Analysis of Land Surface Temperature during the Pandemic Using the Google Earth Engine (GEE) Platform in DKI Jakarta

Ilfa Layali, Fitriana Azzahra, Agnes Risma Anggraeni, Dessy Apriyanti

Full Text:

PDF Remote

References


Abutaleb, K., Ngie, A., Ahmed, F., Darwish, A., & Ahmed, M. (2014). Assessment of Urban Heat Island using Satellite Remotely Sensed Imagery: A Review. South African Geographical Journal, 96(2). https://doi.org/10.1080/03736245.2014.924864.

Ainurrohmah, S., & Sudarti. (2022). Analisis Perubahan Iklim dan Global Warming yang Terjadi sebagai Fase Kritis. Jurnal Pendidikan Fisika Dan Fisika Terapan, 3(3), 1–10.

Darlina, S. P., Sasmito, B., & Yuwono, B. D. (2018). Analisis Fenomena Urban Heat Island Serta Mitigasinya (Studi Kasus: Kota Semarang). Jurnal Geodesi Undip, 7(3), 77–87.

Fariz, T. R. (2016). Pemanfaatan Citra Satelit dan Sistem Informasi Geografis untuk Pengembangan Ruang Terbuka Hijau Berdasarkan Estimasi Suhu Permukaan Daratan di Kota Pekalongan. Skripsi. Semarang: Jurusan Geografi UNNES.

Fawzi, N. I., & Jaatmiko, R. H. (2015). Heat Island Detection in Coal Mining Areas using Multitemporal Remote Sensing. ACRS 2015 - 36th Asian Conference on Remote Sensing: Fostering Resilient Growth in Asia, Proceedings.

Fawzi, N. I., & Husna, V. N. (2021). Landsat 8-Sebuah Teori dan Teknik Pemrosesan Tingkat Dasar. Elmarkazi Publisher. https://www.researchgate.net/publication/350819219.

Gorelick, N., Hancher, M., Dixon, M., Ilyushchenko, S., Thau, D., & Moore, R. (2017). Google Earth Engine: Planetary-Scale Geospatial Analysis for Everyone. Remote Sensing of Environment, 202. https://doi.org/10.1016/j.rse.2017.06.031.

Jeevalakshmi, D. R., & S.N. Manikiam, B. (2017). Land Surface Temperature Retrieval from Landsat Data using Emissivity Estimation. International Journal of Applied Engineering Research, 12(20), 9679–9687. ISSN 0973-4562.

Joshi, J. P., & Bhatt, B. (2012). Estimating Temporal Land Surface Temperature using Remote Sensing: A Study of Vadodara Urban Area, Gujarat. International Journal of Geology, Earth and Environmental Sciences, 2(1), 123–130.

Kalinda, I. O. P., Sasmito, B., & Sukmono, A. (2018). Analisis Pengaruh Atmosfer Terhadap Deteksi Land Surface Temperature Menggunakan Citra Landsat 8 di Kota Semarang. Jurnal Geodesi Undip, 7(3).

Muzaky, H., & Jaelani, L. M. (2019). Analisis Pengaruh Tutupan Lahan terhadap Distribusi Suhu Permukaan: Kajian Urban Heat Island di Jakarta, Bandung dan Surabaya. Jurnal Penginderaan Jauh Indonesia, 01(02), 45–51. http://jurnal.mapin.or.id/index.php/jpji/issue/archive.

Pratiwi, A. Y., & Jaelani, L. M. (2020). Analisis Perubahan Distribusi Urban Heat Island (UHI) di Kota Surabaya Menggunakan Citra Satelit Landsat Multitemporal. Jurnal Teknik ITS, 9(2), 48–55.

Putri, R. N. (2020). Indonesia dalam Menghadapi Pandemi Covid-19. Jurnal Ilmiah Universitas Batanghari Jambi, 20(2), 705–709. https://doi.org/10.33087/jiubj.v20i2.1010.

Rosidi, A., & Nurcahyo, E. (2020). Penerapan new normal (kenormalan baru) dalam penanganan Covid-19 sebagai pandemi dalam hukum positif.Journal Ilmiah Rinjani: Media Informasi Ilmiah Universitas Gunung Rinjani,8(2), 193-197.

Sulistiyono, N., Basyuni, M., & Slamet, B. (2018). Land Surface Temperature Distribution and Development for Green Open Space in Medan City Using Imagery-Based Satellite Landsat 8. IOP Conf. Series: Earth and Environmental Science. 126 (2018) 012128.

Zakir, M., Naf, T., & Hernawati, R. (2018). Analisis Fenomena UHI (Urban Heat Island) Berdasarkan Hubungan Antara Kerapatan Vegetasi Dengan Suhu Permukaan (Studi Kasus: Kota Bandung, Jawa Barat). ITB Indonesian Journal of Geospatial, 05(1), 25–36.




DOI: https://doi.org/10.31315/imagi.v4i1.12212

Refbacks

  • There are currently no refbacks.


Copyright (c) 2024 Ilfa Layali, Fitriana Azzahra, Agnes Risma Anggraeni, Dessy Apriyanti

Creative Commons License
This work is licensed under a Creative Commons Attribution-NonCommercial 4.0 International License.