FORCED DEWATERING CHARACTERISTICS AND DISPOSAL EFFICIENCY OF FLUID MUD
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概要
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To evaluate the efficiency of fluid mud disposal in the case of one-dimensional forced dewatering, effects of applied load and clay type on forced dewatering behaviors are examined experimentally. On the basis of the test results, simple semiempirical formulae of forced dewatering are presented. The dewatering velocity is expressed by υp^a, and the time necessary for sufficient dewatering by τp^<-β>H_0^2,where p is the applied load and H_0 is the initial thickness of fluid mud. The coefficients υ and τ are markedly influenced by the clay type and less strongly influenced by the initial water content. The lower the activity of the fluid mud, the faster the dewatering proceeds.Analytical examinations of the disposal efficiency suggest that there exists an optimum thickness of fluid mud. A higher disposal efficiency can be attained when the initial thickness is near the optimum value, when the initial water content is lower, and when the applied load is higher. The optimum thickness can be predicted for any fluid mud when the value of coefficient τ, the applied load p, and a property of disposal machine are given.
- 社団法人地盤工学会の論文
- 1978-09-15
著者
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森 恒
Engineering Development Division Soil Engineering Division Research Institute Penta-ocean Constructi
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今井 五郎
Soil Engineering Division, Research Institute, Penta-Ocean Construction Co. Ltd.,
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山田 貞彦
Engineering Development Division, Soil Engineering Division, Research Institute, Penta-Ocean Constru
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今井 五郎
Soil Engineering Division Research Institute Penta-ocean Construction Co. Ltd.
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今井 五郎
Soil Engineering Department Research Institute Penta-ocean Construction Co. Ltd.
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山田 貞彦
Engineering Development Division Soil Engineering Division Research Institute Penta-ocean Constructi
関連論文
- 泥水の脱水特性とその処理効率(『土質工学会論文報告集』Vol. 18,No. 3(1978年9月発行)掲載論文の概要)
- FORCED DEWATERING CHARACTERISTICS AND DISPOSAL EFFICIENCY OF FLUID MUD
- Carmanのろ過理論の改良と泥水の強制脱水へのその適用(『土質工学会論文報告集』Vol.17,No4(1977年12月発行)掲載論文の概要)
- REFORMED CARMAN'S FILTRATION THEORY AND ITS APPLICATION TO FORCED WATER LOSS OF CLAYEY FLUID MUD