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Aditya H, Lestari S, Lestiana H. 2012. Studi Pulau Panas Perkotaan Dan Kaitannya Dengan Perubahan Parameter Iklim Suhu Dan Curah Hujan Menggunakan Citra Satelit Landsat Tm Studi Kasus Dki Jakarta Dan Sekitarnya. Jurnal Sains & Teknologi Modifikasi Cuaca, Vol. 13, No. 1, 2012: 19-24.

Badan Meteorologi, Klimatologi, dan, Geofisika [BMKG]. 2006. Peraturan Kepala Badan Meteorologi Klimatologi dan Geofisika Nomor : SK.31/TL.202/KB/BMG-2006. Tentang Tata Cara Tetap Pelaksanaan Pengamatan dan Pelaporan Data Radar Cuaca.

Badan Meteorologi, Klimatologi, dan, Geofisika [BMKG]. 2014. Peraturan Kepala Badan Meteorologi Klimatologi dan Geofisika Nomor 10 Tahun 2014. Tentang Uraian Tugas Stasiun Klimatologi.

Badan Meteorologi, Klimatologi, dan, Geofisika [BMKG]. 2016. Peraturan Kepala Badan Meteorologi Klimatologi dan Geofisika Nomor 4 Tahun 2016. Tentang Pengamatan dan Pengelolaan Data Iklim Di Lingkungan Badan Meteorologi, Klimatologi, dan Geofisika.

Bessho K, Date K, Hayashi M, Ikeda A, Imai T, Inoue H, Kumagai Y, Miyakawa T, Murata H, Ohno T, Okuyama A, Oyama R, Sasaki Y, Shimazu Y, Shimoji K, Sumida Y, Suzuki M, Taniguchi H, Tsuchiyama H, Uesawa D, Yokota H, Yoshida R. 2016. An introduction to Himawari-8/9 - Japan's new-generation geostationary meteorological satellites. Journal of the Meteorological Society

of Japan. Vol. 94, No. 2: 151−183. DOI:10.2151/jmsj.2016-009

Bryan DS, Sukotjo BM, Wahyu UD. 2013. Analisa Relasi Perubahan Tutupan Lahan Dan Suhu Permukaan Tanah Di Kota Surabaya Menggunakan Citra Satelit Multispektral Tahun 1994 – 2012. Jurnal Teknik Pomits Vol. 2, No. 1. 2301-9271. (2013). ISSN: 2337-3539.

Fan J, McConkey B, Wang H, Henry J. 2016. Root Distribution by depth for temperate agricultural crops. Field Crops Research 189 (2016) 68-74. DOI: 10.1016/j.fcr.2016.02.013

Faridah SAN, Krisbiantoro A. 2014. Analisis Distribusi Temperatur Permukaan Tanah Wilayah Potensi Panas Bumi Menggunakan Teknik Pengindraan Jauh Di Gunung Lamongan, Tiris, Probolinggo, Jawa Timur. Berkala Fisika. Vol. 17, No. 2, hal 67 – 72. ISSN : 1410 – 9662.

Flores FP, Lillo MS. 2010. Simple Air Temperature Estimation Method From Modis Satellite Images On A Regional Scale. Chilean Journal of Agricultural Research. 70(3):436-445. ISSN : 07185820.

Forsythe N, Hardy AJ, Fowler JH, Blenkinsop S, Kilsby CG, Archer DR, Hashmi MZ. 2015. Detailed Cloud Fraction Climatology of the Upper Indus Basin and Its Implications for Near-Surface Air Temperature. American Journal Meteorological Society. DOI: 10.1175/JCLI-D14-00505.1

Geiger R. 1959. The Climate Near The Ground. Blue Hill Meteorological Observatory Harvard University. Harvard University Press. Cambridge.

Hartuti M, Sulma S, Marini Y, Manoppo AKS, Kurniawan J. 2008. Pra-Pengolahan dan Pengolahan Suhu Permukaan Laut dari Data NOAA-AVHRR. Pelatihan Penentuan Zona Potensi Penangkapan Ikan. Jakarta.

