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Genesis Analysis of High Gamma Ray (GR) Sandstone Reservoir: Taking Toutunhe Formation of Junggar Basin, Northwest China, As an Example

机译:高伽马射线(GR)砂岩储层的成因分析:以西北地区朱格河盆地的尖村形成为例

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On the basis of GR log analysis alone, the high GR sandstone reservoirs would probably have been regarded as mudstone and interpreted to be non-reservoir, which has greatly affected the exploration and exploitation of oil and gas reservoir to some extent. Therefore, the principles and standards to distinguish high GR sandstone reservoir from conventional sandstone reservoir, genesis of high GR sandstone reservoir have been systematically studied. Studies show that sandstone reservoir with apparent shale content calculated by GR log value greater than 50%, can be regarded as high GR sandstone reservoir. In the study area, the specific criterion of GR log value for high GR sandstone reservoir is 110API. The high GR characteristic of sandstone reservoir is mainly and directly caused by an abnormally high uranium enrichment, but not the tuff, feldspar or clay mineral. The study area has favorable conditions of abundant uranium source, favorable paleoclimate, and favorable lithology and lithofacies combination for uranium enrichment. In the process of oxygen bearing formation water migrating and leaching uranium bearing tuff, the U+4 can be oxidized to U+6, and uranium element transports in the form of UO2+2. In permeable sandstone reservoir saturated with uranium bearing formation water, the U+6 can be deoxidized into U+4 by oil and gas migrating through faults and stratigraphic unconformities, and accumulates in the form of UO2 in sandstones.
机译:仅在GR对数分析的基础上,高GR砂岩储层可能被视为泥岩,并被解释为非水库,这极大地影响了石油和天然气藏的勘探和开采在一定程度上。因此,系统地研究了从常规砂岩储层区分高GR砂岩储层的原理和标准,高GR砂岩储层的成因。研究表明,砂岩储层具有明显的页岩含量,由GR Log值计算大于50%,可以被视为高GR砂岩储层。在研究领域,高GR砂岩储层的GR对数值的具体标准是110API。砂岩储层的高GR特征主要是由异常高的铀浓缩,但不是凝灰石,长石或粘土矿物引起的。该研究领域具有丰富的铀源,良好的古古怪,岩性岩性和岩石酸性岩性和岩石酸的岩性组合的良好条件。在氧轴承形成水迁移和浸出铀轴承凝灰石的过程中,U + 4可以氧化成U + 6,以UO 2 + 2的形式氧化至铀征。在渗透砂岩储层饱和含有铀壳体水中,通过迁移过滤器和地层不整形的油气和气体可以将U + 6脱氧到U + 4中,并以砂岩的UO2的形式积累。

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