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http://dx.doi.org/10.9711/KTAJ.2012.14.5.453

A numerical study of pillar reinforcing effect in underground cavern underneath existing structures  

Seo, Hyung-Joon (고려대학교 건축.사회환경공학부)
Lee, Kang-Hyun (고려대학교 건축.사회환경공학부)
Han, Shin-In ((주)서영엔지니어링)
Lee, In-Mo (고려대학교 건축.사회환경공학부)
Publication Information
Journal of Korean Tunnelling and Underground Space Association / v.14, no.5, 2012 , pp. 453-467 More about this Journal
Abstract
Usage of underground space is increasing at metropolitan city. More than 90% of flood damages have occurred at downtown of metropolitan cities. In order to prevent and/or minimize the flood-induced damage, an underground rainwater detention cavern was proposed to be built underneath existing structures. As for underground caverns to be built for flood control, multi-caverns will be mostly adopted rather than one giant cavern because of stability problem. Because of the stress concentration occurring in the pillars between two adjacent caverns, the pillar-stability is the Achilles' heel in multi-caverns. So, a new pillar-reinforcing technology was proposed in this paper for securing the pillar-stability. In the new pillar-reinforcing technology, reinforced materials which are composed of a steel bar and PC strands are used by applying pressurized grouting, and then, by applying the pre-stress to the PC strands and anchor body. Therefore, this new technology has an advantage of utilizing most of the strength that the in-situ ground can exert, and not much relying on the pre-cast concrete structure. The main effect of the pressurized grouting is the increase of the ground strength and more importantly the decrease of stress concentration in the pillar; that of the pre-stress is the increase of the ground strength due to the increase of the internal pressure. In this paper, ground reinforcing effects were verified the stress change in pillar is obtained by numerical analysis at each construction stage. From these results, the effects of pressurized grouting and pre-stress are verified.
Keywords
Underground rainwater detention cavern; pillar; pressurized grouting; pre-stress;
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Times Cited By KSCI : 1  (Citation Analysis)
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