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首页> 外文期刊>Climate Risk Management >Using smart ICT to provide weather and water information to smallholders in Africa: The case of the Gash River Basin, Sudan
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Using smart ICT to provide weather and water information to smallholders in Africa: The case of the Gash River Basin, Sudan

机译:使用智能ICT向非洲小农提供天气和水信息:苏丹加什河流域的案例

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p id="sp0005"In the Gash Delta of Eastern Sudan, spate irrigation (flood-recession farming) contributes substantially to rural livelihoods by providing better yields than rainfed dryland farming. However, spate irrigation farmers are challenged by the unpredictability of flooding. In recent decades, the number of farmers practicing spate irrigation has decreased, due to varying rainfall intensity and frequency, insufficient infrastructure and farmers’ limited capacity to manage such variations. One solution that may help farmers face such challenges is for them to access real-time water-related information by using smart Information and Communication a Technology (ICT). This paper shows how integrating remote sensing, Geographical Information Systems (GIS), flood-forecasting models and communication platforms can, in near real time, alert smallholder farmers and relevant government departments about incoming floods, using the Gash basin of Sudan as an example. The Ministry of Water Resources of Sudan used the findings of this study to transform farmers’ responses to flood arrival from being ‘reactive’, to planning for the flood event. Intensive on-site and institutional efforts to build the capacity of farmers, farmer organizations, development departments and officers of the Ministry helped to develop the initiative from simply sending ‘emergency alerts’ to enabling stakeholders to visually see the flood event unfolding in the region and to plan accordingly for storing water, operating spate-irrigation systems and undertaking cropping activities. The research, initially conducted on a 60?×?60?km site, was later extended to the entire Gash basin. The paper outlines how to develop tools that can monitor plot-specific information from satellite measurements, and supply detailed and specific information on crops, rather than providing very general statements on crop growth. Farmers are able to use such tools to optimize their farm profits by providing water to their crops in the right place, at the right time and in the right quantity. Finally, the work demonstrates the high potential of combining technology, namely remote sensing data and simple a agro-meteorological model with limited parameters, for large-scale monitoring of spate irrigation systems and information sharing to advise farmers as to how to apply this information to their managerial decisions.
机译:id =“ sp0005”>在苏丹东部的加什三角洲,大潮灌溉(洪水泛滥农业)比雨养旱地农业提供更好的产量,从而对农村生计做出了重大贡献。但是,大量灌溉的农民面临着洪水不可预测的挑战。在最近几十年中,由于降雨强度和频率的变化,基础设施不足以及农民应对这种变化的能力有限,实行连续灌溉的农民人数有所减少。一种可以帮助农民面对此类挑战的解决方案是,他们可以使用智能信息和通信技术(ICT)访问与水有关的实时信息。本文以苏丹的加什盆地为例,展示了如何将遥感,地理信息系统(GIS),洪水预报模型和通信平台相集成,从而近实时地向小农户和有关政府部门发出洪水预警。苏丹水资源部利用这项研究的结果,将农民对洪水到达的反应从“反应性”转变为对洪水事件的计划。为了加强农民,农民组织,发展部门和农业部官员的能力,在现场和机构上进行了广泛的努力,从简单地发出“紧急警报”到使利益相关者能够直观地看到该地区正在发生的洪灾事件,从而推动了这一举措的发展。相应地计划储水,运行潮水灌溉系统并进行种植活动。这项研究最初是在60××60公里的场地上进行的,后来又扩展到整个加什盆地。本文概述了如何开发工具来监视卫星测量中的特定于地块的信息,并提供有关作物的详细信息和特定信息,而不是提供关于作物生长的非常笼统的说明。农民能够通过在正确的位置,正确的时间和正确的数量向其作物提供水来利用这些工具来优化其农场利润。最后,这项工作证明了将遥感数据和简单的具有有限参数的农业气象模型相结合的技术的潜力,该技术可用于大规模监测连续灌溉系统和信息共享,从而向农民建议如何将这些信息应用于他们的管理决定。

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