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Structure and flow properties of syn-rift border faults: The interplay between fault damage and fault-related chemical alteration (Dombjerg Fault, Wollaston Forland, NE Greenland)

机译:同裂口边界断层的结构和流动特性:断层破坏与断层相关化学蚀变之间的相互作用(Dombjerg断层,Wollaston Forland,NE格陵兰)

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摘要

Structurally controlled, syn-rift, clastic depocentres are of economic interest as hydrocarbon reservoirs; understanding the structure of their bounding faults is of great relevance, e.g. in the assessment of fault-controlled hydrocarbon retention potential. Here we investigate the structure of the Dombjerg Fault Zone (Wollaston Forland, NE Greenland), a syn-rift border fault that juxtaposes syn-rift deep-water hanging-wall clastics against a footwall of crystalline basement. A series of discrete fault strands characterize the central fault zone, where discrete slip surfaces, fault rock assemblages and extreme fracturing are common. A chemical alteration zone (CAZ) of fault-related calcite cementation envelops the fault and places strong controls on the style of deformation, particularly in the hanging-wall. The hanging-wall damage zone includes faults, joints, veins and, outside the CAZ, disaggregation deformation bands. Footwall deformation includes faults, joints and veins. Our observations suggest that the CAZ formed during early-stage fault slip and imparted a mechanical control on later fault-related deformation. This study thus gives new insights to the structure of an exposed basin-bounding fault and highlights a spatiotemporal interplay between fault damage and chemical alteration, the latter of which is often underreported in fault studies. To better elucidate the structure, evolution and flow properties of faults (outcrop or subsurface), both fault damage and fault-related chemical alteration must be considered.
机译:结构上受控的,同分裂的碎屑沉积中心作为碳氢化合物储层具有经济意义。了解其边界故障的结构具有重大意义,例如评估断层控制的油气保留潜力。在这里,我们研究了Dombjerg断层带的结构(Wollaston Forland,NE格陵兰),这是一个同裂谷边界断层,其将同裂谷深水挂壁碎屑并置在结晶基底的下盘上。一系列的断层股线表征了中央断层带,在这里,离散的滑动面,断层岩石组合和极度破裂是常见的。与断层有关的方解石胶结物的化学蚀变带(CAZ)将断层包裹起来,并对变形的样式(尤其是在吊壁中)进行了强有力的控制。上盘破坏区包括断层,节理,静脉和CAZ以外的分解变形带。底盘变形包括断层,关节和静脉。我们的观察结果表明,CAZ在早期断层滑动中形成,并在后期断层相关的变形中施加了机械控制。因此,这项研究为裸露的盆地边界断层的构造提供了新的见解,并强调了断层破坏与化学蚀变之间的时空相互作用,后者在断层研究中经常被漏报。为了更好地阐明断层(露头或地下)的结构,演化和流动特性,必须同时考虑断层破坏和与断层有关的化学蚀变。

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