Trend of Rainfall Pattern in Palembang for 20 Years and Link to El-niño Southern Oscillation (ENSO)
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Akhsan, H., Romadoni, M., & Ariska, M. (2022). Prediction of extreme temperature in South Sumatra and its applications at the end of the 21st century. Jurnal Penelitian Pendidikan IPA, 8(2), 925–931. https://doi.org/10.29303/jppipa.v8i2.1363
Aldrian, E. (2001). Pembagian iklim Indonesia berdasarkan pola curah hujan dengan metoda “double correlation”. Jurnal Sains & Teknologi Modifikasi Cuaca, 2(1), 2–11.
Aldrian, E., & Susanto, R. D. (2003). Identification of three dominant rainfall regions within Indonesia and their relationship to sea surface temperature. International Journal of Climatology, 23(12), 1435–1452. https://doi.org/10.1002/joc.950
Ariska, M., Akhsan, H., & Muslim, M. (2022). Impact profile of enso and dipole mode on rainfall as anticipation of hydrometeorological disasters in the province of South Sumatra. Spektra: Jurnal Fisika Dan Aplikasinya, 7(3), 127–140. https://doi.org/10.21009/spektra.073.02
Ariska, M., Akhsan, H., Muslim, M., & Romadoni, M. (2022). Prediksi perubahan iklim ekstrem di kota Palembang dan kaitannya dengan fenomena el niño-southern oscillation ( enso ) berbasis machine learning. Jurnal Inovasi Pendidikan Fisika dan Riset Ilmiah, 6(2), 79–86.
Bhatti, A. S., Wang, G., Ullah, W., Ullah, S., Hagan, D. F. T., Nooni, I. K., Lou, D., & Ullah, I. (2020). Trend in extreme precipitation indices based on long term in situ precipitation records over Pakistan. Water (Switzerland), 12(3), 1–19. https://doi.org/10.3390/w12030797
Brandes, E. E., Zhang, G., & Vivekanandan, J. (2002). Experiments in rainfall estimation with a polarimetric radar in a subtropical environment. Journal of Applied Meteorology, 41(6), 674–683. https://doi.org/10.1175/1520-0450(2002)041<0674:EIREWA>2.0.CO;2
Cavazos, T. (2000). Using self-organizing maps to investigate extreme climate events: An application to wintertime precipitation in the Balkans. Journal of Climate, 13(10), 1718–1732. https://doi.org/10.1175/1520-0442(2000)013<1718:USOMTI>2.0.CO;2
Dewanti, Y. P., Muliadi, & Adriat, R. (2018). Pengaruh el niño southern oscillation (ENSO) terhadap curah hujan di Kalimantan Barat. Prisma Fisika, 6(3), 145–151.
Pandia, F. S., Sasmito, B., & Sukmono, A. (2019). Analisis pengaruh angin monsun terhadap perubahan curah hujan dengan penginderaan jauh (studi kasus: provinsi Jawa Tengah). Jurnal Geodesi Undip, 8(1), 278–287.
Hafizhurrahman, I., Kunarso, K., & Suryoputro, A. (2015). Pengaruh iod (indian ocean dipole) terhadap variabilitas nilai serta distribusi suhu permukaan laut dan klorofil-a pada periode upwelling di perairan sekitar Bukit Badung Bali. Jurnal Oseanografi, 4(2), 138517.
Handoko, E. Y., Filaili, R. B., & . Y. (2019). Analisa fenomena enso di perairan indonesia menggunakan data altimetri topex/poseidon dan jason series tahun 1993 – 2018. Geoid, 14(2), 43. https://doi.org/10.12962/j24423998.v14i2.3892
Hermawan, E. (2010). Pengelompokkan pola curah hujan yang terjadi di beberapa kawasan P. Sumatera berbasis hasil analisis teknik spektral. Jurnal Meteorologi Dan Geofisika, 11(2). https://doi.org/10.31172/jmg.v11i2.67
Iskandar, I., Tozuka, T., Masumoto, Y., & Yamagata, T. (2008). Impact of Indian Ocean Dipole on intraseasonal zonal currents at 90°E on the equator as revealed by self-organizing map. Geophysical Research Letters, 35(14), 1–5. https://doi.org/10.1029/2008GL033468
Kajita, R., Yamanaka, M. D., & Kozan, O. (2022). Reconstruction of rainfall records at 24 observation stations in Sumatera, Colonial Indonesia, from 1879–1900. Journal of Hydrometeorology, 1–71. https://doi.org/10.1175/jhm-d-20-0245.1
Kutzbach, J. E. (1967). Empirical eigenvector of sea-level pressure, surface temperature and precipitation comlexes over Nort America. Journal of Applied Meteorology, 6, 791-802.
