首页> 外文期刊>Geological Society of America Bulletin >Regional-scale assessment of a sequence-bounding paleosol on fluvial fans using ground-penetrating radar,eastern San Joaquin Valley,California
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Regional-scale assessment of a sequence-bounding paleosol on fluvial fans using ground-penetrating radar,eastern San Joaquin Valley,California

机译:加利福尼亚州圣华金河谷东部地区的探地雷达对河流扇上有序边界古土壤的区域尺度评估

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Recently developed sequence stratigraphic models for fluvial fans suggest that sequence boundaries in these deposits are marked by laterally extensive paleosols;however,these models were based on paleosol correlations inferred between wells.To test this,we collected approx 190 km of ground-penetrating radar (GPR)profiles on three fluvial fans from the eastern San Joaquin Valley,California,to determine the lateral extent and character of a buried near-surface sequence-bounding paleosol.This paleosol,recognized on GPR by rapid shallow signal attenuation,extends across large areas on all three fluvial fans.Limited areas of significantly increased signal penetration were also identified,and these zones are interpreted to indicate the absence of the paleosol.The zones where the paleosol is missing likely correspond to paleo-outwash channel activity on the fan surfaces that,when active,was able to partially or fully scour through the paleosol and deposit coarse-grained channel sediments in place of the sequence boundary.Erosional breaks are most common on the Kings River fan,while few breaks on the Tuolumne and Merced River fans may indicate less paleochan-nel activity on these fan surfaces during the last outwash event.Differences in channel activity between fans indicate that the Kings River migrated across its fan during the last outwash event,as evidenced by the large number of areas with increased GPR signal penetration and the presence of numerous channel deposits recorded on the soil surveys,while the Tuolumne and Merced Rivers only deposited floodplain fines,with the channels remaining inside a shallow incised valley,as evidenced by the relatively low number of areas with increased GPR signal penetration and the presence of primarily fine-grained material recorded on the soil surveys.Factors controlling these differences may include variable valley subsidence rates and differences in the San Joaquin Basin overall width at each fan location.
机译:最近开发的河流扇状层序地层模型表明,这些沉积层中的层序边界以横向广泛的古土壤为标志;然而,这些模型是基于井间推断的古土壤相关性。为了对此进行测试,我们收集了大约190 km的探地雷达( GPR)剖面图来自加利福尼亚州圣华金河谷东部的三个河扇,以确定埋藏在近地表层边界的古土壤的横向范围和特征。这种古土壤在GPR上通过快速的浅信号衰减而被识别,并扩展到大面积在所有三个流域风扇上也发现了信号渗透明显增加的有限区域,这些区域被解释为表明没有古土壤。古土壤缺失的区域可能对应于风扇表面上的古冲洗通道活动活跃时,能够部分或全部冲刷古土壤,并在p沉积粗粒河道沉积物序列边界的花边。在Kings River扇上最常见的是侵蚀性断裂,而在最后一次冲刷事件中,Tuolumne和Merced River扇上的很少断裂可能表明这些扇面上的古漏斗活动较少。表示国王河在最后一次冲刷事件中通过其扇子迁移,这由大量具有增加的GPR信号穿透力的区域以及土壤调查中记录的大量河道沉积物证明,而Tuolumne和Merced Rivers仅沉积洪泛区罚款,而渠道仍留在浅切谷内,这由相对较少的GPR信号渗透增加的区域以及土壤调查中记录的主要是细粒物质的存在所证明。控制这些差异的因素可能包括变化不定的谷底沉降每个风扇位置的San Joaquin盆地总宽度的变化率和差异。

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