Analisis Penggunaan Material Sungai Paneki - Pombewe Sebagai Bahan Timbunan Pilihan dan Lapis Pondasi Bawah
DOI:
https://doi.org/10.22487/renstra.v7i2.685Keywords:
Paneki- Pombewe river, characteristics, materials, Characteristics, MaterialsAbstract
Up to now asphalt road still become main selection in the construction of infrastructure in Central Sulawesi Province, besides because of ease to get material. This is also caused by roads as the most important facility of transportation to support the fluency of land communication and economic growth of one region. The objectives of this research is to find out characteristic of material of Paneki-Pembewe river at Pembewe village, district of Sigi Biromaru, Sigi regency Palu city. To find out whether material at Paneki- Pembewe river can fulfill specification of Bina Marga 2018 as selected heap material and low layer of foundation. By data resource and information from visual observation at the field testing would be carried out at the Laboratorium. The testing that is meant is testing of physical soil, among them abration, filter analysis, kind of heavy, melted limit, index of plasticity, lempung clod with testing of mechanic such as testing of density and testing CBR (California Bearing Ratio). Research findings show that material of Paneki- Pembewe river can be used as selected heap material and low layer of foundation of road density, this is based on on the CBR value. Selected heap obtained over 10 x pounding is 0,1" with average =6,42%,02" -8,73%, 35 x pounding is 0,1" 13,90%, 0,2" 18,18%, 65 x pounding is 0,1"- 18,45%,0,2" 22,63% and CBR low layer of foundation which is obtained over 10x pounding is 0,1" 20,05%, 0,2"-25,66%,35 x pounding is 43,84%, 0,2"= 52,93%, 65 x pounding is 0,1"=52,93%, 0,2" = 68,08%, so that the result of testing of Paneki-Pembewe river material indicated that those materials fulfill requirement of specification of Bina Marga 2018 as selected heap material and low layer of foundation
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References
M. Sutrisno, M. Mashuri, I. Mashuri, and A. Natalin, “Penggunaan Metode Pavement Condition Index (PCI) dan Present Serviceability Index (PSI) dalam Penilaian Kerusakan Jalan di Kota Palu (Studi Kasus: Jalan Karanja Lembah, Kota Palu)”, REKONSTRUKSI TADULAKO: Civil Engineering Journal on Research and Development, vol. 4, no. 2, pp. 115–120, 2023. https://doi.org/10.22487/renstra.v4i2.550
M. Sutrisno, Pengaruh Penggunaan Angkutan Kota Terhadap Peningkatan Kinerja Ruas Jalan (Studi Kasus: Ruas Jalan Wr. Supratman dan Ruas Jalan Kemiri), Palu: Universitas Tadulako, 2023.
K. Gon, R. Cornelis, and I. Rustendi, “Kelayakan Material Desa Golo Lalong Sebagai Bahan Timbunan Pilihan Pekerjaan Jalan Berdasarkan Nilai Aktif Material”, Teodolita: Media Komunikasi Ilmiah di Bidang Teknik, vol. 24, no. 1, pp. 84–100, 2023. https://doi.org/10.53810/jt.v24i1.479
D. Wesley, Mekanika Tanah, Jakarta: Badan Penerbit Pekerjaan Umum, 1997.
D.O. Dwina, N. Nazarudin, D. Kumalasari, and E. Fitriani, “Stabilisasi Tanah Gambut Dengan Penambahan Material Kapur dan Fly Ash dari Sisa Pembakaran Cangkang Sawit Sebagai Subgrade Jalan”, Fondasi: Jurnal Teknik Sipil, vol. 10, no. 1, pp. 24–32, 2021. https://doi.org/10.36055/fondasi.v10i1.10275
H.C. Hardiyatmo, Mekanika Tanah, Yogyakarta: Gadjah Mada University Press, 2012.
K. Terzaghi and B.P. Peck, Mekanika Tanah Dalam Praktek Rekayasa, Jakarta: Erlangga, 1967.
E.J. Bowles, Sifat-Sifat Fisis dan Geoteknis Tanah (Mekanika Tanah), Jakarta: PT. Erlangga, 1991.
Spesifikasi Umum Bidang Jalan dan Jembatan Divisi III untuk Pekerjaan Tanah dan Geosintetik, 2018.
D.O. Dwina, N. Nazarudin, O. Alfernando, D. Kumalasari, and T. Nofrina, “Pengolahan POFA (Palm Oil Fuel Ash) dan Semen Sebagai Material Alternatif Timbunan Pilihan Jalan untuk Perbaikan Infrastruktur Jalan”, Fondasi: Jurnal Teknik Sipil, vol. 11, no. 1, pp. 78–87, 2022. https://doi.org/10.36055/fondasi.v0i0.13734
ASTM, Annual Book of ASTM Standards: Soil and Rock; Building Stones; Peats, vol. 408, 1989.
R. M. Brooks, “Soil Stabilization with Fly Ash and Rice Husk Ash”, International Journal of Research and Reviews in Applied Sciences, vol. 1, 2009.
B.D. Nath, M.K.A. Molla, and G. Sarkar, “Study on Strength Behavior of Organic Soil Stabilized with Fly Ash”, International Scholarly Research Notices, vol. 2017, pp. 5786541, 2017. https://doi.org/10.1155/2017/5786541
A. Tobe, Rancangan Campuran Lapis Pondasi Bawah Perkerasan Jalan, 2019.
H.C. Hardiyatmo, Prinsip-Prinsip Mekanika Tanah dan Soal Penyelesaian 1, ed. 1, Yogyakarta: Fakultas Teknik Sipil Universitas Gadjah Mada, 2001.
H.C. Hardiyatmo, Perancangan Perkerasan Jalan dan Penyelidikan Tanah, ed. 2, Yogyakarta: Gadjah Mada University Press, 2015.
S. Sukirman, Perkerasan Lentur Jalan Raya, Bandung: Nova, 1999.
SNI ASTM C136:2008, Metode Pengujian Analisis Saringan, 2008.
SNI 1967:2008, Metode Pengujian Batas Cair, 2008.
SNI 1966:2008, Metode Pengujian Batas Plastis, 2008.
SNI 1964:2008, Metode Pengujian Berat Jenis Tanah, 2008.
SNI 1965:2008, Metode Pengujian Kadar Air, 2008.
Direktorat Jenderal Bina Marga, Spesifikasi Umum 2018, Jakarta: Kementerian Pekerjaan Umum dan Perumahan Rakyat, 2018.
Y. Tebai, Penggunaan Material Sungai Palu Sebagai Bahan Timbunan Pilihan Konstruksi Jalan, 2019.
Y.W. Humaeroh, Tinjauan Pelaksanaan Pekerjaan Timbunan Tanah pada Proyek Pembangunan Lapangan Parkir Jakabaring Sport City Palembang, 2020.
R. Maksud, Kajian Penggunaan Tras Lompotoo Sebagai Agregat Halus pada Lapis Pondasi Bawah, 2014.
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