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Sediment Suspension Distribution Models in East Canal Flood Estuary Waters, Semarang, Central Java, Indonesia

Author(s): Alyssa Hutasuhut 1 , Aris Ismanto 2 , Baskoro Rochaddi 1 , Lilik Maslukah 1 , Rikha Widiaratih 1
Author(s) information:
1 Department of Oceanography, Faculty of Fisheries and Marine Sciences, Diponegoro University, Indonesia
2 Center for Coastal Disaster Mitigation and Rehabilitation, Diponegoro University, Indonesia

Corresponding author

The study was carried out in Semarang City, Central Java, Indonesia, along the East Canal Flood River. There are several community activities that produce some pollutants and total suspended solids (TSS) was one of the elements is. The river transports these pollutants to the estuary. These coastal regions provide exceptional life support for creatures. This study attempts to determine the concentration value of suspended solids, its suitability to the pollution threshold value, and the distribution pattern of the sediment suspension based on hydrodynamic parameters, using the Delft3D program. This study estimated the distribution of sediment suspensions by not only describing conditions at a single point in time, but also representing seasonal conditions periodically. The concentration ranges between 0.04 kg/m3 and 0.06 kg/m3, making it good for aquaculture, marine tourism, and conservation. At high tide, the dispersion of suspended sediment leads to the land; at low tide, it leads to the sea. This study can be utilized as a supplement to prior research, which mainly consisted simply of sediment suspension distribution maps.
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Central Bureau of Statistics of Semarang City. (May 10, 2022) Available online: https://semarangkota.bps.go.id.

Department of Public Works, Water Resources and Spatial Planning. (May 9, 2022) Available online: https://pusdataru.jatengprov.go.id/.

Rahmadi, N.; Widada, S.; Marwoto, J.; Atmodjo, W.; Widiartih, R. (2021). Studi Sebaran Sedimen Dasar di Perairan Sungai Banjir Kanal Timur Semarang, Jawa Tengah. Indonesia Journal of Oceanography, 3, 63-71. https://doi.org/10.14710/ijoce.v3i3.11707.

Oktaviani, A.; Yusuf, M.; Maslukah, L. (2015). Sebaran Konsentrasi Nitrat dan Fosfat Di Perairan Muara Sungai Banjir Kanal Barat, Semarang. Jurnal Oseanografi, 4, 85-92.

Pristiwan, H.; Anugroho, A.; Sugianto, D.S. (2015). Pemetaan Muatan Padatan Tersuspensi Di Perairan Muara Banjir Kanal Barat Semarang Menggunakan Data Satelit Landsat 8. Jurnal Oseanografi, 4, 280-286.

Jayusman, I.; Shavab, O.A.K. (2020). Studi Deskriptif Kuantitatif Tentang Aktivitas Belajar Mahasiswa Dengan Menggunakan Media Pembelajaran Edmodo Dalam Pembelajaran Sejarah. Jurnal Artefak, 7, 13-20. http://dx.doi.org/10.25157/ja.v7i1.3180.

Lenaini, I. (2021). Teknik Pengambilan Sampel Purposive dan Snowball Sampling. Jurnal Kajian, Penelitian, & Pengembangan Pendidikan Sejarah, 6, 33-39. https://doi.org/10.31764/historis.v6i1.4075.

Paramitha, V.K.; Yusuf, M.; Maslukah, L. (2016). Sebaran Muatan Padatan Tersuspensi (Mpt) Di Perairan Karangsong, Kabupaten Indramayu. Jurnal Oseanografi, 5, 293-300.

Septiawan, R.B.; Astuti, E.Z. (2016). Perbandingan Metode Setengah Rata-Rata Dan Metode Kuadrat Terkecil Untuk Peramalan Pendapatan Perusahaan Di BLU UPTD Terminal Mangkang Semarang. Jurnal Teknologi Informasi, 15, 132-139.

