气体混合爆炸作为产生脉冲扰动的工具

IF 0.5 Q4 GEOCHEMISTRY & GEOPHYSICS
V.A. Polyakovskyi
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引用次数: 0

摘要

这项工作致力于开发一种在土体中产生脉冲扰动的装置。建议使用高压乙炔-氧气混合物的爆炸能量作为脉冲扰动源。应用测量机械应力的标准方法并使用压电传感器,可以获得气体混合物发生爆炸时土壤中出现的应力场。结果表明,在高压充注气体作用下,土体中的最大应力与源的相对距离的关系是幂函数。得到了近似这些实验依赖关系的幂函数的指数。考虑了充入混合气体的装药在低压和高压作用下的两种情况下,最大径向应力随距离的衰减。这些案例的比较表明它们很相似。本文还分析了在搜索地球物理研究中使用爆炸源和非爆炸源产生地震波的现代方法。详细分析了地震勘探中使用的现有结构地震波源。指出了爆炸性和非爆炸性地震波脉冲源的优缺点。在所提出的波源的优点中,值得注意的是它们的低价格和移动性。它们的使用无需获得特别许可。所获得的结果使人们能够扩展气体爆震的应用领域。特别地,它可以用作地震波的替代源。该方法在搜索地球物理和土体性质研究方面具有良好的训练前景。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Gas mixture explosion as a tool for generating impulsive disturbances
The work is devoted to the development of a device for generating impulsive perturbations in soil massifs. It is proposed to use the explosion energy of a high-pressure acetylene-oxygen gas mixture as a source of impulse perturbations. Applying the standard method of measuring mechanical stresses and using piezoelectric sensors, it is obtained the stress fields occurring in the soils when an explosion of the gas mixture takes place. It is revealed that the dependences of the maximal stresses in the soil massif on the relative distance to the source, when the gas charge under high pressure acts, are the power functions. The exponents of power functions approximating these experimental dependences are obtained. The attenuation of the maximal radial stresses with the distance is considered for the two cases when the charges filled with gas mixture under low and high pressure act. The comparison of these cases indicates their similarity. In the paper it is also performed the analysis of modern methods of using explosive and non-explosive sources for seismic wave generation during investigations in the search geophysics. The existing structural sources of seismic waves used in the seismic exploration are analyzed in detail. The disadvantages and advantages of explosive and non-explosive impulsive sources of seismic waves are indicated. Among the advantages of the proposed wave sources it is worth noting their low price and mobility. There is no need to obtain special permits for their use. The obtained results allow one to expand the field of gas detonation application. In particular, it can be used as an alternative source of seismic waves. The proposed method is promising for training in search geophysics and in the study of properties of soil massifs.
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来源期刊
Geofizicheskiy Zhurnal-Geophysical Journal
Geofizicheskiy Zhurnal-Geophysical Journal GEOCHEMISTRY & GEOPHYSICS-
自引率
60.00%
发文量
50
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