47

Iriawan N, Astuti SP. 2006. Mengolah Data Statistik dengan Mudah Menggunakan Minitab 14. Andi Offset. Yogyakarta. Indonesia.

Jackson IJ. 1977. Climate, Water, and Agriculture in the Tropics. Longman Group Limited. New York. United States of America.

Jungqvist G, Oni SK, Teutschbein C, Futter MN. 2014. Effect of Climate Change on Soil Temperature in Swedish Boreal Forests. Plos One. 9(4): e93957. DOI: 10.1371/journal.pone.0093957

Kätterer T, Andrén O. 2009. Predicting daily soil temperature profiles in arable soils in cold temperate regions from air temperature and leaf area index. Soil and Plant Science, 2009; 59: 77-86. DOI: 10.1080/09064710801920321.

Liang LL, Riveros-Iregui DA, Emanuel RE, McGlynn BL. 2014. A simple framework to estimate distributed soil temperature from discrete air temperature measurements in data-scarce regions. American Geophysical Union. DOI: 10.1002/2013JD020597

Liang X, Ignatov A, Kramar M, Yu F. 2016. Preliminary Inter-Comparison between AHI, VIIRS and MODIS Clear-Sky Ocean Radiances for Accurate SST Retrievals. Remote Sensing. 8, 203; DOI: 10.3390/rs8030203.

Liu T, Xu ZZ, Hou YH. 2016. Effects of warming and changing precipitation rates on soil respiration over two years in a desert steppe of northern China. Plant Soil (2016) 400:15–27. DOI: 10.1007/s11104-015-2705-0

Martono. 2014. Pola dan Tren Suhu Udara Pameungpeuk. Prosiding Pertemuan Ilmiah XXVIII HFI Jateng & DIY, Yogyakarta, 26 April 2014. ISSN : 0853-0823.

Menzel WP, Tobin DC, Revercomb HE. 2016. Infrared Remote Sensing with Meteorological Satellites. Advances in Atomic, Molecular, and Optical Physics, Volume 65. ISSN 1049-250X. DOI: 10.1016/bs.aamop.2016.04.001

Orhan O, Ekercin S, Celik FD. 2014. Use of Landsat Land Surface Temperature and Vegetation Indices for Monitoring Drought in the Salt Lake Basin

Area, Turkey. The Scientific World Journal. Volume 2014, Article ID

142939. DOI: 10.1155/2014/142939

Özkan U, Gökbulak F. 2017. Effect of vegetation change fromforest to herbaceous vegetation cover on soil moisture and temperature regimes and soil water chemistry. Catena 149 (2017) 158–166. DOI: 10.1016/j.catena.2016.09.017

Patkó I, Szeder A, Patkó C. 2013. Evaluation the Impact Tilt Angle On The Sun Collectors. Energy Procedia 32 (2013) 222 – 231. DOI: 10.1016/j.egypro.2013.05.029

Pelta R, Chudnovsky AA. 2016. Spatiotemporal estimation of air temperature patterns at the street levelusing high resolution satellite imagery. Science of the Total Environment. DOI : 10.1016/j.scitotenv.2016.11.042

48

Pioh DD, Rayes L, Polii B, Hakim L. 2013. Analisis Suhu Tanah Di Kawasan Wisata Alam Danau Linow Kota Tomohon Sulawesi-Utara. Journal of Indonesian Tourism and Development Studies Vol. 1 No.2. E-ISSN : 2338-1647.

Rahaman KR, Hassan QK. 2017. Quantification of Local Warming Trend: A Remote Sensing-Based Approach. Plos One. 12(1) DOI: 10.1371/journal.pone.0169423

Sadeghi M, Babaeian E, Tuller M, Jones SB. 2017. The optical trapezoid model: A novelapproach to remote sensing of soilmoisture applied to Sentinel-2 and Landsat-8 observations. Remote Sensing of Environment 198 (2017) 52–68. DOI : 10.1016/j.rse.2017.05.041

Song Y, Zhou D, Zhang H, Li G, Jin Y, Li Q. 2013. Effects of vegetation height and density on soil temperature variations. Chinese Science Bulletin. DOI: 10.1007/s11434-012-5596-y

