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首页> 外文期刊>MATEC Web of Conferences >Superficial structures cartography of the Essaouira basin under ground (Morocco), by small refraction seismic: contribution of the static corrections in the reinterpretation of the speeds variations.
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Superficial structures cartography of the Essaouira basin under ground (Morocco), by small refraction seismic: contribution of the static corrections in the reinterpretation of the speeds variations.

机译:索维拉盆地地下(摩洛哥)的浅层结构制图,通过小折射地震:静校正在重新解释速度变化中的作用。

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The static corrections are a necessary step in the sequence of the seismic processing. This paper presents a study of these corrections in the Essaouira basin. The main objective of this study is to calculate the static corrections by exploiting the seismic data acquired in the field to improve the deep structures imaging. It is to determine the roof and the basis of the superficial layers which constitute the weathered zone while calculating the delays of seismic wave’s arrivals in these layers. The purpose is to cancel the effect of the topography and the weathered zone, in order to avoid any confusion when the seismic and geological interpretation. The results obtained show the average values of the static corrections varying between - 127 and 282 ms (double time), with existence of high values by location, particularly in the Eastern and North-Eastern of the basin, which meant the presence of altered zone with irregular topography and whose thickness and speeds vary laterally. In effect the variations of velocities in the fifty meters from the surface may introduce significant anomalies in seismic refraction, with heavy consequences when the interpretation or the drilling establishment. These variations are mainly due to lateral changes in facies and variations in the formations thickness. The calculation of the static corrections, revealed high values at certain areas (East and North-East), which will enable us to better orient the future campaigns in these zones. It is therefore necessary to concentrate the seismic cores drillings and the small refraction seismic profiles by tightening the seismic lines meshes in order to have the maximum values of static corrections and thereafter a better imaging of the reflectors.
机译:静态校正是地震处理顺序中的必要步骤。本文介绍了索维拉盆地的这些改正研究。这项研究的主要目的是通过利用在现场获得的地震数据来计算静校正量,以改善深部构造成像。它是确定屋顶和构成风化带的表层基础,同时计算地震波到达这些层的延迟。目的是消除地形和风化带的影响,以免在地震和地质解释时产生任何混淆。获得的结果表明,静态校正的平均值在-127到282 ms(两次时间)之间变化,并且按位置存在较高的值,尤其是在盆地的东部和东北部,这意味着存在变化的区域地形不规则,厚度和速度横向变化。实际上,距地表五十米处的速度变化可能会在地震折射中引入明显的异常现象,在解释或钻探过程中会产生严重后果。这些变化主要是由于相的横向变化和地层厚度的变化。静态校正的计算显示了某些地区(东部和东北部)的高价值,这将使我们能够更好地确定这些地区未来的战役方向。因此,有必要通过收紧地震线网格来集中地震岩心钻探和小折射地震剖面,以便获得最大的静态校正值,然后获得更好的反射镜成像效果。

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