KAJIAN PENENTUAN PRIORITAS RUANG TERBUKA HIJAU BERDASARKAN FENOMENA URBAN HEAT ISLAND DI KOTA CIREBON

Irland Fardani, Mohamad Rizalby Yosliansyah

Abstract


Urban Heat Island (UHI) is characterized by an increase in surface temperature that occurs in downtown areas which is higher than in sub-urban areas. Cirebon City in 2018 - 2023 years has an increased population growth rate of 2.9% per year and ± 55% of built-up land. Cirebon city also one of the 9 cities in West Java where there has been an increase in temperature where the UHI phenomenon occurred in 1989 – 2021 years with the downtown and sub-urban areas having a surface temperature difference of 3°C. So it is necessary to have a study regarding determining the priority of green open space reduce the effect of UHI in Cirebon City. The research methodology used is Landsat 8 image processing and with helping of a Geographic Information System (GIS) to determine priority green open space locations. The parameters used are vegetation index, population density and comfort index. The purpose of this study is to determine the priority locations in increasing the area of green open space to reduce the UHI effect based on the level of suitability of the Cirebon City Rencana Detil Tata Ruang (RDTR). The results of the study show that areas that are not suitable according to the RDTR of Cirebon City are the top priority that needs to be done. The priority is reforestation covering an area of ± 2,481.22 ha around built-up land by modifying green open space in the form of implementing green infrastructure (GI).

Keywords


urban heat island, green open space, cirebon, green infrastructure

References


Agustina, I. H., Aji, R. R., Fardani, I., Rochman, G. P., Ekasari, A. M., & Mohmed, F. A. J. (2022). Cellular Automata for Cirebon City Land Cover and Development Prediction. Planning Malaysia, 20(1), 77–88. https://doi.org/10.21837/PM.V20I20.1080

Ahmed, S. (2018). The Egyptian Journal of Remote Sensing and Space Sciences Assessment of urban heat islands and impact of climate change on socioeconomic over Suez Governorate using remote sensing and GIS techniques. The Egyptian Journal of Remote Sensing and Space Sciences, 21(1), 15–25. https://doi.org/10.1016/j.ejrs.2017.08.001

Arifah, N. (2018). Permodelan Spasial Perkembangan Lahan Berdasarkan Penentuan Prioritas Ruang Terbuka Hijau Di Wilayah Surabaya Timur. In Departemen Perencanaan Wilayah dan Kota ITS. Institut Teknologi Sepuluh Nopember.

Arifah, N., & Susetyo, C. (2018). Penentuan Prioritas Ruang Terbuka Hijau berdasarkan Efek Urban Heat Island di Wilayah Surabaya Timur. Jurnal Teknik ITS, 7(2). https://doi.org/10.12962/j23373539.v7i2.32454

BPS Kota Cirebon. (2021). Kota Cirebon Dalam Angka 2021. BPS Kota Cirebon.

Carpio, M., González, Á., González, M., & Verichev, K. (2020). Energy & Buildings Influence of pavements on the urban heat island phenomenon : A scientific evolution analysis.

Energy & Buildings, 226, 110379. https://doi.org/10.1016/j.enbuild.2020.110379

Darmawan, S., & Barry, T. Al. (2022). Analisis Fenomena Urban Heat Island Menggunakan Google Earth Engine (Studi kasus : Jawa Barat, Indonesia). FTSP Series : Seminar Nasional Dan Diseminasi Tugas Akhir 2022, 261–270.

Emmanuel, R. (2005). Thermal comfort implications of urbanization in a warm-humid city: The Colombo Metropolitan Region (CMR), Sri Lanka. Building and Environment, 40(12), 1591–1601. https://doi.org/10.1016/j.buildenv.2004.12.004

Fardani, I., Tarlani, & Aji, R. R. (2021). Analysis of Changes in Air Quality in Major Cities Indonesia During {COVID} 19 Using Remote Sensing Data. {IOP} Conference Series: Earth and Environmental Science, 830(1), 12085. https://doi.org/10.1088/1755-1315/830/1/012085

Handayani, L. S., & Ramadhan, B. (2021). RTH di Kota Cirebon Masih Minim. RepJabar.

Humaida, N. (2016). Metode penentuan prioritas ruang terbuka hijau di kota banjarbaru kalimantan selatan nida humaida. 62.

Lestari, R. A., Fatimah, E., & Barus, L. S. (2017). Identifikasi Perkembangan Perkotaaan Metropolitan Cirebon Raya. Seminar Nasional Cendikiawan 3 (Buku 2), 199–205.

Maimaitiyiming, M., Ghulam, A., Tiyip, T., Pla, F., Latorre-carmona, P., Halik, Ü., Sawut, M., & Caetano, M. (2014). ISPRS Journal of Photogrammetry and Remote Sensing Effects of green space spatial pattern on land surface temperature : Implications for sustainable urban planning and climate change adaptation. ISPRS Journal of Photogrammetry and Remote Sensing, 89, 59–66. https://doi.org/10.1016/j.isprsjprs.2013.12.010

Naf, M. Z. T., & Hernawati, R. (2018). Analisis Fenomena UHI (Urban Heat Island) Berdasarkan Hubungan Antara Kerapatan Vegetasi Dengan Suhu Permukaan. ITB Indonesian Journal of Geospatial Vol. 05, No. 1, 2018, 25 - 36, 05(1), 25–36.

Nakata-osaki, C. M., Cristina, L., Souza, L., & Souto, D. (2018). Computers , Environment and Urban Systems THIS – Tool for Heat Island Simulation : A GIS extension model to calculate urban heat island intensity based on urban geometry. Computers, Environment and Urban Systems, 67, 157–168. https://doi.org/10.1016/j.compenvurbsys.2017.09.007

Norton, B. A., Coutts, A. M., Livesley, S. J., Harris, R. J., Hunter, A. M., & Williams, N. S. G. (2015). Planning for cooler cities: A framework to prioritise green infrastructure to mitigate high temperatures in urban landscapes. Landscape and Urban Planning, 134, 127–138. https://doi.org/10.1016/j.landurbplan.2014.10.018

Rindi Kurnianti. (2020). Ketersediaan Ruang Terbuka Hijau Dan Urban Heat Island Di Kota Makassar. 3(2).

Tahir, I., Paembonan, R. E., Harahap, Z. A., Akbar, N., & Wibowo, E. S. (2017). Sebaran Kondisi Ekosistem Hutan Mangrove Di Kawasan Teluk Jailolo Kabupaten Halmahera Barat Provinsi Maluku Utara. Jurnal Enggano, 2, 143–155.

USGS. (2019). Landsat 8 Data Users Handbook. Nasa, 8(November), 114.

Wati, T., & Fatkhuroyan, F. (2017). Analisis Tingkat Kenyamanan Di DKI Jakarta Berdasarkan Indeks THI (Temperature Humidity Index). Jurnal Ilmu Lingkungan; Vol 15, No 1. https://doi.org/10.14710/Jil.15.1.57-63 . https://ejournal.undip.ac.id/index.php/ilmulingkungan/article/view/14557

Zhou, D., Zhao, S., Zhang, L., Sun, G., & Liu, Y. (2015). The footprint of urban heat island effect in China. Scientific Reports, 5, 2–12. https://doi.org/10.1038/srep11160


DOI: http://dx.doi.org/10.31314/jsig.v5i2.1708

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