Luhwahyudin, M., & Citrosiswoyo, W. (2012). Analisa perubahan garis pantai tegal dengan menggunakan empirical orthogonal function (EOF). Jurnal Teknik ITS, 1(1), 182-185.
Lyons, S. W. (1982). Empirical orthogonal function analysis of hawaiian rainfall. Journal of Applied Meteorology, 21, 1713.
Misnawati, ., & Perdanawanti, M. (2019). Trend of extreme precipitation over sumatera island for 1981-2010. Agromet, 33(1), 41–51. https://doi.org/10.29244/j.agromet.33.1.41-51
Molle, B. A., & Larasati, A. F. (2020). Analisis anomali pola curah hujan bulanan tahun 2019 terhadap normal curah hujan (30 tahun) di kota manado dan sekitarnya. Jurnal Meteorologi Klimatologi dan Geofisika, 7(1), 1–8.
Novi, M. B., Muliadi, & Adriat, R. (2018). Pengaruh ENSO dan dipole mode terhadap curah hujan di kota Pontianak. Prisma Fisika, 6(3), 210–213.
Pourasghar, F., Tozuka, T., Jahanbakhsh, S., Sari Sarraf, B., Ghaemi, H., & Yamagata, T. (2012). The interannual precipitation variability in the southern part of Iran as linked to large-scale climate modes. Climate Dynamics, 39(9–10), 2329–2341. https://doi.org/10.1007/s00382-012-1357-5
Pachauri, R. K., Meyer, L., & Team, C. W. T. (2014). Contribution of working groups I, II and III to the fifth assessment report of the intergovernmental panel on climate change [core writing team, r.k. pachauri and l.a. meyer (eds.)]. IPCC, Geneva, Switzerland, 155.
Ramage, C. S. (1968). Role of a tropical “maritime continent” in the atmospheric circulation. American Meteorological Society, 95(6) 365–370.
Rouw, A., Hadi, T. W., K, B. T. H., & Hadi, S. (2014). Analisis variasi geografis pola hujan di wilayah papua geographic variation analysis of rainfall pattern in Papua Region. Jurnal Tanah Dan Iklim, 38(1), 25–34.
Simanjuntak, P. P., Nopiyanti, A. D., & Safril, A. (2020). Proyeksi curah hujan dan suhu udara ekstrim masa depan periode tahun 2021-2050 kota Banjarbaru Kalimantan Selatan. Jukung (Jurnal Teknik Lingkungan), 6(1), 45–53. https://doi.org/10.20527/jukung.v6i1.8237
Swenson, L. M., & Grotjahn, R. (2019). Using self-organizing maps to identify coherent conus precipitation regions. Journal of Climate, 32(22), 7747–7761. https://doi.org/10.1175/JCLI-D-19-0352.1
Tavakol, A., Rahmani, V., & Harrington, J. (2020). Evaluation of hot temperature extremes and heat waves in the Mississippi River Basin. Atmospheric Research, 239(1), 104907. https://doi.org/10.1016/j.atmosres.2020.104907
William J. Emery & Richard E. Thomson. (2016). Data Analysis Methods in Physical Oceanogrraphy, Estuaries 12(3), 53-54.
Zhan, Y. J., Ren, G. Y., Shrestha, A. B., Rajbhandari, R., Ren, Y. Y., Sanjay, J., Xu, Y., Sun, X. B., You, Q. L., & Wang, S. (2017). Changes in extreme precipitation events over the Hindu Kush Himalayan region during 1961–2012. Advances in Climate Change Research, 8(3), 166–175. https://doi.org/10.1016/j.accre.2017.08.002
DOI: http://dx.doi.org/10.24042/jipfalbiruni.v12i1.15525
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