|
Reference
|
|
Crouse, C.B., Kramer, S.L., Mitchell, R., Hushmand, B. (1993) Dynamic tests of pipe pile in saturated peat. Journal of Geotechnical Engineering, 119(10), 1550-1567
|
|
Hegde, A., Sitharam, T.G. (2015) Use of bamboo in soft-ground engineering and its performance comparison with geosynthetics: Experimental studies. Journal of Materials in Civil Engineering, 27(9), 1-9
|
|
Kallioglou, P., Tika, T.H., Koninis, G., Papadopoulos, S.T., Pitilakis, K. (2009) Shear modulus and damping ratio of organic soils. Geotechnical and Geological Engineering, 27(2), 217-235
|
1
|
Kandolkar, S.S., Mandal, J.N. (2012) Behaviour of mine waste as reinforced soil. International Journal of Reseach in Engineering and Technology, 1(2), 82-89
|
|
Kramer, S.L. (2000) Dynamic response of mercer slough peat. Journal of Geotechnical and Geoenvironmental Engineering, 126(6), 504-510
|
1
|
Marto, A., Othman, B.A. (2011) The potential use of bamboo as green material for soft clay reinforcement system. u: International Conference on Environment Science and Engineering, Singapore, 129-133
|
1
|
Maulana, A., Susanti, R.D., Waruwu, A. (2018) Potential of bamboo pile as reinforcement of peat soil under embankment. ARPN Journal of Engineering and Applied Sciences, 13(1), 52-56
|
|
Meyer, Z., Coufal, R., Kowalów, M., Szczygielski, T. (2011) Peat consolidation: New approach. Archives of Civil Engineering, 57(2), 173-186
|
|
Moss, R.E.S., Hollenback, J.C. (2011) Seismic response of peaty organic soils as a levee foundation material. u: Geo Frontiers, American Society of Civil Engineers, 3097-3106
|
|
Sinarta, I.N., Rifa'i, A., Faisal, F.T., Wilopo, W. (2017) Slope stability assessment using trigger parametersand SINMAP methods on Tamblingan-BuyanAncient Mountain Area in Buleleng Regency, Bali. Geosciences, 7(4), 1-16
|
|
Susanti, R.D., Maulana,, Waruwu, A. (2017) Bearing capacity improvement of peat soil by preloading. ARPN Journal of Engineering and Applied Sciences, 12(1), 121-124
|
|
Waruwu, A., Hardiyatmo, H.C., Rifa'i, A. (2016) Compressive behavior of Bagansiapiapi-Riau peat in Indonesia. Electronic Journal of Geotechnical Engineering, 21(16), 5217-5227
|
|
Waruwu, A., Halim, H., Nasution, T., Hanova, Y. (2018) Bamboo grid reinforcement on peat soil under repeated loading. Journal of Engineeering and Applied Sciences, 13(8), 2190-2196
|
|
Waruwu, A. (2014) Bamboo reinforcement in shallow foundation on the peat soil. Journal of Civil Engineering Research, 4(3A), 96-102
|
|
Waruwu, A., Susanti, R.D. (2015) Behavior of soil peat with reinforcement of bamboo grid. IOSR Journal of Engineering, 5(11): 29-36
|
|
Waruwu, A., Hardiyatmo, H.C., Rifa'i, A. (2017) Behavior of nailed-slab system on peat soil under loading. u: 1nd Warmadewa University International Conference on Architecture and Civil Engineering, Proceedings, Bali, Indonesia, 101-107
|
1
|
Waruwu, A., Maulana, A.R., Halim, H. (2017) Settlement estimation of peat reinforced with bamboo grid under embankment. International Review of Civil Engineering (IRECE), 8(6), 299-306
|
3
|
Waruwu, A., Hardiyatmo, C.H., Rifa'i, A. (2017) Deflection behavior of the nailed slab system-supported embankment on peat soil. Journal of Applied Engineering Science, vol. 15, br. 4, str. 556-563
|
|
|
|