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DInSAR based land deformation detection in the karst landscape of Gunung Sewu

机译:基于DINSAR基于Gunung Sewu岩溶景观的土地变形检测

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Hydrologic element specifically precipitation was fathomed to contribute in land deformation of karst landscape. Cempaka Tropical Cyclone (TC) had ensued in the last of 2017 in the Indian Ocean implicated to a high rate of rainfall upon the karst landscape of Gunung Sewu. This research aimed to identify the areas where sustained of land deformation due to the Cempaka TC. This research used a method of Differential Interferometry Synthetic Aperture Radar (DInSAR) by utilising a pair of Sentinel-1A satellite imageries to obtain the information of land deformation. The research result demonstrated the karst landscape of Gunung Sewu encountered land deformation after the Cempaka TC had impinged it. The land deformation occurred in the northern region of Gunung Sewu karst landscape in the forms of land uplifting with a range of 1 – 2 mm/year (115.36 km~(2)) and gradually became a land subsidence with a range of -1 - -4 mm/year (989.25 km~(2)) in the southern region of Gunung Sewu karst landscape. This finding was important as a preliminary research to mitigate the hazards and conserve the karst landscape of Gunung Sewu upon the threats of extreme weather in the future.
机译:水文元素特异性沉淀被摧毁,以有助于喀斯特景观的陆地变形。 Cempaka热带气旋(TC)在印度洋的最后一次在2017年,这是一个高涨的降雨率,令人震惊的甘水缝合浮桥景观。这项研究旨在识别由于Cempaka TC引起的持续土地变形的区域。该研究通过利用一对哨兵-1a卫星成像仪来获得差动干涉法合成孔径雷达(Dinsar)的方法,以获得陆变形的信息。研究结果表明,Cempaka TC推出它后,甘通缝合令人遇到的甘蓝景观。土地变形发生在Gunung Sewu Karst景观中的北部地区,以1 - 2毫米/年(115.36 km〜(2)),逐渐变成了一系列-1的土地沉降 - -4毫米/年(989.25 km〜(2))在Gunung Sewu岩溶景观的南部地区。这一发现作为初步研究很重要,以减轻对未来极端天气威胁的危险和节省Gunung Sewu的喀斯特景观。

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