Wang X, Zhang W, Miao Y, Gao L. 2016. Root-Zone Warming Differently Benefits Matureand Newly Unfolded Leaves ofCucumis sativus L. Seedlings under Sub Optimal Temperature Stress. Plos One. DOI:10.1371/journal.pone.0155298

Weidong X, Martin JW, Takayuki K, Jiangping H, Tianran Z, Daniel F. 2017. Major Advances in Geostationary Fire Radiative Power (FRP) Retrieval Over Asia and Australia Stremming From Use of Himawari-8 AHI. Remote Sensing of Environment 193 (2017) 138–149. DOI: 10.1016/j.rse.2017.02.024

Wicaksono A, Muhsoni FF, Fahrudin A. 2010. Aplikasi Data Citra Satelit Noaa-17 Untuk Mengukur Variasi Suhu Permukaan Laut Jawa. Jurnal kelautan, volume 3, No.1. ISSN : 1907-9931

Wiweka. 2014. Pola Suhu Permukaan Dan Udara Menggunakan Citra Satelit Landsat Multitemporal. Ecolab Vol. 8 No. 1

Yener D, Ozgener O, Ozgener L. 2017. Prediction of soil temperatures for shallow geothermal applications in Turkey. Renewable and Sustainable Energy Reviews. 70 (2017) 71–77. DOI : 10.1016/j.rser.2016.11.065 Yu F, Wu X. 2016. Radiometric Inter-Calibration between Himawari-8 AHI and

S-NPP VIIRS for the Solar Reflective Bands. Remote sensing. 8, 165;

DOI:10.3390/rs8030165

Yuda IWA. 2015. Analisis Indikasi Perubahan Iklim Dan Proyeksi Iklim Hingga Tahun 2050 Dengan Skenario Rcp4.5 Dan Rcp8.5 Di Stasiun Meteorologi Ngurah Rai. Prosiding SNSA 2015 – Halaman 106. ISBN : 978-979-1458-96-2

Zou X, Zhuge X, Weng F. 2016. Characterization of Bias of Advanced Himawari Imager Infrared Observations from NWP Background Simulations Using CRTM and RTTOV. Journal Of Atmospheric And Oceanic Technology. 33 (2016) 2553-2567. DOI: 10.1175/JTECH-D-16-0105.1

Lampiran 1

Citra Satelit Himawari 8 Selama Satu Hari (30 Juli 2015)

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Lampiran 1 (Lanjutan) 08.00 WIB 09.00 WIB 10.00 WIB 11.00 WIB 12.00 WIB 13.00 WIB 14.00 WIB 15.00 WIB

Lampiran 1 (Lanjutan)

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Lampiran 2

Tabel Ketersediaan Data Citra Satelit Himawari

Bulan Ada Interpolasi Kosong Total

2015 Januari 638 17 89 744 Februari 579 41 52 672 Maret 637 42 65 744 April 427 38 225 720 Mei 214 20 510 744 Juni 616 20 84 720 Juli 650 43 51 744 Agustus 727 17 0 744 September 700 20 0 720 Oktober 702 32 10 744 November 686 26 8 720 Desember 737 7 0 744 2016 Januari 740 4 0 744 Februari 676 20 0 672 Maret 675 42 27 744 April 687 27 6 720 Mei 731 13 0 744 Juni 698 22 0 720 Juli 668 48 28 744 Agustus 666 67 11 744 September 572 88 60 720 Total 13.426 654 1.256 15.336 87,55 % 4,26 % 8,19 % 100 %

Lampiran 3

Tabel Curah Hujan Bulanan pada Stasiun Klimatologi Kelas I Semarang Bulan Curah Hujan (mm) CH Per-periode (mm)

2015 Januari 238,2 511,3 Februari 273,1 Maret 212 655 April 257,6 Mei 185,4 Juni 58,7 66,3 Juli 2 Agustus 5,6 September 1 281 Oktober 0 November 280 Desember 209 577 2016 Januari 160 Februari 208 Maret 133 580 April 259 Mei 188 Juni 120 443,7 Juli 188 Agustus 135,7 September 439

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