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Evaluation of surface water dynamics for water-food security in seasonal wetlands, north-central Namibia

机译:纳米比亚中部季节性湿地水粮安防水粮安全评价

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Agricultural use of wetlands is important for food security in various regions. However, land-use changes in wetland areas could alter the water cycle and the ecosystem. To conserve the water environments of wetlands, care is needed when introducing new cropping systems. This study is the first attempt to evaluate the water dynamics in the case of the introduction of rice-millet mixed-cropping systems to the Cuvelai system seasonal wetlands (CSSWs) in north-central Namibia. We first investigated seasonal changes in surface water coverage by using satellite remote sensing data. We also assessed the effect of the introduction of rice-millet mixed-cropping systems on evapotranspiration in the CSSWs region. For the former investigation, we used MODIS and AMSR-E satellite remote sensing data. These data showed that at the beginning of the wet season, surface water appears from the southern (lower) part and then expands to the northern (higher) part of the CSSWs. For the latter investigation, we used data obtained by the classical Bowen ratio-energy balance (BREB) method at an experimental field site established in September 2012 on the Ogongo campus, University of Namibia. This analysis showed the importance of water and vegetation conditions when introducing mixed-cropping to the region.
机译:农业利用湿地是各地区的粮食安全非常重要。然而,在湿地地区土地利用变化可能会改变水的循环和生态系统。为了保护湿地的水环境,引进新的种植系统时需要小心。这项研究是在中北部纳米比亚引进大米小米混合耕作制度的库韦拉伊系统季节性湿地(CSSWs)的情况下,以评估水动力的首次尝试。通过使用卫星遥感数据,我们首先研究在表面覆盖水的季节性变化。我们还评估了蒸散引进大米小米混合耕作系统在CSSWs区域的效果。对于前者的调查中,我们使用远程MODIS和AMSR-E卫星遥感数据。这些数据表明,在雨季的开始,从南方(低)部分出现地表水,然后扩展到CSSWs北部(高)的一部分。对于后者的调查,我们在对Ogongo校园,纳米比亚大学成立于2012年9月的试验田网站所使用的经典的波文比能量平衡(屈曲约束耗能支撑)方法获得的数据。引入混合裁剪到该区域时,这种分析显示水和植被条件的重要性。

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