Aplikasi penggunaan Metode Finite Difference dalam pemodelan air tanah pada kasus pertambangan : literatur review
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Anderson, M. P., Woessner, W. W., & Hunt, R. J. (2015). Applied Groundwater Modeling: Simulation Of Flow And Advective Transport. Academic Press. London.
Devy, S. D. (2018). Pemodelan airtanah dan Neraca Airtanah Dampak Penambangan Batubara Open Pit pada Lipatan Sinklin di Daerah Muara Lawa, Kabupaten Kutai Barat, Provinsi Kalimantan Timur. SPECTA Journal of Technology, 2(2), 69-83.
Alvando, P. V., Darul, A., & Irawan, D. E. (2017). Pemodelan Dampak Pemasangan Inclined Drain Hole Pada Wall Pit Pt Xxx Terhadap Penurunan Muka Airtanah.
Fadhilah, R., Widodo, L. E., & Iskandar, I. (2020). Pengaruh Jarak Antar Drain Hole Terhadap Penurunan Muka Air Tanah pada Lereng Tambang Terbuka Batubara. Journal of Science and Applicative Technology, 4(2), 116-120.
Alloisio, S. A. R. A. H., Douglas, B., McKittrick, R., & Prigneau, P. (2004). Groundwater modelling for large-scale mine dewatering in Chile: MODFLOW or FEFLOW.
Adnyano, A. I. A., & Bagaskoro, M. (2020). Kajian Teknis Dewatering System Tambang Pada Pertambangan Batubara. PROMINE.
Sajeena, S., & Swathy, P. S. (2020). Studies on saline water intrusion in the coastal stretch of Kadalundi river basin, Malappuram district, Kerala using visual MODFLOW–A case study.
Hariharan, V., & Shankar, M. U. (2017). A review of visual MODFLOW applications in groundwater modelling. In IOP Conference Series: Materials Science and Engineering (Vol. 263, No. 3, p. 032025). IOP Publishing. India.
Rapantova, N., Grmela, A., Vojtek, D., Halir, J., & Michalek, B. (2007). Ground water flow modelling applications in mining hydrogeology. Mine water and the environment, 26(4), 264-270. Italy.
Alloisio, S. A. R. A. H., Douglas, B., McKittrick, R., & Prigneau, P. (2004). Groundwater modelling for large-scale mine dewatering in Chile: MODFLOW or FEFLOW. Water Management Consultants .Chile.
Zhang, X., Yang, H., & Cui, Z. (2018). Evaluation And Analysis Of Soil Migration And Distribution Characteristics Of Heavy Metals In Iron Tailings. Journal Cleaner Production Vol. 172. USA.
Bortnikova, S., Yurkevich, N., Bessonova, E., Karin, Y., & Saeva, O. (2013) : The Combination Of Geoelectrical Measurements And Hydro-Geochemical Studies For The Evaluation Of Groundwater Pollution In Mining Tailings Areas. Threats To The Quality Of Groundwater Resources. Springer, Berlin.
Xie, W., Ren, B., Hursthouse, A. S., Wang, Z., & Luo, X. (2020). Simulation Of Manganese Transport In Groundwater Using Visual Modflow: A Case Study From Xiangtan Manganese Ore Area In Central China. Polish Journal Of Environmental Studies Vol. 30. Polandia.
Torres, H. (2020). Assessing Groundwater Contamination Risk And Detection Of Unknown Sources Using A Multi-Component Reactive Transport Model. Journal Of Geoscience And Environment Protection Vol.8. Australia.
Masud, A., & Hughes, T. J. (2002). A stabilized mixed finite element method for Darcy flow. Computer methods in applied mechanics and engineering, 191(39-40), 4341-4370. USA.
Tahershamsi, A., Feizi, A., & Molaei, S. (2018). Modeling groundwater surface by MODFLOW math code and geostatistical method. Civil Engineering Journal, 4(4), 812. Iran.
DOI: https://doi.org/10.20527/jhs.v7i1.5340
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