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首页> 外文期刊>Earth and Planetary Science Letters: A Letter Journal Devoted to the Development in Time of the Earth and Planetary System >Catastrophic emplacement of giant landslides aided by thermal decomposition: Heart Mountain, Wyoming
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Catastrophic emplacement of giant landslides aided by thermal decomposition: Heart Mountain, Wyoming

机译:热分解辅助巨滑坡的灾难性进驻:怀俄明州心山

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The Heart Mountain landslide of northwest Wyoming is the largest known sub-aerial landslide on Earth. During its emplacement more than 2000 km(3) of Paleozoic sedimentary and Eocene volcanic rocks slid >45 km on a basal detachment surface dipping 2, leading to 100 yr of debate regarding the emplacement mechanisms. Recently, emplacement by catastrophic sliding has been favored, but experimental evidence in support of this is lacking. Here we show in friction experiments on carbonate rocks taken from the landslide that at slip velocities of several meters per second CO2 starts to degas due to thermal decomposition induced by flash heating after only a few hundred microns of slip. This is associated with the formation of vesicular degassing rims in dolomite clasts and a crystalline calcite cement that closely resemble microstructures in the basal slip zone of the natural landslide. Our experimental results are consistent with an emplacement mechanism whereby catastrophic slip was aided by carbonate decomposition and release of CO2, allowing the huge upper plate rock mass to slide over a 'cushion' of pressurized material. (C) 2014 The Authors. Published by Elsevier B.V.
机译:怀俄明州西北部的心山滑坡是地球上已知的最大的空中滑坡。在其沉积过程中,基底沉积面2上超过2000 km(3)的古生代沉积和始新世火山岩滑动了> 45 km,导致有关沉积机理的争论长达100年。近来,灾难性滑行引起的安置受到了人们的青睐,但缺乏支持这一点的实验证据。在这里,我们在对从滑坡中获取的碳酸盐岩石进行的摩擦实验中表明,在滑动速度只有几百微米的情况下,由于闪蒸加热引起的热分解,二氧化碳以每秒几米的滑移速度开始脱气。这与在白云岩碎屑中形成水泡脱气边缘以及与自然滑坡的基底滑移区的微观结构非常相似的结晶方解石水泥形成联系。我们的实验结果与定位机制一致,在该机制下,灾难性滑坡由碳酸盐分解和释放CO2辅助,从而使巨大的上盘岩体在受压材料的“垫层”上滑动。 (C)2014作者。由Elsevier B.V.发布

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