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Tectonic and Eustatic Control on Mishrif Regional Reservoir Distribution

机译:Mishrif区域储层分布的构造与突静电控制

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This article exclusively relies on data from published literature. The development of a foreland basin in the Mesopotamian Basin of South Iraq during the deposition of the Mishrif resulted in facies stacking patterns reflecting the development of a flexural bulge. Paleogeographic reconstructions rely on carbonate facies as depth indicators, whereby rudist biostromes and coarser bioclastic debris define Shoal Complexes that separate restricted lagoonal deposits from open marine sediments. Ahmadi-Rumaila-Lower Mishrif sediments deposited into a N-S trending basin also showing evidence of precursory foreland basin tectonics: the increasing thickness of Lower Sequence deposits to E and NE reflects an increase of accommodation space in these areas. A disconformity separates the lower and upper Mishrif sequences, and represents the initiation of the flexural forebulge. The lower sequence (Mishrif mC, mB2) is characterised by a N-S oriented platform margin Shoal Complex, while during the upper sequence (Mishrif mB1, mA), a NW-SE orientation prevailed. The origin of the regionally deeper facies at the start of the Upper sequence reflects eustatic sea level rise, after which foreland basin tectonics significantly changed the paleogeography of the basin and enabled the rudist Shoal Complex to spread over a wider area. The Mishrif caprock at the top of the Upper Sequence represents a major regional exposure. Alpine 1 tectonic activity, previously associated with the Khasib, Tanuma, Sadi and Hartha Formations in the region, actually initiated earlier, impacting the upper and to a lesser extent lower Mishrif sequences. The activity is interpreted in a foreland basin setting, with structural styles similar to but smaller scale than that seen later in the Alpine 2 Zagros emplacement. Local structuration effects along pre-existing lineaments likely reactivated in different orientations due to the rotating stress fields. NW - directed push leading into Alpine 1 on N-S oriented structures may have resulted in transpressional strike slip related uplift. Such local uplift cannot however explain the observed facies stacking patterns, particularly in the Upper Mishrif.
机译:本文专门依赖于发布文献的数据。在Mishrif沉积期间,在南伊拉克南部南伊拉克美岛盆地的开发导致各方堆叠图案反映了弯曲凸起的发展。古地理重建依赖于碳酸盐相同的深度指示器,由此粗鲁斯生物骨髓和较粗糙的生物旋流碎片限定了从开放的海洋沉积物中分离限制的泻湖沉积物的浅源复合物。 Ahmadi-Rumaila-Digher Mishrif沉积物沉积在N-S趋势盆地,也显示出前提前陆盆地构造的证据:下序列沉积物的厚度增加到E和NE中的厚度反映了这些区域中的住宿空间增加。一个DisconFormity分离下部和上部MishRIF序列,并表示弯曲前脉冲的启动。下序列(MISHRIF MC,MB2)的特征在于,由N-S取向平台边距浅源复合物,而在上序列(MISHRIF MB1,MA)期间,占地面积的NW-SE取向。在上序开始时的区域更深层面的起源反映了突然的海平面上升,之后,前陆盆地构造显着改变了盆地的古地理,并使粗鲁的浅源复合体涂抹在更广阔的区域上。上序列顶部的MishRIF脚轮代表主要区域暴露。高寒1个构造活动,以前与该地区的Khasib,Tanuma,Sadi和Hartha形成相关,实际上先发生,影响了上部和较小程度的较低的MishRIF序列。该活动被解释在前陆盆地设置中,具有与高山2 ZAGROS施加后稍后所见的结构款式的结构款式。沿着预先存在的矩阵的局部结构效应可能由于旋转应力场而以不同的取向重新激活。在N-S取向结构上的NW定向推进导致高山1的推动可能导致肿块攻击滑动相关隆起。然而,这种局部隆起不能解释观察到的相形图模式,特别是在上部Mishrif中。

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