首页> 外文期刊>Journal of Hydrology >Using linked surface-groundwater catchment modelling to assess protection options for environmental assets threatened by dryland salinity in southern-eastern Australia
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Using linked surface-groundwater catchment modelling to assess protection options for environmental assets threatened by dryland salinity in southern-eastern Australia

机译:使用链接的地表-地下水集水模型评估澳大利亚东南部干旱地区盐碱化威胁的环境资产的保护方案

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摘要

Dryland salinity threatens many high-value assets in Australia. Assessing the technical feasibility of intervention requires consideration of spatial and temporal dimensions of land management and associated surface-groundwater interactions. This paper presents results regarding the practicability of protecting assets in a 371,000-ha agriculturally dominated catchment in south-eastern Australia using a physically-based catchment model, the Catchment Analysis Tool (CAT). The model links surface land management and hydrology at the paddock scale (daily time step growth and water use, crop rotations and management) with a fully distributed groundwater model enabling the assessment of agronomic versus engineering options for landscape asset protection. Scenarios assessing management options and costs of planting of perennial vegetation or engineering through groundwater pumping are outlined. The impacts of scenarios are reported under future climatic conditions as well as for the 'steady state' response. The study demonstrates a linked surface-groundwater modelling approach to estimate groundwater capture zones, response times to equilibrium under current and climate change conditions, as well as groundwater abstraction volumes required to protect landscape features. These factors are important considerations for evidence-based decision making about protecting assets from dryland salinity.
机译:旱地盐度威胁着澳大利亚的许多高价值资产。评估干预措施的技术可行性需要考虑土地管理的时空范围以及相关的地表-地下水相互作用。本文介绍了有关使用基于物理的集水量模型(集水量分析工具(CAT))在澳大利亚东南部的一个371,000公顷农业主导集水区中保护资产的实用性的结果。该模型将围场范围内的地面土地管理和水文学(每日时间步长增长和用水,作物轮作和管理)与一个完全分布式的地下水模型联系在一起,从而能够评估用于景观资产保护的农学方案与工程方案。概述了评估管理方案和通过抽水种植多年生植物或工程的成本的方案。在未来的气候条件下以及“稳定状态”响应中都报告了情景的影响。这项研究证明了一种链接的地表-地下水建模方法,可以估算地下水捕获区,在当前和气候变化条件下对平衡的响应时间,以及保护景观特征所需的地下水抽取量。这些因素是基于证据的决策的重要考虑因素,这些决策涉及保护资产免受旱地盐碱化的影响。

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