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Ecosystem changes following the 2016 Kumamoto earthquakes in Japan: Future perspectives

机译:日本2016年熊本地震的生态系统变化:未来的观点

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摘要

Major earthquakes cause widespread environmental and socioeconomic disruptions that persist for decades. Extensive ground disturbances that occurred during the shallow-focus Kumamoto earthquakes will affect future sustainability of ecosystem services west of Aso volcano. Numbers of earthquake-initiated landslides per unit area were higher in grasslands than forests, likely owing to greater root reinforcement of trees, and mostly initiated on ridgelines and/or convex/planar hillslopes. Most landslides traveled short distances and did not initially evolve into debris flows; resultant sediments and wood accumulating in headwater channels can be mobilized into debris flows during future storms. Fissures along ridgelines may promote water ingress and induce future landslides and debris flows that affect residents downstream. Native grasses are at risk because of habitat fragmentation caused by ground disturbances, extensive damage to rural roads, and abandonment of traditional pasture management practices. Sustainable management of affected areas needs to consider future risk of cascading hazards and long-term socioeconomic impacts.
机译:主要地震导致几十年来持续存在的环境和社会经济中断。浅焦点熊本地地震期间发生的广泛地面障碍将影响aso火山以西的生态系统服务的未来可持续性。草原上每单位面积的地震启动山体滑坡数比森林更高,可能由于树木的较大加固,并且大多在ridgelines和/或凸面/平面山坡上发起。大多数滑坡行驶的距离短,最初没有进化到碎片流动;在未来的风暴期间,可以将带有沉积物和堆积在下部频道中的沉积物和木材流入碎片流动。沿着脊柱杆籽的裂缝可能会促进进水,并诱导将来影响下游居民的未来山体滑坡和碎片流动。由于地面干扰引起的栖息地碎片,农村道路造成广泛损害,以及放弃传统牧场管理实践,本土草是风险的。受灾受灾地区的可持续管理需要考虑级联危害和长期社会经济影响的未来风险。

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