首页> 外文期刊>Sedimentology: Journal of the International Association of Sedimentologists >Calibration of modelled mixing patterns in loess grain-size distributions: an example from the north-eastern margin of the Tibetan Plateau, China
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Calibration of modelled mixing patterns in loess grain-size distributions: an example from the north-eastern margin of the Tibetan Plateau, China

机译:黄土粒度分布中混合模式的标定-以中国青藏高原东北缘为例

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摘要

Genetically meaningful decomposition (unmixing) of sediment grain-size distributions is accomplished with the end-member modelling algorithm. Unmixing of the loess grain-size distributions of a Late Quaternary loess-palaeosol succession from the north-eastern Tibetan Plateau indicates that the loess is a mixture of three end-members representing very fine sandy, coarse silty and medium silty loess. The unmixing approach potentially enables the unravelling of sediment fluxes from multiple dust sources, opening the way to significant advances in palaeoclimatic reconstructions from loess grain-size distribution data. However, as laser-diffraction size analysis is a volume-based technique, the proportional contributions of the modelled end-members might deviate (significantly) from weight proportions. Hence, calibration of the end-member volume proportions to weight proportions must be established before one can calculate the source-specific dust fluxes. This paper reports the findings of a sediment-mixing experiment which enables calibration of the modelled mixing patterns established for the Tibetan loess-palaeosol succession.
机译:沉积物粒度分布的遗传意义上的分解(解混)是通过末端成员建模算法完成的。青藏高原东北部晚第四纪黄土-古土壤演替过程中黄土的粒度分布没有混合,表明该黄土是由三个末端成员组成的混合物,代表了非常细的沙质,粗粉质粉土和中等粉质黄土。分解方法有可能使来自多种粉尘源的沉积物通量得以散开,这为黄土粒度分布数据在古气候重建中的重大进展开辟了道路。但是,由于激光衍射尺寸分析是基于体积的技术,因此建模端部构件的比例贡献可能与重量比例有偏差(明显)。因此,必须先对端部件体积比例与重量比例进行校准,然后才能计算特定于源的粉尘通量。本文报告了沉积物混合实验的结果,该实验能够校准为西藏黄土-古土壤演替建立的模拟混合模式。

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