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http://dx.doi.org/10.4334/JKCI.2006.18.6.811

A Study on the Estimation for the Guaranteed Strength and Construction Quality of the Combined High Flowing Concrete in Slurry Wall  

Kwon, Yeong-Ho (Dept. of Architectural Engineering, Dong Yang University)
Publication Information
Journal of the Korea Concrete Institute / v.18, no.6, 2006 , pp. 811-817 More about this Journal
Abstract
The primary purpose of this study is to estimate the guaranteed strength and construction quality of the combined high flowing concrete which is used in the slurry wall of underground LNG storage tank. The required compressive strength of this type of concrete become generally known as a non economical value because it is applied the high addition factor for variation coefficients and low reduction factor under water concrete. Therefore, after estimation of the construction quality and guaranteed strength in actual site work, this study is to propose a suitable equation to calculate the required compressive strength in order to improve its difference. Application results in actual site work are shown as followings. The optimum nix design proportion is selected that has water-cement ratio 51%, sand-aggregate ratio 48.8%, and replacement ratio 42.6% of lime stone powder by cement weight. Test results of slump flow as construction quality give average 616~634mm. 500mm flowing time and air content are satisfied with specifications in the rage of 6.3 seconds and 4.0% respectively. Results of strength test by standard curing mold show that average compressive strength is 49.9MPa, standard deviation and variation coefficients are low as 1.66MPa and 3.36%. Also test results by cored cylinder show that average compressive strength is 66.4MPa, standard deviation and variation coefficients are low as 3.64MPa and 5.48%. The guaranteed strength ratio between standard curing mold and cored cylinder show 1.23 and 1.32 in the flanks. It is shown that applied addition factor for variation coefficients and reduction factor under water concrete to calculate the required compressive strength is proved very conservative. Therefore, based on these results, it is proposed new equation having variation coefficients 7%, addition factor 1.13 and reduction factor 0.98 under water connote.
Keywords
slurry wall; combined high flowing concrete; addition factor; reduction factor; construction quality;
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  • Reference
1 靑木 茂, 三浦律彦, 神代泰道, '超高强度 . 低發熱連壁コンクリ-トの實施工における壁體の硬化特性', コンクリ-ト工學年次論文報告集, Vol.18, No.1. 1996, pp.273-278
2 青木 茂, '地下連續壁における壁體コンクリ-トの品質評價に關する研究', 東北大學枝學位論文, 1997,149pp
3 日本土木學會,コンクリ-ト標準示方書-施工編, 日本土木學會,1996,348pp
4 靑木 茂, 三浦律彦, 三浦 尙., '高ビ-ライトセメントを用いた高强度連壁コンクリ-トの品質特性', セメントコンクリ-ト論文集, No.50, 1996, pp.696-701
5 横田和直., '高强度 . 高流動コンクリ-トの地下連續壁への適用-硬化コンクリ-トの性質', 日本土木學會 第50回年 次學術術演會, 1995. 9, pp.1152-1153