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Rock fragment and spatial variation of soil hydraulic parameters are necessary on soil water simulation on the stony -soil hillslope

机译:土壤水力参数的岩石片段和空间变化是在石渣 - 机渣山坡上的土壤水模拟所必需的

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摘要

Whether the spatial variation and influence of rock fragment contents (RFCs) on soil hydraulic parameters (SHPs) should be jointly considered in the soil water simulation have been less investigated in previous studies. In this study, we tested whether considering these factors were necessary in the soil water simulation on a representative stony-soil hillslope located in Taihu Lake Basin, China. Five schemes of SHPs in HYDRUS-3D model were established. They were (i) MultiRFHet: spatially varied SHPs extracted from Dumer's multimodal retention function based on the observed soil water retention data; (ii) RosHom: spatially uniformed SHPs derived from ROSETTA; (iii) RosHet: spatially varied SHPs derived from ROSETTA; (iv) RosFtFCHom: spatially uniformed SHPs derived from ROSETTA and adjusted by RFCs; (v) RosRFCHet: spatially varied SHPs derived from ROSETTA and adjusted by RFCs. Results indicated when the spatial variation and influence of RFCs on SHPs were both considered (MultiRFHet and RosRFCHet), acceptable accuracies (Nash-Sutcliffe efficiency or NSE 0.58 for MultiRFHet and 0.17 for RosRFCHet) were achieved in simulating the soil water storage (SWS) variation. Since the MultiRFHet required the calibration by the observed soil water retention data, RosRFCHet was a good alternative in the simulation. On the contrary, the SHPs acquired without considering neither the RFCs nor the spatial variation yielded unacceptable simulation results (NSE general 0). This demonstrated that spatial variation and influence of RFCs on SHPs should be included in the SWS simulation on this stony-soil hillslope, although it had limited effect in subsurface flow simulation.
机译:在土壤水模拟中应共同考虑在土壤水力参数(SHPS)上的空间变异和影响是否在土壤水模拟中,在以前的研究中较少研究。在这项研究中,我们测试了考虑在中国太湖盆地的代表性石土山坡上的土壤水模拟中是必要的。建立了肼 - 3D模型中的五种SHP方案。它们是(i)Multirfhet:根据观察到的土壤水保留数据,从Dumer的多峰固定功能中提取空间各种SHP; (ii)Roshom:来自罗萨的空间制服的SHP; (iii)Roshet:来自罗萨的空间各种SHPS; (iv)Rosftfchom:从Rosetta衍生的空间均匀的SHP,由RFC调整; (v)ROSRFCHET:来自Rosetta的空间各种SHP,由RFC调整。结果表明,在模拟土壤蓄水池(SWS)时,在考虑(MultirfHet和Rosrfchet)时,可接受的精度(Multirfhet和Multirfhet的NSE 0.58和NSE 0.17的NSE 0.58)。 ) 变化。由于Multirfhet所需的校准被观察到的土壤水保留数据,ROSRFCHET在模拟中是一种很好的替代方案。相反,在不考虑RFC和空间变化的情况下获得的SHP不会产生不可接受的模拟结果(NSE概述& 0)。这表明,在该石土山坡上的SWS仿真中,SWS模拟中的空间变化和影响应包括在该地下流动模拟的效果有限。

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  • 来源
    《Journal of Hydrology》 |2018年第2018期|共11页
  • 作者单位

    Chinese Acad Sci Nanjing Inst Geog &

    Limnol Key Lab Watershed Geog Sci Nanjing 210008 Jiangsu Peoples R China;

    Chinese Acad Sci Nanjing Inst Geog &

    Limnol Key Lab Watershed Geog Sci Nanjing 210008 Jiangsu Peoples R China;

    Chinese Acad Sci Nanjing Inst Geog &

    Limnol Key Lab Watershed Geog Sci Nanjing 210008 Jiangsu Peoples R China;

    Chinese Acad Sci Nanjing Inst Geog &

    Limnol Key Lab Watershed Geog Sci Nanjing 210008 Jiangsu Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 水文科学(水界物理学);
  • 关键词

    Rock fragment; Stony soils; Dual-porosity; HYDRUS-3D model;

    机译:岩石片段;石土;双孔隙度;肼 - 3D模型;

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