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Tunnel spoil recycling for concrete production at the Brenner Base tunnel in Austria

机译:奥地利布伦纳基地隧道的混凝土生产隧道弃土

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摘要

In the construction of major tunnel structures, large quantities of rock material are generated by the excavation of, for example, tunnels or caverns out of the in situ rock mass. Excavated rock material was often considered as undesired by-product and from a legal point of view as waste in the past. Nevertheless, there is the need for construction material at the tunnel construction site directly where the rock material is generated. Broad scientific research is conducted concerning the utilization possibilities and optimization of recycling implementation. This article deals with the recycling of tunnel excavation material substituting conventional aggregate for concrete by the example of the Brenner Base Tunnel in Austria. Concrete design, material processing, and concrete production were affected by challenging geological bedrock conditions. This article presents the scientific approach, experimental setup, verification, and the realization on the construction site. The way from preliminary mixing designs to the final product is illustrated for two main rock types: calcareous schists, which successfully were recycled and processed as aggregate for shotcrete, structural and inner lining concrete; and quartz phyllite with unsuitable rock properties for concrete production due to intense foliation and mica-rich mineral composition. The results are demonstrating the need for detailed examination of rock and concrete properties regarding the usability of tunnel excavation material.
机译:在构造主要隧道结构中,大量的岩石材料由挖掘,例如隧道或洞穴中的原位岩石质量产生。挖掘岩石材料通常被认为是不希望的副产品,并从过去的法律角度来看。尽管如此,隧道施工部位需要在产生岩石材料的隧道施工部位的建筑材料。对利用可能性和优化进行了广泛的科学研究。本文涉及奥地利布伦纳基地隧道的例子代替常规骨料的隧道挖掘材料的回收。具体设计,材料加工和混凝土生产受到挑战地质基岩条件的影响。本文介绍了科学的方法,实验设置,验证和建筑工地的实现。从初步混合设计到最终产品的方式是针对两种主要岩石类型的:钙质弹簧,成功再循环并加工为喷射晶,结构和内衬混凝土的聚集体;和石英植物,由于强烈的叶子和云母矿物组合物,具有不合适的岩石性能的混凝土生产。结果表明需要对隧道挖掘材料的可用性进行详细检查岩石和具体性能。

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