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가압식 압축형 지반앵커의 인발저항력 증대효과 및 군효과 특성The Effect of Pressurized Grouting on Pullout Resistance and the Group Effect of Compression Ground Anchor

Other Titles
The Effect of Pressurized Grouting on Pullout Resistance and the Group Effect of Compression Ground Anchor
Authors
김태섭심보경이규상이인모
Issue Date
2010
Publisher
한국지반공학회
Keywords
Cavity expansion theory; Compression ground anchor; Group effect; Group anchor; Grout consolidation model; Pressurized grouting; Pullout resistance; Pullout test
Citation
한국지반공학회논문집, v.26, no.6, pp.5 - 19
Indexed
KCI
Journal Title
한국지반공학회논문집
Volume
26
Number
6
Start Page
5
End Page
19
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/117891
ISSN
1229-2427
Abstract
본 연구는 가압식 압축형 지반앵커의 실내모형 챔버시험, 현장시험을 통해 가압그라우팅이 지반앵커의 인발저항력에 미치는 영향을 고찰하고 현장 군앵커 인발시험을 통해 압축형 지반앵커의 군효과 특성을 규명하는데 그 목적이 있다. 3가지 시료에 대한 실내시험 결과, 가압그라우팅으로 인한 앵커체의 직경 증가량은 시험값과 The purpose of this study is to figure out the effect of pressurized grouting on the pullout resistance and the group effect of the compression ground anchor by performing pilot-scale chamber tests and field tests. The laboratory tests are carried out for 3-types of soils which are abundant in the Korean peninsular. Experimental results showed that the enlargement of anchor diameters estimated from the cavity expansion theory matches reasonable well with that obtained from experiments. Moreover, the required injection time as a function of the coefficient of permeability of each soil type was proposed. A series of in-situ anchor pullout tests were also performed to experimentally figure out the effect of pressurized grouting on the pullout resistance. Experimental results also showed that the effect of the pressurized grouting is more prominent in a softer ground with smaller SPT-N value in all of the following three aspects: increase in anchor diameter; pullout resistance; and surface roughness. The pressurized grouting effect in comparison with gravitational grouting was found to be almost nil if the SPT-N value is more than 50. Based on experimental results, a new equation to estimate the pullout resistance as a function of the SPT-N value was proposed. And based on in-situ group anchor pullout tests results, a new group effect equation was proposed which might be applicable to decomposed residual soils which are abundant in the Korean peninsular.
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