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Soft water attack on concrete tunnel linings in the Ingula pumped storage hydro-power scheme: Assessment of concrete resistance and protection

机译:Ingula抽水蓄能水电工程中混凝土隧道衬砌的软水侵蚀:混凝土抗力和防护的评估

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摘要

The resistance of the concrete tunnel linings at the Ingula Pumped Storage Scheme (IPSS) to soft water attack was investigated. Concrete disc specimens obtained from cores taken from selected locations of the tunnel lining were exposed to a simulated soft water attack testing regime in a site laboratory using the actual (soft) water to which the tunnel linings will be exposed when in service. The assessment was carried out for around four months. The aggressivity of the soft water was quantified using Basson Indices. The results showed that the water is readily aggressive and will lead to corrosion of the concrete tunnel lining. The experimental work showed the average surface rate loss of the linings to be approximately 1.1 mm/a, which, if sustained in the concrete linings, would amount to an average loss of about 10 mm in a 10-year period. This will result in increased surface roughness and hence higher head losses due to increased friction coefficients. It was recommended that a protective epoxy coating be applied on the tunnel lining to limit the reduction in power generation efficiencies.
机译:研究了Ingula抽水蓄能方案(IPSS)下混凝土隧道衬砌对软水侵蚀的抵抗力。在现场实验室中,使用从隧道衬砌中使用的实际(软)水,对从取自隧道衬砌的选定位置的岩心获得的混凝土圆盘试样进行模拟的软水侵蚀测试方案。评估进行了大约四个月。使用Basson指数对软水的腐蚀性进行定量。结果表明,水易侵蚀,会导致混凝土隧道衬砌腐蚀。实验工作表明,衬砌的平均表面速率损失约为1.1毫米/年,如果维持在混凝土衬砌中,则十年内的平均损失约为10毫米。由于增加的摩擦系数,这将导致表面粗糙度增加,从而导致更高的压头损失。建议在隧道衬砌上涂环氧保护层,以限制发电效率的降低。

著录项

  • 来源
    《Civil Engineering》 |2017年第sepaappa期|57-67|共11页
  • 作者单位

    School of Civil and Environmental Engineering University of the Witwatersrand Private Bag 3 Wits 2050 South Africa;

    Department of Civil Engineering University of Cape Town Private Bag X3 Rondebosch 7701 Cape Town South Africa;

    GIBB Engineering & Architecture PO Box 2700 Rivonia 2128 South Africa;

  • 收录信息 美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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