Hasibuan, R.D.; Subakti, H.; Sitepu, R. (2015). Analisis Pasang Surut Dengan Menggunakan Metode Least Square Dan Penentuan Periode Ulang Pasang Surut Dengan Metode Gumbel Di Perairan Boom Baru Dan Tanjung Buyut. Maspari Journal, 7, 35-48. https://doi.org/10.36706/maspari.v7i1.2491.

Ministry of Environment. (1988). Decree of the Minister of State for Population and Environment No. Kep-02 MNKLH I 1998 concerning Guidelines for Determining Environmental Quality Standards. Office of the State Minister for Population and Environment Jakarta, Indonesia.; pp. 51-52.

Damayanti, T. R.; Ismanto, A.; Indrayanti, E.; Zainuri, M.; Maslukah, L. (2022). Sebaran Konsentrasi Fosfat di Muara Sungai Sengkarang dengan Pendekatan Model Matematika 2 Dimensi. Indonesian Journal of Oceanography, 4, 12-22. https://doi.org/10.14710/ijoce.v4i1.12691.

Djoharam, V.; Riani, E.; Yani, M. (2018). Analisis Kualitas Air Dan Daya Tampung Beban Pencemaran Sungai Pesanggrahan Di Wilayah Provinsi DKI Jakarta. Jurnal Pengelolaan Sumberdaya Alam dan Lingkungan, 8, 127-133. https://doi.org/10.29244/jpsl.8.1.127-133.

Wulandari, S.Y. (2012). Status Perairan Banjir Kanal Timur Semarang Ditinjau dari Kadar Logam Berat Chromium dalam Air, Sedimen dan Jaringan Lunak Kerang Darah (Anadara granossa). Buletin Oseanografi Marina, 1, 1-7. https://doi.org/10.14710/buloma.v1i3.6903.

Wulandari, S. Y.; Karna, R.O.; Bambang, Y.; Aris, I.; Muslim.; Jarot, M.; Hendry, S.; Siti, M. (2021). Microplastics model distribution in Semarang Waters. Journal of Chemistry and Environment, 25, 109-120.

Ismanto, A.; Zainuri, M.; Hutabarat, S.; Sugianto, D.N.; Widada, S. (2017). Sediment Transport Model in Sayung District, Demak. IOP Conference Series Earth and Environmental Science, 55, 1-6. https://doi.org/10.1088/1755-1315/55/1/012007.

Sugianto, D.N.; Widada, S.; Wirasatriya, A.; Ismanto, A.; Darari, A.; Suripin. (2017). Modelling Of Suspended Sediment Transport In Coastal Demak Indonesia By Using Currents Analyzing. ARPN Journal and Engineering and Applied Sciences, 12, 4666-4678.

Surbakti, H. (2012). Karakteristik Pasang Surut dan Pola Arus di Muara Sungai Musi, Sumatera Selatan. Jurnal Penelitian Sains Universitas Sriwijaya, 15, 35- 39. https://doi.org/10.26554/jps.v15i1.92.

Indrayana, R.; Yusuf, M.; Rifai, A. (2014). Pengaruh Arus Permukaan Terhadap Sebaran Kualitas Air Di Perairan Genuk Semarang. Jurnal Oseanografi, 3, 651-659.

About this article

SUBMITTED: 20 May 2022
ACCEPTED: 11 July 2022
PUBLISHED: 28 July 2022
SUBMITTED to ACCEPTED: 53 days
DOI: https://doi.org/10.53623/tasp.v2i2.93

Cite this article
Hutasuhut, A., Ismanto, A., Rochaddi, B., Maslukah, L., & Widiaratih, R. (2022). Sediment Suspension Distribution Models in East Canal Flood Estuary Waters, Semarang, Central Java, Indonesia. Tropical Aquatic and Soil Pollution, 2(2), 76–89. https://doi.org/10.53623/tasp.v2i2.93
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