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1.
The overpressure produced by the boiling liquid expanding vapor explosion (BLEVE) is still not well understood. Various methods have been published on the overpressure modeling in the far field. They mostly differ by the modeling of the expansion energy, used to scale the distance to the source where the overpressure needs to be calculated. But these methods usually include a experimentally fitted reduction factor, and are mostly overestimating the overpressures. Today there is a growing interest in modeling the BLEVE overpressure in the near field, for studying the blast effect on critical infrastructure such as bridges and buildings. This requires a much better understanding of the BLEVE blast. This paper goes deeper in the understanding of the physical phenomenon leading to the BLEVE blast wave generation and propagation. First, mid-scale BLEVE experiments in addition to new experimental data for near field blast from a small scale supercritical BLEVE are analyzed. And second, an analysis method of the shocks observed in the experiments is presented based on fundamental gas dynamics, and allows the elaboration of a new modeling approach for BLEVE overpressure, based on the calculation of the initial overpressure and radius of the blast.  相似文献   
2.
In order to study a new leak detection and location method for oil and natural gas pipelines based on acoustic waves, the propagation model is established and modified. Firstly, the propagation law in theory is obtained by analyzing the damping impact factors which cause the attenuation. Then, the dominant-energy frequency bands of leakage acoustic waves are obtained through experiments by wavelet transform analysis. Thirdly, the actual propagation model is modified by the correction factor based on the dominant-energy frequency bands. Then a new leak detection and location method is proposed based on the propagation law which is validated by the experiments for oil pipelines. Finally, the conclusions and the method are applied to the gas pipelines in experiments. The results indicate: the modified propagation model can be established by the experimental method; the new leak location method is effective and can be applied to both oil and gas pipelines and it has advantages over the traditional location method based on the velocity and the time difference. Conclusions can be drawn that the new leak detection and location method can effectively and accurately detect and locate the leakages in oil and natural gas pipelines.  相似文献   
3.
International safety regulations such as EN 1127-1 consider ultrasound to be an ignition source. Currently, applications of ultrasound in explosive atmospheres have to comply with a threshold value of 1 mW/mm2. However, it is unclear as to how this intensity has to be measured and, therefore, this threshold value is poorly defined. Moreover, it is based on theoretical estimations in analogy to other ignition sources and there are no publications or significant records on these estimations. Within a research project at PTB, it has now been investigated experimentally in relation to worst-case considerations including airborne ultrasound, focused MHz ultrasound in liquids and acoustic cavitation. On the basis of the results of the research it is now possible to revise the current regulations and to specify measures for safe operation of ultrasonic applications in explosive atmospheres. In this context, for ultrasound coupled directly to gaseous atmospheres a new threshold value of 170 dB (re. 20 μPa) can be suggested, and for ultrasonic applications in liquids, an augmentation can be made to the threshold to 400 mW/mm2.  相似文献   
4.
Riebsame WE 《Disasters》1985,9(4):295-300
Three recent cases of climate extremes are studied to identify human impacts and response strategies and to identify common characteristics that may help illuminate the nature of climate hazards. The 1980 heat wave in the central United States, 1981 cold wave in Boston, Massachusetts, and recent flooding and lake level rise in northern Utah, illustrate several important aspects of climate hazards that separate them from the more traditional set of catastrophic events (e.g. tornadoes, hurricanes and earthquakes) usually dealt with by hazards research and management. Among those characteristics are an emphasis on health impacts rather than physical damage, accumulative effects rather than short shocks, a tendency for impacts to accrue to certain socio-economic classes, and relatively slow onset. The management and research implications of these hazard characteristics are explored.  相似文献   
5.
在pH3.3的盐酸-醋酸钠介质中.镉-邻菲啉配合物在-0.65V(vS.SCE)处产生一灵敏的吸附波,其二次导数波高与镉浓度在0.0006~0.1mg/L范围内呈良好的线性关系,检出下限达0.0003mg/L。极谱波性质的研究表明该波具有配合物吸附波的特征。方法已用于环境水样中微量错的测定,结果与其它方法吻合。  相似文献   
6.
壳体是机械中广泛使用的重要零件之一.采用冷挤压工艺可提高质量、降低成本.对不锈钢壳体成形工艺及模具设计作了详细讨论.  相似文献   
7.
花键轴是机械中广泛使用的重要零件之一。制造工艺复杂,外观质量、尺寸精度、综合机械性能等要求高。采用冷挤压成形,可使成本降低、提高质量、使用可靠。此文对花键轴成形工艺,模具设计作了详细探讨。  相似文献   
8.
模具寿命是冷摆辗的关键问题之一。选择合理的模具材料以及采用适宜的热处理工艺可以提高冷摆辗模具的强韧性,从而提高模具寿命。基于摆动辗压工艺的基本原理,分析研究了冷摆辗模具的受力情况,并对冷摆辗模具材料的选择及热处理工艺作了探讨。  相似文献   
9.
本文以实况资料为基础,对2005年中发生在我国内蒙古的一次强沙尘暴天气过程进行风场和温度场等的诊断分析,结果显示:(1)本次沙尘暴天气过程属于西北路径强冷空气入侵造成的。有利的气候背景是本次沙尘暴发生的基础。(2)大气斜压性强,动量下传作用是沙尘暴的天气诱因。200hPa高空急流的加强,850hPa强锋区和冷槽发生发展是沙尘暴的主要原因。在此基础上,得出沙尘暴的预报着眼点。  相似文献   
10.
在挤压模具的零件中,冲头的工作条件最恶劣.传统认为,冷挤压冲头损坏的主要原因是因为工作时金属变形抗力大,作用在冲头上的载荷大而集中所致.此文分析了冷挤压冲头的主要损坏形式,并对其产生原因及损坏形式进行了分析和讨论,提出冲头在交变应力的反复作用下引起的疲劳损伤,是冷挤压冲头容易损坏的主要原因,并就冲头的常见损坏形式提出了相应的解决措施.  相似文献   
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