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http://dx.doi.org/10.14481/jkges.2020.21.8.5

Behavior Case Study of Temporary Structures during Underground Extension Work by Field Measurement  

Kim, Uiseok (Institute of Technology, Samho Engineering Corporation)
Min, Byungchan (Samho Engineering Corporation)
Kang, Minkyu (School of Civil, Environmental and Architectural Engineering, Korea University)
Kim, Dongkwan (School of Civil, Environmental and Architectural Engineering, Korea University)
Choi, Hangseok (School of Civil, Environmental and Architectural Engineering, Korea University)
Publication Information
Journal of the Korean GEO-environmental Society / v.21, no.8, 2020 , pp. 5-13 More about this Journal
Abstract
During the construction of underground space expansion of old facilities, it is necessary to secure temporary residence space for existing residents as well as noise and vibration issues during construction, and in the case of commercial, industrial, and social use, damage is expected from suspension of the use of facilities. There is a need for a technology that minimizes noise and vibration during underground expansion, enabling the use of existing facilities even during construction. In this study, a practical underground extension model is proposed by analyzing the behavior of the temporary structure and the surrounding ground as a result of measurement at each construction stage for a actual construction site. In order to solve the problems that occurred during construction, the basement slabs were placed in advance after the initial excavation. The measurement results (building inclinometer, crack measurement system, structure inclinometer and surface settlement meter) at the site were reviewed to analyze the behavior of the temporary structure and surrounding ground. As a result, it was confirmed that the inclinometer of the building and the structural inclinometer showed a tendency that the displacement after the slab line was placed was reduced or converged. The placement of basement slabs during underground extension not only relived the noise and vibration problems during construction, but also secured the stability of structures.
Keywords
Old facility; Underground space expansion; Small diameter pile; Floating structure method;
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