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Monitoring tropical peat related settlement using ISBAS InSAR, Kuala Lumpur International Airport (KLIA)

机译:使用吉隆坡国际机场(KLIA)的ISBAS INSAR监测热带泥炭相关结算

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Rapid population growth in South-East Asia has placed immense pressure upon lowland regions both to supply food and employment and space for residential, commercial and infrastructure development. This pressure has led to sites on tropical peatland previously considered unsuitable for development to be revisited. One such site, the KLIA2 terminal and runway, Kuala Lumpur International Airport which opened in May 2014 at a cost of 3.6 billion MYR has been beset by well documented subsidence problems. Coverage of the tropics by the Sentinel-1 satellite constellation presents an opportunity to monitor the ongoing subsidence at KLIA 2, identify potential knowledge gaps and help inform more sustainable infrastructure development in tropical peatland regions. Our results show that the ISBAS InSAR method produces reproducible ground deformation maps which can clearly identify the patterns of deformation across both urban infrastructure and adjacent rural plantations and tropical peat swamp. This is particularly well defined around the terminal building at KLIA-2 where different ground preparation and foundation design have resulted in stable terminal buildings and subsidence of surrounding pavement. Deformation is greatest in the runway area where alternate bands of uplift and subsidence presumably accompany the greatest loads associated with landing aircraft. In contrast, areas where peat replacement was the primary form of ground preparation, ground motion is stable, however this comes at high economic and environmental cost.
机译:东南亚人口迅速增长为低地地区提供了巨大的压力,供应粮食和就业和住宅,商业和基础设施发展。这种压力导致了以前认为不适合重新审查的热带泥炭块的地点。在2014年5月开业的吉隆坡国际机场,吉隆坡国际机场的一个这样的网站,Klia2终端和跑道以36亿多数人开放的成本,通过良好的记录沉降问题困扰着。 Sentinel-1卫星星座的热带地区的覆盖范围提供了监控KLIA 2持续沉降的机会,确定潜在的知识差距,并帮助在热带泥炭地区提供更可持续的基础设施发展。我们的研究结果表明,ISBAS Insar方法产生可重复的地面变形图,可以清楚地识别城市基础设施和邻近农村种植园和热带泥炭沼泽的变形模式。这在Klia-2的终端建筑周围特别良好地定义,其中不同的地面准备和基础设计导致稳定的终端建筑物和周围路面的沉降。在跑道区域中变形是最大的,其中隆起和沉降的交替频带可能伴随着与着陆飞机相关的最大载荷。相比之下,泥炭置换的区域是地面准备的主要形式,地面运动稳定,但这具有高经济和环境成本。

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