KAJIAN KAPASITAS TAMPUNGAN AIR EMBUNG BOLON PARANGINAN SELATAN KECAMATAN MUARA KABUPATEN TAPANULI UTARA
Abstract
this study aims to analyze the volume of the storage capacity of the Bolon Paranginan Selatan storage as a solution to meet the water needs of both irrigation and raw water due to the increase in population and the need for food in Muara District, North Tapanuli Regency. The study was conducted in the Bolon Paranginan Selatan storage with the water source coming from rainfall that flows within the catchment area of the storage. The method approach is carried out quantitatively based on the simulation of the storage volume capacity between inflow and outflow. The research methodology is carried out by analyzing monthly rainfall, monthly dependable discharge with a probability of 80%, irrigation water demand discharge, population projections, raw water demand discharge, and numerical analytical simulation of storage capacity. The results showed the large volume of storage capacity of the Bolon Paranginan Selatan is 12.034,71 m3 with the height of 3 m from the bottom of the storage for the utilization of raw water needs of 6768 people and the potential area of irrigation area reaching 30,671 Ha with an increase in cropping patterns to twice the planting period.
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Badan Pusat Statistik, Kecamatan Muara Dalam Angka. 2020.
C. J. Wicaksana, A. Y. Muttaqien, and R. R. R. Hadiani, ‘Pemanfaatan Embung Sambirejo Kabupaten Sragen Sebagai Sarana Pemenuhan Kebutuhan Air Non Irigasi’, Matriks Tek. Sipil, vol. 6, no. 2, pp. 282–292, 2018, doi: 10.20961/mateksi.v6i2.36571.
E. Surmaini and A. Faqih, ‘Kejadian Iklim Ekstrem dan Dampaknya Terhadap Pertanian Tanaman Pangan di Indonesia’, J. Sumberd. Lahan, vol. 10, no. 2, pp. 115–128, 2016.
R. P. Al Huda, R. Asmaranto, and V. Dermawan, ‘Studi Perencanaan Embung Lapangan Jegreg Kecamatan Lengkong Kabupaten Nganjuk Provinsi Jawa Timur’, J. Teknol. dan Rekayasa Sumber Daya Air, vol. 1, no. 1, pp. 158–169, 2021, doi: 10.21776/ub.jtresda.2021.001.01.14.
S. Y. Nifen and V. I. P. Edi, ‘Kapasitas Tampungan Embung Trimulya Terhadap Kebutuhan Air Irigasi di Nagari Panyubarangan Kabupaten Dharmasyara Sumatera Barat’, Ensiklopedia J., vol. 1, no. 1, pp. 1–5, 2018.
D. S. Krisnayanti, E. E. Hangge, T. M. W. Sir, E. N. Mbauth, and A. C. Damayanti, ‘Perencanaan Embung Wae Lerong untuk Pemenuhan Kebutuhan Air Irigasi di Daerah Irigasi Wae Lerong Ruteng Provinsi NTT’, J. Irig., vol. 15, no. 1, p. 15, 2020, doi: 10.31028/ji.v15.i1.15-30.
S. Ginting, ‘Optimasi pemanfaatan air Embung Kasih untuk domestik dan irigasi tetes’, J. Irig., vol. 13, no. 1, p. 41, 2019, doi: 10.31028/ji.v13.i1.41-54.
A. Bagiawan, ‘Pengembangan areal layanan irigasi dari Bendung Perjaya – Sumatera Selatan dengan metode numerik dan “Sequent Peak”’, vol. 8, no. 1, pp. 1–14, 2013.
V. Noperissa and R. S. B. Waspodo, ‘Analisis Kebutuhan dan Ketersediaan Air Domestik Menggunakan Metode Regresi di Kota Bogor’, J. Tek. Sipil dan Lingkung., vol. 3, no. 3, pp. 121–132, 2018, doi: 10.29244/jsil.3.3.121-132.
D. Putri and . Perdinan, ‘Analysis of Regional Water Availability for Domestic Water Demand (Case Study: Malang Regency)’, Agromet, vol. 32, no. 2, p. 93, 2018, doi: 10.29244/j.agromet.32.2.93-102.
M. Rizqi, M. Yasar, and D. S. Jayanti, ‘Analysis of Irrigation Water Requirement Using CROPWAT 8 . 0 in Krueng Jreu Irrigation Area of Aceh Besar Regency’, J. Ilm. Mhs. Pertan., vol. 4, no. November, pp. 412–421, 2019.
Y. Mediawan, L. Montarcih, W. Soetopoi, and T. B. Prayogo, ‘Water balance supporting the irrigation water demand in Java Island, Indonesia’, Indones. J. Geogr., vol. 53, no. 1, pp. 9–19, 2021, doi: 10.22146/IJG.59102.
T. T. Mahardhika, D. Sisinggih, and H. Suprijanto, ‘Studi Perencanaan Embung Kembangan Kecamatan Pule Kabupaten Trenggalek Provinsi Jawa Timur’, J. Teknol. dan Rekayasa Sumber Daya Air, vol. 1, no. 2, pp. 368–378, 2021, doi: 10.21776/ub.jtresda.2021.001.02.03.
K. Djaman et al., ‘Crop evapotranspiration, irrigation water requirement and water productivity of maize from meteorological data under semiarid climate’, Water (Switzerland), vol. 10, no. 4, 2018, doi: 10.3390/w10040405.
P. A. Setiadi, Y. Wijayanti, C. Cahyono, and Juliastuti, ‘FJ.Mock Method for Hydrological model in Water Reliability Study at Jatiluhur Estate, Purwakarta’, IOP Conf. Ser. Earth Environ. Sci., vol. 998, no. 1, 2022, doi: 10.1088/1755-1315/998/1/012003.
S. H. Ewaid, S. A. Abed, and N. Al Ansari, ‘Crop Water Requirements and Irrigation Schedules for Some Major Crops in Southern Iraq Salam’, Water, vol. 11, no. 4, pp. 1–12, 2019.
S. Mathur, ‘Mathematical Modeling Applications in Water Assessment and Management’, vol. 3, no. 03, pp. 1–4, 2015.
D. Chandrasasi, L. Montarcih Limantara, and R. Wulan Juni, ‘Analysis using the F. J. Mock Method for calculation of water balance in the Upper Konto Sub-Watershed’, IOP Conf. Ser. Earth Environ. Sci., vol. 437, no. 1, 2020, doi: 10.1088/1755-1315/437/1/012019.
BPS Kab Humbang Hasundutan, ‘Jumlah Penduduk Dalam Angka Kab. Humbang Hasundutan’, no. 8.5.2017. pp. 2003–2005, 2022.
BPSDM Kementerian Pekerjaan Umum dan Perumahan Rakyat, ‘Penyelenggaraan pengembangan sistem penyediaan air minum’, 2007, [Online]. Available: ciptakarya.pu.go.id/dok/hukum/permen/permen_18_2007.pdf.
E. Rozita and D. Sutjiningsih, ‘The evaluation of irrigation water requirement under climate change phenomenon in the urban area (a literature study)’, IOP Conf. Ser. Earth Environ. Sci., vol. 311, no. 1, 2019, doi: 10.1088/1755-1315/311/1/012005.
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