the critical strike chance of your Explosive Shot and Explosive Trap by 5/10/15%.

新天赋T.N.T。你的爆炸陷阱,爆炸射击和献祭陷阱造成伤害时有5/10/15的几率使目标晕迷2秒,同时增加你爆炸射击和爆炸陷阱的爆率5/10/15%(貌似没有献祭陷阱出爆的消息了

I'll describe a shot from the Exterior Brookfield sequence of an exterior of a row apartment on fire with an explosion blasting out the third story windows. The shot was composited on an Inferno by Bob Wiatr. We started with a live plate of the street scene. Our first task was to remove a foreground chainlink fence and camera crew. We recreated the fg matching the flashing ambulance lights. To create a snowy, misty look we used a number of logic ops of the bg with a mist plate which was basically the bg heavily blurred and multiplied back onto itself, graduating to create a sense of dimensionality. Glows were added around lights and flames using Sapphire plug-ins and light beams were added to streetlights. Four or five layers of 3d particle snow created in Maya were combined with practical elements varying in size and focus depending on distance from the camera.A miniature explosion element was incorporated into the comp, also with added glows, interactivity with the building, and rotoscoping of foreground objects. The entire comp was then time warped for editorial matching with the subsequent cut.

我可以描述一个Exterior Bookfield的几个镜头,那是一排的公寓着火,在三楼窗户引起爆炸,这个镜头是Bob Wiatr用Inferno合成的,我们用一个现场的街道镜头开始,我们的第一个任务是删除一个在前景中的链条状的篱笆和摄像人员,我们重新制作了前景以期与前景中的闪烁的救护车灯匹配,为了制作一个下雪的雾蒙蒙的效果,我们用了大量的logic ops,用了一个雾层,这个层基本上就是把背景尽量模糊然后再把它重新加到背景上面,渐变式的制作出一个层次感,自发光用Sapphire插件加在灯光和火焰的周围,而光线被加到路灯上,在maya中制作的四到五层的三维的粒子雪用来和不同大小的真实的素材混合在一起,焦距则依赖镜头的景深,同时在楼房爆炸的地方加入了一个缩小了的爆炸素材,以及爆炸的辉光效果,和重新放置的前景物体,整个的镜头接着匹配时间用来做最后的剪辑制作。

Its working principle is introduced here: when a gas or powder starts a flame or explosion, the ultraviolet sensor will acquire the signal and sent it to the controller to produce the trigger voltage, and then the explosive suppressor will release a great number of gas promptly spraying dry powder extinguishing agents, which thereby form extinguishing agent smoke and effectively extinguish explosion flame. It is rapid and of strong antiinterference ability, high reliability and can be fixed easily. It is capable of effectively suppressing natural gas explosion in the simulative gas explosion test. It can be applied in CNG stations or other site where has explosive and combustible gas whereby to enhance the overall accident control ability.

当发生气体燃烧、爆炸时,紫外传感器接收火焰信号,传送至控制器,控制器产生触发电压,使抑爆器的产气剂释放出大量气体,驱动快速喷撒出干粉灭火剂,形成足够浓度的灭火剂粉雾体,有效扑灭爆炸火焰,具有动作速度快、抗干扰能力强、可靠性高、安装使用方便等优点,在天然气模拟爆炸试验中能有效抑制天然气爆炸,可用于CNG加气站或其他燃烧爆炸性气体场所,提高其整体防灾抗灾能力。

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The split between the two groups can hardly be papered over.

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