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Assessment of the sustainability potential of concrete and concrete structures considering their environmental impact, performance and lifetime

机译:考虑到混凝土和混凝土结构的环境影响,性能和使用寿命,评估其可持续性潜力

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摘要

Sustainable structural engineering is based on the basic principle that the energy and resources consumption due to the construction and operation of a structure must be minimized. Relating to concrete structures this principle can be realized by the use of the material in the most efficient way considering its strength and durability within the service life of the structure. On this background this paper outlines the three basic possibilities to increase the sustainability of a structure, i.e. methods to assess and reduce the environmental impact of concrete, means to increase the performance of concrete and design concepts which increase the possible lifetime of a concrete structure. The presented concept is applied to the concretes with the greatest potential in sustainability, i.e. green concretes as well as ultra high performance concretes. Thereby, the basic principles of mix design of green concrete are introduced and a systematic study of the influence of the cement content of these concretes on the fresh and hardened concrete properties is presented. With regard to UHPC, the sustainability potential of this concrete type is analyzed within a literature review. From the results it can be seen, that green concretes possess a very high sustainability as long as they do not underlie any durability requirements. The sustainability of green concrete subjected to corrosive exposures such as carbonation or frost, however, still has to be proven. UHPC, on the other hand, does not underly this constraint, as it provides superior mechanical and durability performance compared to the environmental impact resulting from concrete production.
机译:可持续的结构工程基于以下基本原则:必须最大程度地减少由于结构的建造和运营而产生的能源和资源消耗。对于混凝土结构,考虑到材料在结构使用寿命内的强度和耐用性,可以通过最有效地使用材料来实现这一原理。在此背景下,本文概述了增加结构的可持续性的三种基本可能性,即评估和减少混凝土对环境的影响的方法,提高混凝土性能的方法和设计概念,这些方法可以延长混凝土结构的使用寿命。提出的概念适用于具有最大可持续发展潜力的混凝土,即绿色混凝土以及超高性能混凝土。从而介绍了绿色混凝土配合比设计的基本原理,并系统研究了这些混凝土的水泥含量对新鲜和硬化混凝土性能的影响。关于UHPC,在文献综述中分析了这种具体类型的可持续潜力。从结果可以看出,绿色混凝土只要不满足任何耐久性要求,就具有很高的可持续性。然而,仍需证明绿色混凝土在腐蚀性环境(如碳化或霜冻)下的可持续性。另一方面,UHPC不受此限制,因为与混凝土生产所产生的环境影响相比,UHPC具有出色的机械和耐久性能。

著录项

  • 来源
    《Construction and Building Materials》 |2014年第ptac期|321-337|共17页
  • 作者单位

    Institute of Concrete Structures and Building Materials (IMB) and Materials Testing and Research Institute (MPA Karlsruhe), Karlsruhe Institute of Technology (KIT), Germany;

    Institute of Concrete Structures and Building Materials (IMB) and Materials Testing and Research Institute (MPA Karlsruhe), Karlsruhe Institute of Technology (KIT), Germany;

    Institute of Concrete Structures and Building Materials (IMB) and Materials Testing and Research Institute (MPA Karlsruhe), Karlsruhe Institute of Technology (KIT), Germany;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Sustainability; Durability; Service life design; Green concrete; Ultra high performance concrete;

    机译:可持续发展;耐用性使用寿命设计;绿色混凝土;超高性能混凝土;

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