Rancangan Saluran Pada Pemindahan Aliran Sungai Kili Besar Di Area Pertambangan Batubara di Lahat, Sumatra Selatan Menggunakan Apllikasi HEC-HMS dan HEC-RAS
Kata Kunci:
Pengalihan sungai, Sungai, DAS, HEC-RAS, HEC-HMS
Abstrak
Pada pertambangan batubara, sering dijumpai adanya aliran sungai yang membentang di kawasan tambang. Hal ini tentu mempengaruhi produksi dan jalannya penambangan sehingga perlu dilakukan perlakukan khusus, yaitu pemindahan aliran sungai. Dalam pemindahan aliran sungai, perlu memperhatikan beberapa hal seperti, debit sungai rancangan, dimensi saluran sungai yang baru, dan lain sebagainya. Ini dilakukan tidak merusak lingkungan dan tidak mengakibatkan banjir di kemudian hari pada saluran sungai yang baru. Penggunaan aplikasi HEC-HMS dan HEC-RAS dapat membantu dalam perhitungan dan pemodelan saluran.
Referensi
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[28] Zhang Tao. 2020. Application of Diversion Construction Technology in Hydraulic Engineering Construction. Engineering college, Yunnan University Of Bussiness Management, KunMing, Yunnan
[2] Asdak, Chay, press, 2010. Buku Hidrologi dan Pengelolaan Daerah Aliran Sungai, Gadjah Mada Unervisity
[3] Atkinson, S., Rafty, M., Markham, A., Heyting, M., 2017. Pilbara Creek diversions resilience gained through increased ore recovery and an integrated approach to design. Iron Ore 14, 1–12.
[4] Beven, 2012, Runoff Modeling Using Conceptual , Data Driven , and Wavelet Based Computing Approach, Journal of Hydrology, India
[5] D.G. Zelelew, A.M. Melesse, 2018, Applicability of a spatially semi-distributed hydrological model for watershed scale runoff estimation in Northwest Ethiopia, Water, Switzerland
[6] Flatley, Alissa, Andy Markham. 2021. Establishing Effective Mine Closure Criteria for River Diversion Channels. Science Direct: Australia.
[7] Flatley, Alissa, Ian D Rutherford, dan Ross Hardie. 2018. River Channel Relocation: Problems and Prospects. Water MDPI: Australia
[8] Frilisa Christiria,dkk. 2017. Rencana Penyaliran Tambang Pada Pit SMD-1 PT. Kideco Jaya Agung Sub PT. Petrosea Tbk Kabupaten Paser, Provinsi Kalimantan Timur. Universitas Mulawarman.
[9] Gautama Yudi Sayoga. 1993. Pengantar Penirisan Tambang. Institut Teknologi Bandung.
[10] Golightly, J.P., 1979, Geology Of Soroako Nickeliferous Laterite Deposite, Int. Laterite Simp, New Orleans
[11] Guduru, Jerjera Ulu, Nura Boru Jilo, Zeinu Ahmed Rabba, Wana Geyisa Namara, 2022, Rainfall-runoff modeling using HEC-HMS model for Meki river watershed, rift valley basin, Ethiopia, Journal of African Earth Sciences 197, Ethiopia
[12] Hao Fu dan Xiaoliu Yang. 2019. Effects of the South-North Water Diversion Project on the Water Dispatching Pattern and Ecological Environment in the Water Receiving Area: A Case Study of the Fuyang River Basin in Handan, China. College of Urban and Environmental Sciences, Peking University: China
[13] Jenson S, Domingue J, (1988) Extracting topographic structure from digital elevation data for geographic information system analysis, Photogramm Eng Remote Sens 54:1593–1600
[14] Jianhua Cheng, Yanxia Ding, Wanhong Yang, Chenxia Yang, Kai Wang, Chao Qiang, Zhifa Gao. 2021. Study on the Layout of the Section from Yangtse River to Hongze Lake of the Second Phase Project of the East Route of South-to-North Water Diversion Project. IOP Publishing: China
[15] Johnson, S.L., Wright, A.H., 2003. Mine void water resource issues in western Australia. Water and Rivers Commission 1–93. Resource Science Division. Report No. HG 9.
[16] Leopold, L.B., Wolman, M.G. and Miller, JP., 1964. Fluvial processes in geomorphology. Freeman, San Francisco, CA, 522
[17] Li Ren, Shuping Song , Yue Zhou, 2022, Evaluation of river ecological status in the plain river network area in the context of urbanization: A case study of 21 Rivers’ ecological status in Jiangsu Province, China, Ecological Indicators, China
[18] Myronidis D, Emmanouloudis D, Stathis D, Stefanidis P (2009) Integrated flood risk mapping in the framework of E.Y. directive of the assessment and management of flood risks. Frasenlus Environ Bull 18(1):102–111
[19] Noor, Djauhari, 2012, Pengantar Geologi Chapter 1, Depublish, Yogyakarta
[20] N.S. Romali, Z. Yusop, a.Z. Ismail, 2018, Hydrological modelling using HEC-HMS for flood risk assessment of segamat town, Malaysia, IOP Conf. Ser. Mater. Sci. Eng, Malaysia
[21] Permen PUPR no 21 tahun 2020
[22] Platts, W.S., 1980. A plea for fishery habitat classification. Fisheries, 5(1 ): 1-6.
[23] Ren Minglei, Zhu YaFeng, Ding Liuqian, Wang Gang, Kan Guangyuan, Fu Xiaodi, Zhao Liping. 2021. Identification of the inter-basin water diversion projecteffected local flood risk factor by using the fishbone-diagram method. IOP Publishing: China
[24] Rudi Sayoga Gautama. 1999. Diktat Kuliah Sistem Penyaliran Tambang. Bandung: ITB.
[25] Sasrodarsono Suyono, Takeda Kensaku. 1993. Hidrolika Untuk Pengairan. Pradnya Paramita, Jakarta.
[26] Suratman, 2000. Geologi dan Endapan Nikel-Laterit Soroako Sulawesi Selatan, On Proceeding The XXIX Annual Convention of The Association of Indonesia Geologist, Vol 2, Bandung. p 37-48.
[27] Undang-Undang No. 17 Tahun 2019 Tentang Sumber Daya Air
[28] Zhang Tao. 2020. Application of Diversion Construction Technology in Hydraulic Engineering Construction. Engineering college, Yunnan University Of Bussiness Management, KunMing, Yunnan
Diterbitkan
2023-11-02
##submission.howToCite##
Mendrofa, Y. C., Tedy Agung Cahyadi dan Shofa Rijalul Haq (2023) “Rancangan Saluran Pada Pemindahan Aliran Sungai Kili Besar Di Area Pertambangan Batubara di Lahat, Sumatra Selatan Menggunakan Apllikasi HEC-HMS dan HEC-RAS”, Retii, 18(1), hlm. 433~439. Tersedia pada: //journal.itny.ac.id/index.php/ReTII/article/view/4524 (Diakses: 23November2024).
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