FUZZY ANALYTIC HIERARCHY PROCESS BERBASIS MORFOMETRI UNTUK PRIORITAS PENANGANAN EROSI DI SUB DAERAH ALIRAN SUNGAI OYO (Fuzzy analytic hierarchy process based on watershed morphometry for erosion priority mapping in Oyo Sub Watershed)

Alfiatun Nur Khasanah, Arina Miardini

Abstract


ABSTRACT

Erosion is an indication of watershed degradation. In a watershed management, it is necessary to prioritize the handling that takes into account the characteristics of the watershed, one of which is morphometric character. This study aims to determine the priority location of erosion management in Oyo Watershed based on morphometric data using Fuzzy AHP modeling. Morphometric parameters that affect erosion are Rbm (bifurcation ratio), Rc (circulatory ratio), Dd (drainage density), T (texture), Su (Gradient) and Rn (Rugness Number). The highest value of the output shows the priority location that should be controlled. The high priority levels are found in 21 sub-watersheds with an area of 3,82 ha, medium levels are in 35 sub-watersheds with an area of 17,780.21 ha, low levels are in 106 sub-sub Watersheds with an area of 48,974.46 ha. The priority order for erosion management at the sub-watershed level is very important to prepare a watershed management plan in order to control soil erosion that is appropriate to protect the soil from further erosion.

Keywords: fuzzy-AHP; morphometry; priority; erosion; Oyo Sub-watershed

 

ABSTRAK

Erosi merupakan salah satu indikasi kerusakan DAS. Dalam pengelolaan DAS perlu dilakukan urutan prioritas penanganan dengan memperhatikan karakteristik DAS, salah satunya yaitu karakter morfometri. Penelitian ini bertujuan untuk mengetahui lokasi prioritas penanganan erosi di Sub DAS Oyo berdasarkan data morfometri dengan menggunakan pemodelan Fuzzy AHP. Parameter morfometrik yang mempengaruhi erosi adalah Rbm (bifurcation ratio), Rc (circulatory ratio), Dd (drainage density), T (texture), Su (gradient), dan Rn (rugness number). Nilai tertinggi dari hasil analisis menunjukkan lokasi prioritas yang harus didahulukan penanganan erosinya. Tingkat prioritas tinggi terdapat pada 21 sub-sub DAS dengan luas 3.82 ha, tingkat sedang pada 35 sub-sub DAS dengan luas 17.780,21 ha, tingkat rendah pada 106 sub-sub DAS dengan luas 48.974,46 ha. Urutan prioritas penanganan erosi pada tingkat sub DAS sangat penting untuk menyusun rencana pengelolaan DAS dalam rangka pengendalian erosi tanah yang sesuai sebagai upaya perlindungan tanah dari erosi lebih lanjut.

Kata kunci: fuzzy-AHP; morfometri; prioritas; erosi; Sub DAS Oyo


Keywords


fuzzy-AHP; morfometri; prioritas; erosi; Sub DAS Oyo

References


Aglanu, L. M. (2014). Watersheds and Rehabilitations Measures - A Review, Resources and Environment.4(2), 104–114. https://doi.org/10.5923/j.re.20140402.04

Asfaw, D., & Workineh, G. (2019). Quantitative analysis of morphometry on Ribb and Gumara watersheds: Implications for soil and water conservation. International Soil and Water Conservation Research, 7(2), 150–157. https://doi.org/10.1016/j.iswcr.2019.02.003

Albaroot, M., Al-areeq, N. M., Aldharab, H. S., Alshayef, M., & Ghareb, S. A. (2018). Quantification of Morphometric Analysis using Remote Sensing and GIS Techniques in the Qa ’ Jahran Basin , Thamar Province Yemen. International Journal of New Technology and Research (8), 12–22.

Chandramohan, K., & Vijaya, R. (2016). An analysis of geomorphic quantitative study of bifurcation ratio and drainage pattern by using remote sensing and GIS techniquae: a case study in Sirumalai Hill Environs, Tamil Nadu, India. African Journal of Geo-Science Research, 4(1), 12–15.

Chaudhry, A. K., Kumar, K., & Alam, M. A. (2019). Mapping of groundwater potential zones using the fuzzy analytic hierarchy process and geospatial technique. Geocarto International, 1–22. https://doi.org/10.1080/10106049.2019.1695959

Faisol,A.,Muslim,M.A.,Suyono,H. (2014).Komparasi Fuzzy AHP dan AHP pada sistem pendukung keputusan investasi properti. Jurnal EECCIS 8 (2)

Gajbhiye, S., Mishra, S., & Pandey, A. (2013). Effects of Seasonal/Monthly Variation on Runoff Curve Number for Selected Watersheds of Narmada Basin. International Journal of Environmental Sciences Vol 3, No 6: 2019-2020.

Gajbhiye, S., & Ashish, S. K. M. (2014). Prioritizing erosion-prone area through morphometric analysis : an RS and GIS perspective. Applied Water Science 4: 51–61. https://doi.org/10.1007/s13201-013-0129-7

Cooke, R.U. dan Doorkamp, J.C. 1974. Geomorpology in Environment Management, An Introduction. Oxford.Clarendon Press.

