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A two-layer variable infiltration capacity land surface representation for general circulation models.

机译:一般循环模型的两层可变渗透能力陆地表面表示。

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摘要

A simple two-layer variable infiltration capacity (VIC-2L) land surface model suitable for incorporation in general circulation models (GCMs) was developed. The model consists of a two-layer characterization of the soil within a GCM grid cell, and uses an aerodynamic representation of latent and sensible heat fluxes at the land surface. The effects of GCM spatial subgrid variability of soil moisture and a hydrologically realistic runoff mechanism are represented in the soil layers. In the upper layer, the spatial distribution of infiltration and soil moisture capacities is included. The lower layer is lumped spatially and uses a nonlinear drainage representation. The model partitions the area of interest into multiple land surface cover types; for each land cover type the fraction of plant roots in the upper and lower zone is specified. Evaporation occurs via canopy evaporation, evaporation from bare soil, and transpiration, which is represented using a canopy and architectural resistance formulation. The model was tested using long-term hydrologic and climatalogical data for Kings Creek, Kansas to estimate and validate the hydrological parameters. Surface flux data from three First International Satellite Land Surface Climatology Project Field Experiment (FIFE) intensive field campaigns in the summer and fall of 1987 in central Kansas, and from the Anglo-Brazilian Amazonian Climate Observation Study (ABRACOS) in Brazil were used to validate the model-simulated surface energy fluxes and surface temperature.;In addition, a derived distribution approach which accounts for the effects of subgrid scale spatial variabilities of precipitation on surface energy fluxes, soil moisture, and runoff production was developed for an extended version of VIC-2L model. The derived distribution approach differs from pixel-based approaches which discretize precipitation over a spatial domain, and from previous statistical approaches that combine the point precipitation distribution with the point statistical distribution of selected land surface characteristics. The results of the derived distribution method are compared with those obtained using an exhaustive pixel-based approach, and the results obtained by applying uniform spatially averaged precipitation to the VIC-2L model. Under most conditions, the derived distribution approach gives good approximations to the pixel-based approach, and is superior to the constant precipitation approach for surface fluxes, surface temperature, runoff, and soil moisture. Finally, VIC-2L sensitivity of predictions to model parameters were explored for two different climate regimes using both fractional factorial and one-at-a-time sensitivity analyses.
机译:开发了一个简单的两层可变渗透能力(VIC-2L)地表模型,适合纳入一般循环模型(GCM)。该模型包括GCM网格单元内土壤的两层特征,并使用土地表面潜热通量和感热通量的空气动力学表示。 GCM空间亚网格对土壤水分的变异性和水文现实径流机制的影响体现在土壤层中。在上层,包括入渗和土壤水分容量的空间分布。下层在空间上集总,并使用非线性排水表示。该模型将关注区域划分为多种陆地覆盖类型。对于每种土地覆盖类型,都指定了上部和下部区域中植物根的比例。蒸发是通过冠层蒸发,从裸露土壤蒸发和蒸腾发生的,这通过冠层和建筑阻力公式来表示。使用堪萨斯州金斯克里克的长期水文和气候学数据对模型进行了测试,以估计和验证水文参数。 1987年夏季和秋季,在堪萨斯州中部的三个首次国际卫星陆地地面气候学项目野外实验(FIFE)密集野外活动,以及在巴西的盎格鲁-巴西亚马逊气候观测研究(ABRACOS)中使用了表面通量数据进行验证此外,针对VIC的扩展版本,开发了一种导出方法,该方法考虑了亚网格尺度降水的空间变异性对表面能通量,土壤水分和径流产生的影响。 -2L模型。派生的分布方法不同于基于像素的方法,该方法在空间域上离散降水,并且不同于先前的统计方法,该方法将点降水量分布与所选陆面特征的点统计分布相结合。将派生分布方法的结果与使用基于穷举像素的方法获得的结果进行比较,并将通过对VIC-2L模型应用均匀的空间平均降水获得的结果进行比较。在大多数情况下,派生的分布方法可以很好地近似基于像素的方法,并且在表面通量,表面温度,径流和土壤湿度方面优于恒定降水方法。最后,使用分数阶乘和一次敏感性分析,探讨了VIC-2L对模型参数预测的敏感性。

著录项

  • 作者

    Liang, Xu.;

  • 作者单位

    University of Washington.;

  • 授予单位 University of Washington.;
  • 学科 Hydrology.;Physics Atmospheric Science.
  • 学位 Ph.D.
  • 年度 1994
  • 页码 235 p.
  • 总页数 235
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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