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首页> 外文期刊>Earth Surface Processes and Landforms: The journal of the British Geomorphological Research Group >Weathering of granite in Antarctica: I. Light penetration into rock and implications for rock weathering and endolithic communities
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Weathering of granite in Antarctica: I. Light penetration into rock and implications for rock weathering and endolithic communities

机译:南极花岗岩的风化作用:I.岩石的光穿透性及其对岩石风化作用和内石器时代的影响

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摘要

Where rocks are composed of translucent minerals, light penetrates the rock and, in so doing, impacts on the thermal conditions. Where minerals are not translucent all the heat transformation must be at the rock surface, and steep thermal gradients can occur. Where light does penetrate, a component of the incoming radiation is transformed to heat at differing depths within the rock, thereby decreasing the thermal gradient. Equally, light transmissive minerals facilitate endolithic communities, which can also play a role in rock weathering. The attribute of light transmission within rock and the impact this has on the resulting thermal conditions has not been considered within rock weathering studies. An attempt was made to monitor the amount of light penetrating the outer 2 mm of coarse granite under Antarctic summer conditions and to evaluate the thermal impact of this. It was found that the amount of light penetration at this site exceeded modeled or postulated values from biological studies and that it could significantly impact the thermal conditions within the outer shell of the rock. Although the resulting data highlighted a number of flaws in the experimental procedure, sufficient information was generated to provide the first assessment of the range of thermal responses due to light transmissive minerals in rock. Copyright (C) 2007 John Wiley & Sons, Ltd.
机译:在岩石由半透明的矿物组成的地方,光会穿透岩石,并且这样做会影响热条件。在矿物不是半透明的地方,所有热转化必须在岩石表面进行,并且可能会出现陡峭的热梯度。在确实有光穿透的地方,入射辐射的一部分被转换为岩石内不同深度的热量,从而降低了热梯度。同样,透光矿物促进了内石器时代的群落,这也可以在岩石风化中发挥作用。岩石风化研究尚未考虑岩石内部透光的属性及其对最终热条件的影响。试图监视在南极夏季条件下穿透2mm粗花岗岩外部的光量,并评估其热影响。结果发现,该位置的光穿透量超过了生物学研究中的模型或假设值,并且可能显着影响岩石外壳内的热条件。尽管所得数据突出了实验程序中的许多缺陷,但仍产生了足够的信息以对岩石中的透光性矿物引起的热响应范围进行首次评估。版权所有(C)2007 John Wiley&Sons,Ltd.

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