Govindan, K., Khodaverdi, R., & Jafarian, A. (2013). A fuzzy multi criteria approach for measuring sustainability performance of a supplier based on triple bottom line approach. Journal of Cleaner Production, 47, 345–354. https://doi.org/10.1016/j.jclepro.2012.04.014

Hadi, Sutrisno. (2015). Statistik (Edisi Revisi). Yogyakarta : Pustaka Pelajar

Haidara, I., Tahri, M., Maanan, M., & Hakdaoui, M. (2019). Efficiency of Fuzzy Analytic Hierarchy Process to detect soil erosion vulnerability. Geoderma, Vol. 354. https://doi.org/10.1016/j.geoderma.2019.07.011

Hammad, A. A. (2009). Watershed erosion risk assessment and management utilizing revised universal soil loss equation-geographic information systems in the Mediterranean environments, Water and Environment Journal 1–14. https://doi.org/10.1111/j.1747-6593.2009.00202.x

Horton, R.E. 1932. Drainage Basin Characteristics. Tansactions of American Geophysical Association, 13,pp. 350-36.1

Kacem, H. A., Fal, S., Karim, M., Alaoui, H. M., Rhinane, H., & Maanan, M. (2019). Application of fuzzy analytical hierarchy process for assessment of desertification sensitive areas in North West of Morocco. Geocarto Internationa, 1–18. https://doi.org/10.1080/10106049.2019.1611949

Kadam, A. K., Jaweed, T. H., Kale, S. S., Bhavana, N., Sankhua, R. N., Kadam, A. K., … Kale, S. S. (2019). Identification of erosion-prone areas using modified morphometric prioritization method and sediment production rate : a remote sensing and GIS approach. Geomatics, Natural Hazards and Risk, 10(1), 986–1006. https://doi.org/10.1080/19475705.2018.1555189

Kasmawati, Hasanah, U., & Rahman, A. (2016). Prediksi erosi pada beberapa penggunaan lahan di desa Labuan Toposo kecamatan Labuan Kabupaten Donggala. Agrotekbis, 4(6), 659–666.

Kusumadewi, S. dan Hartanti, S., 2010, Neuro-Fuzzy Integrasi Sistem Fuzzy dan Jaringan Syaraf Tiruan. Yogyakarta : Graha Ilmu.

Lu,Je dan Zang,G.,2006 Multi-Objective Group Decision Making Methods, Software and Applications With Fuzzy Set Technique. London : Imperial Colledge Press

Malczewski, J., 2004, “GIS-Based Land-Use Suitability Analysis: A Critical Overview”. Journal Progress in Planning, Vol. 62, hal: 3-64.

Miardini, A., & Khasanah, alfiatun nur. (2017). Penentuan prioritas penanganan serta upaya rehabilitasi hutan dan lahan dalam pengendalian erosi dan sedimentasi di Sub DAS Slahung. Prtosiding Seminar Nasional Ke-3 Pengelolaan Pesisir Dan DAS.

Miardini, A. (2019). Dinamika bentukan lahan fluvial akibat sedimentasi di sungai Grindulu, segmen Arjosari-Pacitan.Jurnal Penelitian Pengelolaan DAS, Vol. 3 No. 1, 13-25. doi https://doi.org/10.20886/jppdas.2019.3.1.13-26

Mohammed, A., Adugna, T., & Takala, W. (2018). Morphometric analysis and prioritization of watersheds for soil erosion management in Upper Gibe catchment. Journal of Degraded and Mining Lands Management, 6(1), 1419–1426. https://doi.org/10.15243/jdmlm.2018.061.1419

Prabhakar, A. ., Singh, K. ., Lohani, A. K., & Chandniha, S. K. (2019). Study of Champua watershed for management of resources by using morphometric analysis and satellite imagery. Applied Water Science, 9(5), 1–16. https://doi.org/10.1007/s13201-019-1003-z

Morgan, R.C.P., 2005,Soil Erosion and Conservation Third Edition, Amerika : Blackwell Publishing.

Saaty, T., & Vargas, L. (2012). Models, methods, concepts & applications of the analytic hierarchy process. In … -Driven Demand and Operations Management Models (Vol. 175). https://doi.org/10.1007/978-1-4614-3597-6

Saha, S., Gayen, A., Pourghasemi, H. R., & Tiefenbacher, J. P. (2019). Identification of soil erosion-susceptible areas using fuzzy logic and analytical hierarchy process modeling in an agricultural watershed of Burdwan district, India. Environmental Earth Sciences, 78(23), 1–18. https://doi.org/10.1007/s12665-019-8658-5

Saranaathan, S. ., & Manickaraj, S. (2017). Morphometric Analysis approach for Recharge and Soil Erosion potential in Morphometric Analysis approach for Recharge and Soil Erosion Potential in Agaram Watershed , Javadi Hill Range , Vellore District , Tamil Nadu , India. International Journal of Earth Sciences and Engineering, 10(2), 298–303. https://doi.org/10.21276/ijee.2017.10.0222

Schumm, S.A. 1956. Evolution of Drainage Systems and Slopes in Badlands at Perth Amboy. Geological Society of America, New Jersey. Vol .67

Tangestani, M. H. (2009). A comparative study of Dempster-Shafer and fuzzy models for landslide susceptibility mapping using a GIS: An experience from Zagros Mountains, SW Iran. Journal of Asian Earth Sciences, 35(1), 66–73. https://doi.org/10.1016/j.jseaes.2009.01.002

Zadeh, L.A., 1965, Fuzzy Set, Journal Information and Control, Vol. 8, hal: 338-353.




DOI: https://doi.org/10.20886/jppdas.2020.4.1.63-78

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