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Watch Out for the Tailings Pond, a Sharp Edge Hanging over Our Heads: Lessons Learned and Perceptions from the Brumadinho Tailings Dam Failure Disaster

机译:注意尾矿池塘,悬挂在我们的头上的锋利的边缘:经验教训和来自Brumadinho尾矿坝失败灾难的教训

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摘要

A catastrophic tailings dam failure disaster occurred in Brumadinho, Brazil on 25 January 2019, which resulted in over 270 casualties, 24,000 residents evacuated, and a huge economic loss. Environmental concerns were raised for the potential pollution of water due to tailings waste entering the Paraopeba River. In this paper, a detailed analysis has been carried out to investigate the disaster conditions of the Brumadinho dam failure using satellite images with different spatial resolutions. Our in-depth analysis reveals that the hazard chain caused by this failure contained three stages, namely dam failure, mudflow, and the hyperconcentrated flow in the Paraopeba River. The variation characteristics of turbidity of the Rio Paraopeba River after the disaster have also been investigated using high-resolution remote sensing images, followed by a qualitative analysis of the impacts on the downstream reservoir of the Retiro Baixo Plant that was over 300 km away from the dam failure origin. It is believed that, on the one hand, the lack of dam stability management at the maintenance stage was the main cause of this disaster. On the other hand, the abundant antecedent precipitation caused by extreme weather events should be a critical triggering factor. Furthermore, the spatiotemporal pattern mining of global tailings dam failures revealed that the Brumadinho dam disaster belonged to a Consecutive Hot Spot area, suggesting that the regular drainage inspection, risk assessment, monitoring, and early warning of tailings dam in Consecutive Hot Spot areas still need to be strengthened for disaster mitigation.
机译:灾难性的尾矿坝衰竭灾难发生在2019年1月25日的Brumadinho,导致270多人伤亡,24,000名居民疏散,经济损失巨大。由于尾矿废物进入帕拉诺河河流,为水的潜在污染提出了环境问题。在本文中,已经进行了详细分析,以研究使用具有不同空间分辨率的卫星图像的卫星图像的Brumadinho坝故障的灾害状况。我们深入的分析表明,该故障引起的危险链包含了三个阶段,即坝体失效,泥流,以及帕拉波河河流的过度育化流动。利用高分辨率遥感图像研究了灾害后RIO帕拉波河浊度的变化特性,随后对Retiro Baixo工厂的下游水库的影响进行了定性分析,距离酒店有300公里坝故障起源。据信,一方面,在维护阶段缺乏大坝稳定性管理是这场灾难的主要原因。另一方面,由极端天气事件引起的丰富的先行降水应该是关键触发因子。此外,全球尾矿大坝失败的时空模式挖掘揭示了Brumadinho大坝灾难属于连续的热点区域,表明连续的热点区域常规排水检查,风险评估,监测和预警尾矿坝仍然需要被加强减缓灾害。

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