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首页> 外文期刊>Rock Mechanics and Rock Engineering >Impact of Partially Cemented and Non-persistent Natural Fractures on Hydraulic Fracture Propagation
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Impact of Partially Cemented and Non-persistent Natural Fractures on Hydraulic Fracture Propagation

机译:部分固井和非持久自然裂缝对水力裂缝扩展的影响

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摘要

This paper presents laboratory experiments exploring the interaction between hydraulic fractures and preexisting natural fractures that are strongly cemented relative to the host material strength but over only a portion of the natural fracture. Two sets of experiments were conducted, including the central region cemented case and the top-bottom region cemented case. Three main patterns are observed for the interaction between hydraulic fractures and partially cemented natural fractures: (1) complete crossing, (2) crossing with mismatched crack path and (3) no crossing. The results show that a hydraulic fracture penetrates directly through a fully and strongly cemented preexisting natural fracture. When the proportion of the strongly cemented region decreases or the height of the weak natural fracture increases, the hydraulic fracture is observed to persist through the entire height of the specimen both before and after the interface. However, the fracture path proceeds directly through strongly cemented portions while causing mismatched crack path at uncemented portions. No crossing results are obtained when the strongly cemented region is sufficiently small, around 30 % of the natural fracture's height. Results of this seldom considered but almost certainly realistic configuration of partial cementing suggest that the hydraulic fracture path is strongly influenced by the size of the cemented region of the natural fracture.
机译:本文介绍了实验室实验,探讨了水力压裂与先前存在的天然裂缝之间的相互作用,这些裂缝相对于基质材料的强度而言是牢固胶合的,但仅在一部分天然裂缝上。进行了两组实验,包括中心区域胶结层和顶部-底部区域胶结层。观察到水力压裂与部分胶合天然压裂之间相互作用的三种主要模式:(1)完全穿越,(2)裂缝路径不匹配的穿越和(3)没有穿越。结果表明,水力压裂直接穿透了完全固结的天然裂缝。当强固结区的比例减少或弱天然裂缝的高度增加时,观察到水力裂缝在界面之前和之后在试样的整个高度上持续存在。但是,断裂路径直接穿过强力粘结的部分,同时在未粘结的部分引起不匹配的裂纹路径。当强力胶结区足够小,大约为天然裂缝高度的30%时,将无法获得交叉结果。很少考虑但几乎可以肯定的是部分胶结的实际构型的结果表明,水力压裂路径受天然裂缝胶结区域大小的强烈影响。

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