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1)  compact conglomerate
致密砾岩
1.
Use of the resistivity curve for identification of oil and gas water beds in the compact conglomerate reservoir is always a headache in logging interpretation owing to the limitation of the measuring principle of conventional electric logging method.
受常规电法测井自身测量原理的局限,利用电阻率曲线在致密砾岩储层进行油水层的识别一直是测井解释中的一个难点问题。
2)  tight sandy gravel
致密砂砾岩
1.
This paper discussed the potential relationship between the productive capacity and the logging response of a deeply buried, gas-bearing and tight sandy gravel formation in the Daqing oilfield,and probed the method to predict the productivity of the gas-bearing formation employing the neural network technique based on the logging data.
讨论了大庆深部致密砂砾岩含气储层的产能与测井响应之间的关系,探讨了根据测井资料应用人工神经网络技术预测含气储层产能的方法。
3)  banket ['bæŋkit]
致密石英砾岩
4)  compacted rock
致密岩石
1.
Anisotropy comparison of P wave and S wave velocity for compacted rocks;
致密岩石纵横波波速各向异性的比较研究
5)  tight sandstone
致密砂岩
1.
Analysis on main controlling factors of physical property of tight sandstone reservoir;
川中—川南过渡带致密砂岩储层物性主控因素分析
2.
Application of temporary and shielding plugging technology to improve well logging responses for tight sandstone gas reservoir;
应用屏蔽暂堵技术提高致密砂岩气层测井识别能力
3.
Current status and prospect of key techniques for exploration and production of tight sandstone gas reservoirs in China;
中国致密砂岩气藏勘探开发关键工程技术现状与展望
6)  tight sandstones
致密砂岩
1.
Four different methods,including support vector machine(SVM),artificial neural network(ANN),multiple regression analysis(MRA) and parameter product decision(PPD),were applied to the gassiness evaluation of forty gas-bearing layers in the tight sandstones of Tabamiao Area in Ordos Basin.
将支持向量机、人工神经网络、多元回归分析及参数乘积判别法4种算法分别应用于鄂尔多斯盆地塔巴庙地区40个致密砂岩储层的含气性评价,其预测结果与试气结果的平均相对误差绝对值分别为:0,4。
2.
Xujiahe Formation in the south of west Sichuan is composed of tight sandstones with unconventional extra-low porosity and permeability.
川西地区南部须家河组储层,属于非常规特低孔低渗致密砂岩。
补充资料:角砾岩透镜体
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性质:简单撞击坑视坑底下伏一层较厚由回落角砾岩块、熔岩组成的透镜状沉积层,如Meteor、Brent、Lonar Lake、West Hawk Lake等简单撞击坑。通常上伏晚期湖相沉积物,下伏冲击压力15~20GPa的原生坑底单矿物碎屑角砾岩。整个撞击坑显示出地球物理场异常。这一沉积构造特征,可通过地球物理方法寻找被掩藏的撞击坑。

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