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Mining modification of river systems: A case study from the Australian gold rush

机译:河流系统的采矿改装:澳大利亚金的案例研究

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摘要

Mobilisation of large volumes of bedrock, regolith and soil has long been a characteristic feature of metal mining. Before the 20th century this was most efficiently achieved through harnessing the motive power of water. Large-scale water use in mining produced waste sands, gravels and silts that were flushed downstream, triggering changes in stream and floodplain morphology and function. During the 19th century the shift from artisanal to industrialised mining resulted in a rapid increase in the scale and extent of environmental change. This paper presents results from a multidisciplinary research programme investigating the environmental effects of 19th-century gold mining on waterways in south-eastern Australia. Archaeological and geospatial landscape survey are combined with historical data modelling and geomorphological analysis to examine the extractive processes that produced sediment in headwater regions and how this influenced fluvial processes operating on downstream waterways and floodplains. Our case study of the Three Mile-Hodgson Creek system on the Ovens (Beechworth) goldfield in north-east Victoria indicates that miners mobilised up to 7.3 million m(3) of sediment in this small catchment alone. Results of the research suggest that tailings dams and sludge channels in this catchment are important archaeological evidence for early attempts to manage industrial waste.
机译:动员大量基岩,鲁代和土壤长期以来一直是金属矿业的特征。在20世纪之前,这通过利用水的动力最有效地实现了。采矿的大规模用水生产废砂砂,砾石和淤泥,刷新下游,触发流和洪泛区形态和功能的变化。在19世纪,从工匠到工业化挖掘的转变导致环境变化的规模和程度迅速增加。本文提出了多学科研究计划的结果,调查19世纪金矿对澳大利亚东南部水道的环境影响。考古和地理空间景观调查与历史数据建模和地貌分析相结合,检查了在下游水道和洪水平坦工作的河流过程中产生了沉积物的提取过程。我们对烤箱(Beechworth)Goldfield在东北维多利亚州三英里 - 霍奇森溪流系统的案例研究表明,矿工单独调动这一小型集水区的沉积物高达730万米(3)米沉积物。研究结果表明,该集水区中的尾矿坝和污泥渠道是管理工业废物的早期尝试的重要考古证据。

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