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结构化土壤模型应用综述:a)水流与示踪剂运移。

A review of model applications for structured soils: a) Water flow and tracer transport.

作者信息

Köhne John Maximilian, Köhne Sigrid, Simůnek Jirka

机构信息

Helmholtz Centre for Environmental Research - UFZ, Theodor-Lieser-Strasse 4, D-06120 Halle (Saale), Germany.

出版信息

J Contam Hydrol. 2009 Feb 16;104(1-4):4-35. doi: 10.1016/j.jconhyd.2008.10.002. Epub 2008 Oct 17.

Abstract

Although it has many positive effects, soil structure may adversely affect the filtering function of the vadose zone that protects natural water resources from various sources of pollution. Physically based models have been developed to analyze the impacts of preferential water flow (PF) and physical non-equilibrium (PNE) solute transport on soil and water resources. This review compiles results published over the past decade on the application of such models for simulating PF and PNE non-reactive tracer transport for scales ranging from the soil column to the catchment area. Recent progress has been made in characterizing the hydraulically relevant soil structures, dynamic flow conditions, inverse parameter and uncertainty estimations, independent model parameterizations, stochastic descriptions of soil heterogeneity, and 2D or 3D extensions of PNE models. Two-region models are most widely used across all scales; as a stand-alone approach to be used up to the field scale, or as a component of distributed, larger scale models. Studies at all scales suggest that inverse identification of parameters related to PF is generally not possible based on a hydrograph alone. Information on flux-averaged and spatially distributed local resident concentrations is jointly required for quantifying PNE transport. At the column and soil profile scale, model predictions of PF are becoming increasingly realistic through the implementation of the 3D soil structure as derived from hydrogeophysical and tracer techniques. At the field scale, integrating effects of the soil structure and its spatial variability has been attempted by combining 1D PNE approaches with stochastic parameter sampling. At the catchment area scale, the scarcity of data makes validation of PF related model components a task yet to be accomplished. The quest for easily measurable proxy variables, as 'the missing link' between soil structure and model parameters, continues in order to improve the practical predictive capability of PF-PNE models. A follow-up paper complementing this manuscript reviews model applications involving non-equilibrium transport of pesticides, as representatives of reactive solutes.

摘要

尽管土壤结构有许多积极影响,但它可能会对包气带的过滤功能产生不利影响,而包气带的作用是保护自然资源免受各种污染源的侵害。基于物理的模型已被开发出来,用于分析优先水流(PF)和物理非平衡(PNE)溶质运移对土壤和水资源的影响。本综述汇编了过去十年发表的关于此类模型在模拟从土壤柱到集水区尺度的PF和PNE非反应性示踪剂运移方面的应用结果。在表征与水力相关的土壤结构、动态流动条件、反演参数和不确定性估计、独立模型参数化、土壤非均质性的随机描述以及PNE模型的二维或三维扩展方面取得了最新进展。两区模型在所有尺度上应用最为广泛;既可以作为一种独立方法用于田间尺度及以下,也可以作为分布式大尺度模型的一个组成部分。所有尺度的研究表明,仅根据水文曲线通常无法对与PF相关的参数进行反演识别。量化PNE运移需要通量平均和空间分布的局部滞留浓度信息。在柱体和土壤剖面尺度上,通过采用水文地球物理和示踪技术推导的三维土壤结构,PF的模型预测变得越来越逼真。在田间尺度上,已尝试通过将一维PNE方法与随机参数采样相结合来综合考虑土壤结构及其空间变异性的影响。在集水区尺度上,数据的稀缺使得与PF相关的模型组件的验证成为一项尚未完成的任务。为了提高PF - PNE模型的实际预测能力,人们继续寻求易于测量的替代变量,作为土壤结构和模型参数之间的“缺失环节”。一篇补充本手稿的后续论文将综述涉及农药非平衡运移的模型应用,农药作为反应性溶质的代表。

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