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Assessment of Cryogenic Fluid Spill Damage to Concrete

机译:对混凝土的低温液体泄漏损伤评估

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This paper summarizes the investigative effort to determine the extent of damage to the elevated concrete pedestal and pre-cast concrete piles supporting a liquefied natural gas (LNG) storage tank following a leak of the LNG at cryogenic temperatures typically below-160°C (-260℉) and lasting approximately 48 hours. The study consisted of a non-destructive evaluation phase to determine the extent of damaged concrete and a subsequent laboratory testing phase based on concrete cores. Pulse velocity measurements during the non-destructive testing phase indicated the distressed concrete was localized. Cores removed from both unaffected and distressed locations identified during the non-destructive phase were tested in the laboratory phase to determine the Dynamic Young's Modulus of Elasticity and Air Permeability Index on 25 mm (1 inch) thick disks taken from the cores, and compressive strength. Analyzing concrete disks at 25 mm (1 inch) depths provided insight into damage gradients. The Air Permeability Index and Dynamic Young's Modulus of Elasticity measurements of the disks were effective in determining both depth and damage relative to depth as a result of the cryogenic spill. The laboratory studies confirmed that the distressed zone of the concrete was limited to a near-surface zone as suggested by the pulse velocity testing. The structure was returned to service upon completion of the assessment.
机译:本文总结了在低温下低于-160°C的低温-160°C( - - 260‰)并持续约48小时。该研究包括非破坏性评估阶段,以确定基于混凝土核心的受损混凝土的程度和随后的实验室检测阶段。在非破坏性测试阶段期间的脉冲速度测量表明了困境的混凝土是本地化的。从非破坏性阶段中鉴定的未受影响和困难的位置移除的核心在实验室阶段进行测试,以确定从芯中取出的25mm(1英寸)厚的磁盘上的动态杨氏弹性和透气性指数,以及抗压强度。分析25 mm(1英寸)深度的混凝土磁盘提供了洞察损坏梯度。透气指数和动态杨氏弹性模量的磁盘的弹性测量值是有效地确定相对于低温溢出的深度和损伤。实验室研究证实,混凝土的苦恼区域仅限于脉冲速度测试所提出的近表面区域。在评估完成后,该结构将返回服务。

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