FORESTA, JATI (2018) ANALISIS OPTIMASI MATERIAL CAMPURAN ANTARA SEMEN DAN MATERIAL TANAH ORGANIK UNTUK MEMPERBESAR DAYA DUKUNG TANAH LUNAK PADA PENERAPAN METODE DEEP SOIL MIXING DUMPING AREA PIT J PT KALTIM PRIMA COAL, SANGATTA, KALIMANTAN TIMUR. Other thesis, Universitas Pembangunan Nasional "Veteran" Yogyakarta.
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Abstract
PT. Kaltim Prima Coal is one of the coal mining company located in
Kalimantan Timur which applied the surface mining process. One of the activity in
the surface mining method is piling up the overburden layer of the stockpile after
the demolition procedure. To prevent deformation caused by the degradation of the
base soil, the stability analysis is used to find the ideal geometry of the stockpile.
This occurrence caused by the load over piled area which affects the surrounded
environment. The phenomenon may occur if the factors causing the deformation is
not recognized, moreover, when the location of the stockpile is soft soil.
The ground reinforcement in the means of enhancing the strength of the
ground is necessary to increase the capacity of the stockpile without increasing the
potency of the ground deformation which affect the palm oil plantation. In the
process of solidification of the soft soil, the Deep Soil Mixing method is used.
To identify the strength and the ideal proportion of the mixture material of
Deep Soil Mixing, the examination of Uniaxial Compressive Strength (UCS),
physical attribute, compression strength, tensile strength, and shear strength of the
mixture of the organic material (peat) and cement are used in this study.
In the result of the study, the optimal result of the Deep Soil Mixing
strengthening appeared in the sample H with the mixture of cement, polcon, sand,
and water. After soaked, the mixture made a score of 19,92 kPa with 14 days of
curing time. The soaked mixture of the cement + polcon + sand + water in sample
H can improve the stability of the piling over the soft soil. The Deep Soil Mixing
method can improve the safety score from FK=0,668 to FK=1,243. The percentage
of the mixture of the sample H is 19,80% cement; 73,74% sand; 5,99% water; and
0,47% polcon.
Item Type: | Thesis (Other) |
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Subjek: | T Technology > T Technology (General) |
Divisions: | x. Faculty of Engineering, Science and Mathematics > School of Engineering Sciences |
Depositing User: | Sarimin Sarimin |
Date Deposited: | 16 Jul 2018 07:28 |
Last Modified: | 16 Jul 2018 07:28 |
URI: | http://eprints.upnyk.ac.id/id/eprint/15717 |
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