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Numerical simulation of the structural behaviour of concrete tetrapods subject to imposed deformations and applied loads

机译:施加外加变形和施加载荷的混凝土四脚架结构行为的数值模拟

摘要

Tetrapods for coastal protection are frequently used in break waters for dissipation of wave energy. During their service, these plain concrete elements usually exhibit degradation signs with frequent premature rupture of one or more of their legs when located in highly aggressive environments subjected to extreme wave action. These ruptures tend to decrease the efficiency of breakwaters as a whole, thus diminishing their capacity to absorb wave energy. The present paper aims to contribute to a better understanding of the stress levels that occur in this kind of mass concrete elements, taking into account imposed deformations (associated with heat of hydration) and applied loads. A thermo-mechanical numerical simulation tool (3D), based on the finite element method, is used for the assessment of heat of hydration induced stresses. After an initial discussion of the temperature development inside the tetrapod, the corresponding residual stresses are presented and discussed, and conclusions are withdrawn with regard to the available capacity of concrete to withstand further applied loads. Finally, the subsequent behaviour of the tetrapod is assessed and compared to alternative solutions with internal reinforcement of the tetrapod legs, such as reinforced concrete (using stainless steel), steel fibre reinforced concrete and reinforced concrete with FRP’s.
机译:用于沿海保护的四足动物经常在防波堤中使用以消散波浪能。在使用过程中,当这些普通混凝土构件位于遭受剧烈波浪作用的高度侵蚀性环境中时,通常会表现出降解迹象,并且其一只或多只腿经常会过早断裂。这些破裂往往会降低防波堤的整体效率,从而削弱其吸收波浪能的能力。本文旨在通过考虑施加的变形(与水化热有关)和施加的载荷,来更好地理解这种大体积混凝土构件中出现的应力水平。基于有限元方法的热机械数值模拟工具(3D)用于评估水化诱导应力的热量。在初步讨论了四脚架内部的温度发展之后,提出并讨论了相应的残余应力,并就混凝土可承受进一步施加的载荷的能力得出结论。最后,评估四脚架的后续行为,并将其与内部四脚架支脚的替代解决方案进行比较,例如钢筋混凝土(使用不锈钢),钢纤维增强混凝土和FRP钢筋混凝土。

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