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Modeling the genesis of luvisols as a function of topographic position in loess parent material

机译:根据黄土母体中地形位置的函数模拟卢维索的成因

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摘要

A simulation model SoilGen2 was developed to simulate aspects of soil formation under a range of climatic conditions (udic, ustic, xeric and aridic moisture regimes and cryic, frigid, mesic and thermic soil temperature regimes), various parent materials, vegetation types, slopes and expositions. Simulated processes include water, solute and heat flow, C-cycle, bioturbation, physical weathering and clay migration. After a calibration of the calcite dissolution constant and parameters affecting clay migration, modeling results after 15,000 years were confronted with today's measurements at 3 positions in a toposequence in loess. The model was able to simulate the formation of A, E and Bt-horizons and decalcification of the loess, and responded to local differences in exposition and slope in a way confirmed by measurements along the toposequence. Best values for dissimilarity were obtained for organic carbon, sand % and CEC Results indicate that simulation quality is sensitive to adequate estimation of precipitation, potential evapotranspiration and evaporation from leaf interception. Likewise, an accurate reconstruction of the initial condition of the parent material in terms of calcite content, bulk density and clay content is important to allow correct estimates of clay transport and decalcification.
机译:开发了一个模拟模型SoilGen2来模拟一系列气候条件下的土壤形成情况(土壤,湿润,干燥和干旱的土壤水分状况,以及寒冷,寒冷,中温和高温的土壤温度状况),各种母体材料,植被类型,坡度和博览会。模拟过程包括水,溶质和热流,C循环,生物扰动,物理风化和粘土迁移。在对方解石溶出常数和影响粘土迁移的参数进行了校准之后,今天的测量结果在15,000年后的黄土中一直处在3个位置。该模型能够模拟A,E和Bt地平线的形成以及黄土的脱钙,并通过沿正序测量确定的方式响应了局部和斜率的差异。对于有机碳,含沙量和CEC,获得了相异的最佳值。结果表明,模拟质量对降水,潜在蒸散量和叶片截留的蒸发量的适当估计很敏感。同样,就方解石含量,堆积密度和粘土含量而言,准确重建母体材料的初始条件对于确保正确估计粘土的运输和脱钙也很重要。

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  • 来源
    《Quaternary International》 |2012年第28期|p.3-17|共15页
  • 作者

    Peter A. Finke;

  • 作者单位

    Department of Geology and Soil Science, Ghent University, Krijgslaan 281, B-9000 Gent, Belgium;

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  • 正文语种 eng
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