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首页> 外文期刊>Tectonophysics: International Journal of Geotectonics and the Geology and Physics of the Interior of the Earth >Morphotectonics of fissure ridge travertines from geothermal areas of Mammoth Hot Springs (Wyoming) and Bridgeport (California)
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Morphotectonics of fissure ridge travertines from geothermal areas of Mammoth Hot Springs (Wyoming) and Bridgeport (California)

机译:猛mm温泉(怀俄明州)和布里奇波特(加利福尼亚州)地热区的裂脊钙华的形态构造

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Eleven Quaternary fissure ridge travertines from Mammoth Hot Springs (Wyoming) and seventeen ones from Bridgeport (California) were mapped and studied with a morphotectonic approach to understand possible relationships between travertines and active versus passive tectonics. Results are compared with other known geothermal fissure ridges on the Earth. The studied fissure ridges are all located in the hangingwall of normal faults, but the fissure ridges appear as non-dislocated by faults, rather by axial fissures. Both in the two principal study areas and elsewhere, azimuthal analyses of faults and fissure ridges show that the distribution of fissure ridge long axis is rather dispersed around the strike of the local normal faults. No correlation occurs between the fissure ridge length and the angle between the strike of the normal fault and the strike of fissure ridges. The studied fissure ridges are 2 to 360m long (mean length: 72.1m), 1 to 15m wide (mean width: 6.7m), and 0.5 to 8m high (mean height: 3.9m). Fissure ridge aspect ratios show a moderate correlation between the length and both the width and the height of fissure ridges, whereas the correlation between width and height is less marked. The growth in height and width of ridges appears as much more inhibited than in length. A model is proposed in which fissure ridge travertines grow with enhanced elongation along one sub-horizontal direction, which seems moderately controlled by the associated normal fault and the regional extension. Other factors, such as the inherited fracture network and the geothermal and artesian pressure of fluids (fluid discharge) may be important in the development of the studied fissure ridges. Results from this study may contribute to the knowledge of factors that control the long-term geothermal circulation and also the long-term hermetic durability of CO _2 subsurface repositories.
机译:绘制了马默斯温泉(怀俄明州)的11个第四纪裂陷钙华和加利福尼亚州布里奇波特的17个第四纪裂陷钙华,并用地貌构造方法进行了研究,以了解钙华与主动构造和被动构造之间的可能关系。将结果与地球上其他已知的地热裂缝脊进行比较。所研究的裂缝脊均位于正常断层的上盘中,但裂缝脊似乎没有因断层而不是轴向裂缝而脱位。无论是在两个主要研究区域还是在其他地方,对断层和裂隙脊的方位角分析都表明,裂脊长轴的分布相当分散在局部正断层走向附近。裂缝脊长度与正常断层走向与裂缝脊走向之间的角度之间没有相关性。研究的裂隙脊长2至360m(平均长度:72.1m),宽1至15m(平均宽度:6.7m),高0.5至8m(平均高度:3.9m)。裂脊长宽比显示出裂脊的长度,宽度和高度之间的适度相关性,而宽度和高度之间的相关性则不太明显。脊的高度和宽度的增长似乎比长度受到的抑制更大。提出了一种模型,其中裂脊钙华沿着一个亚水平方向增长,伸长率增加,似乎由相关的正断层和区域扩展适度控制。其他因素,例如继承的裂缝网络以及流体的地热和自流压力(流体排放),在研究裂隙脊发育中可能很重要。这项研究的结果可能有助于了解控制长期地热循环的因素以及CO _2地下储层的长期气密性。

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