首页> 外文期刊>Hydrology and Earth System Sciences >Mapping groundwater abstractions from irrigated agriculture: big data, inverse modeling, and a satellite–model fusion approach
【24h】

Mapping groundwater abstractions from irrigated agriculture: big data, inverse modeling, and a satellite–model fusion approach

机译:灌溉农业的地下水抽象:大数据,逆建模和卫星模型融合方法

获取原文
           

摘要

The agricultural sector in Saudi Arabia has witnessed rapid growth in both production and area under cultivation over the last few decades. This has prompted some concern over the state and future availability of fossil groundwater resources, which have been used to drive this expansion. Large-scale studies using satellite gravimetric data show a declining trend over this region. However, water management agencies require much more detailed information on both the spatial distribution of agricultural fields and their varying levels of water exploitation through time than coarse gravimetric data can provide. Relying on self-reporting from farm operators or sporadic data collection campaigns to obtain needed information are not feasible options, nor do they allow for retrospective assessments. In this work, a water accounting framework that combines satellite data, meteorological output from weather prediction models, and a modified land surface hydrology model was developed to provide information on both irrigated crop water use and groundwater abstraction rates. Results from the local scale, comprising several thousand individual center-pivot fields, were then used to quantify the regional-scale response. To do this, a semi-automated approach for the delineation of center-pivot fields using a multi-temporal statistical analysis of Landsat 8 data was developed. Next, actual crop evaporation rates were estimated using a two-source energy balance (TSEB) model driven by leaf area index, land surface temperature, and albedo, all of which were derived from Landsat 8. The Community Atmosphere Biosphere Land Exchange (CABLE) model was then adapted to use satellite-based vegetation and related surface variables and forced with a 3 km reanalysis dataset from the Weather Research and Forecasting (WRF) model. Groundwater abstraction rates were then inferred by estimating the irrigation supplied to each individual center pivot, which was determined via an optimization approach that considered CABLE-based estimates of evaporation and TSEB-based satellite estimates. The framework was applied over two study regions in Saudi Arabia: a small-scale experimental facility of around 40 center pivots in Al Kharj that was used for an initial evaluation and a much larger agricultural region in Al Jawf province comprising more than 5000 individual fields across an area exceeding 2500 km2. Total groundwater abstraction for the year 2015 in Al Jawf was estimated at approximately 5.5 billion cubic meters, far exceeding any recharge to the groundwater system and further highlighting the need for a comprehensive water management strategy. Overall, this novel data–model fusion approach facilitates the compilation of national-scale groundwater abstractions while also detailing field-scale information that allows both farmers and water management agencies to make informed water accounting decisions across multiple spatial and temporal scales.
机译:沙特阿拉伯农业部门在过去几十年中,在培养后的生产和地区迅速增长。这促使对国家和未来的化石地下水资源的可用性有所关注,这些资源已被用于推动这种扩张。使用卫星重量数据的大规模研究显示了该地区的下降趋势。然而,水管理机构需要更多有关农业领域的空间分布及其通过时间的不同水剥削程度的详细信息,而不是粗略重量数据。依靠农场运营商或零星数据收集活动的自我报告,以获取所需信息是不可行的选择,也不允许回顾性评估。在这项工作中,开发了一种结合卫星数据,天气预报模型的气象输出和改进的陆地水文模型的水会计框架,以提供有关灌溉作物用水和地下水抽象率的信息。然后,局部规模包括几千个单独的中心枢轴场,用于量化区域规模响应。为此,开发了一种利用Landsat 8数据的多时间统计分析来描绘中心枢轴场的半自动方法。接下来,使用由叶面积指数,陆地表面温度和Albedo驱动的双源能量平衡(TSEB)模型来估计实际作物蒸发速率,所有这些模型来自Landsat 8.社区气氛生物圈土地交换(电缆)然后,模型适用于使用卫星植被和相关的表面变量,并迫使来自天气研究和预测(WRF)模型的3公里的Reanalysy DataSet。然后通过估算提供给每个单独的中心枢轴的灌溉来推断出地下水抽象率,这是通过定期确定的,该灌溉通过考虑基于电缆的蒸发和基于TSE的卫星估算来确定的优化方法。该框架应用于沙特阿拉伯的两项研究区域:在Al Kharj中的一个小型实验设施约为40个中心枢轴,用于初步评估,并且在Al Jawf省内的一个更大的农业区域,包括超过5000个个体领域面积超过2500平方公里。 2015年2015年的地下水抽象估计约为55亿立方米,远远超过地下水系统的任何充电,进一步突出了对综合水管理策略的需求。总体而言,这种新型数据模型融合方法有助于汇编国家规模的地下水抽象,同时还详细说明了允许农民和水管理机构的现场规模信息,以便在多个空间和时间尺度上做出明智的水会计决策。

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号