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Granitic Boulder Erosion Caused by Chaparral Wildfire: Implications for Cosmogenic Radionuclide Dating of Bedrock Surfaces

机译:丛林野火引起的花岗岩巨石侵蚀:基岩表面的宇宙成因放射性核素年代测定的意义

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摘要

Rock surface erosion by wildfire is significant and widespread but has not been quantified in southern California or for chaparral ecosystems. Quantifying the surface erosion of bedrock outcrops and boulders is critical for determination of age using cosmogenic radionuclide techniques, as even modest surface erosion removes the accumulation of the cosmogenic radionuclides and causes significant underestimate of age. This study documents the effects on three large granitic boulders following the Esperanza Fire of 2006 in southern California. Spalled rock fragments were quantified by measuring the removed rock volume from each measured boulder. Between 7% and 55% of the total surface area of the boulders spalled in this single fire. The volume of spalled material, when normalized across the entire surface area, represents a mean surface lowering of 0.7–12.3 mm. Spalled material was thicker on the flanks of the boulders, and the height of the fire effects significantly exceeded the height of the vegetation prior to the wildfire. Surface erosion of boulders and bedrock outcrops as a result of wildfire spalling results in fresh surfaces that appear unaffected by chemical weathering. Such surfaces may be preferentially selected by researchers for cosmogenic surface dating because of their fresh appearance, leading to an underestimate of age.
机译:野火对岩石表面的侵蚀是广泛的,但在加利福尼亚南部或丛林生态系统中尚未得到量化。量化基岩露头和巨石的表面侵蚀对于使用宇宙成因放射性核素技术确定年龄至关重要,因为即使适度的表面侵蚀也会消除宇宙成因放射性核素的积累,并导致年龄大大被低估。这项研究记录了2006年南加州埃斯佩兰萨大火之后对三个大型花岗岩巨石的影响。通过测量从每个测得的巨石中去除的岩石体积,可以量化剥落的岩石碎片。在这次大火中,巨石总表面积的7%至55%之间散裂了。当在整个表面积上进行归一化处理时,剥落材料的体积表示平均表面下降0.7-12.3 mm。巨石侧面的剥落材料较厚,火势的高度大大超过了野火之前的植被高度。野火散落的结果是巨石和基岩露头的表面侵​​蚀导致新鲜表面看上去不受化学风化的影响。研究人员可能会优先选择此类表面进行宇宙成因表面测年,因为它们的外观新颖,导致年龄被低估。

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