Asep Saepuloh

Name

Dr. Eng. Asep Saepuloh, S.T., M.Eng.

Position Lecturer in Remote Sensing for Volcanology and Geothermal
Academic Career Post Doctoral Fellow Geological Survey of Japan (GSJ) 2010-2013
Doctorate Degree (Dr. Eng) at Department of Life and Environmental Sciences Kumamoto University, Japan. 2010
Master degree (M. Eng) at Department of Civil and Environmental Engineering Kumamoto University, Japan. 2007
Bachelor degree at Department of Geological Engineering, Faculty of Earth Science and Mineral Technology, ITB 2004
Employment Position Employer Period
Lecturer Faculty of Earth Science and Technology 2013 – now
Microwave Remote Sensing for Geology and Volcanology Application Geological Survey of Japan (GSJ) 2010 – 2013
Website http://asepsaepuloh.com/
Research and development projects over the last 5 years 1.      Analisis Perubahan Produk Gunungapi Guntur untuk Meningkatkan Akurasi Peta Risiko Bencana Daerah Garut, Jawa Barat, 2016, Program Pengabdian kepada Masyarakat – ITB, 50 juta.

2.      Pemetaan Geologi Dijital untuk Mendelineasi Potensi Panas Bumi Secara Cepat di Pulau Jawa Menggunakan Metode Penginderaan Jauh Aktif, 2016, IPTEKS – DIKTI, 150 jt.

3.      Identifying High Permeability Zones Based On Surface Roughness Criterion to Expand An Existing Geothermal Exploitation Area Using Polarimetric Synthetic Aperture Radar (Polsar) Techniques, 2016, Osaka Gas Foundation, 50 juta.

4.      Pemodelan Spatiotemporal Permeabilitas Permukaan Berbasis Data Satelit PolSAR untuk Keberlanjutan Produksi Geotermal di Jawa Barat, 2016, Program Riset ITB, 150 juta.

5.      Remote sensing and field based observations to characterize steam-spot of geothermal system in Indonesia, 2015, Science and Technology Research Partnership for Sustainable Development – SATREPS, in kind equipments research,

6.      Analisis Penilaian Risiko Bencana Gunungapi Studi Kasus Gunung Guntur, Jawa Barat, 2016, Program Pengabdian kepada Masyarakat – ITB, 50 juta.

7.      Characterizing and time series modeling of surface manifestation at geothermal system using Synthetic Aperture Radar (SAR) data, 2015, Geothermal Capacity Building Program Indonesia – Netherlands, 80 juta.

8.      Pendeteksian Permeabilitas Permukaan Berbasis Data Satelit Polarimetric Synthetic Aperture Radar (PolSAR) untuk Perluasan Daerah Produksi Geotermal di Jawa Barat, 2015, Program Riset dan Inovasi KK ITB, 150 juta.

9.      Pendeteksian Endapan Tefra Gunungapi Kelud 2014 untuk Mitigasi Bencana Lahar Menggunakan Data SAR, 2014, Program Pengabdian kepada Masyarakat – ITB, 40 juta.

10.  Pendeteksian Manifestasi Permukaan Berbasis Data Satelit Synthetic Aperture Radar (SAR) untuk Mendelineasi Lapangan Geotermal Baru di Pulau Jawa, 2014, Program Riset ITB Batch II, 50 juta.

11.  Bombana on Remotely Sensed Data, 2013, collaborative research with Australian National University (ANU), 30 juta.

Industry collaboration over the last 5 years 1.      Penelitian Dan Penyelidikan Potensi Sumber Daya Mineral di Kabupaten Kupang, working partner PT. Digital Imaging Geospatial.

2.      Kajian Microwave Remote Sensing untuk Memetakan Geologi Kars Daerah Berau, PT. Inasa Sakha Kirana.

3.      Inventarisasi Potensi Energi Baru Dan Terbarukan Kabupaten Kutai Kartanegara,  PT. Fasade Kobetama International

4.      Kajian Potensi Geotermal dengan Metode Microwave Remote Sensing (Micro-RS) Di Gunung Endut, Jawa Barat, PT. Alditama.

5.      Pendeteksian Satuan Batuan Daerah Krayan Menggunakan Metode Microwave Remote Sensing, PT. Tambang Supra Perkasa.

6.      Pengolahan Regional Remote Sensing Data Satelit Landsat 8 Di Area Gujarat, India, PT. Sigma Cipta Utama.

7.      Kajian Microwave Remote Sensing untuk Geologi Ulumbu, LAPI-ITB.

8.      Kajian Sejarah Pembentukan Danau Toba dan Hubungannya Dengan Aktifitas Vulkanik, Kementerian Lingkungan Hidup.

9.      Kajian Potensi REE (Unsur Tanah Jarang) dalam tailing Timah dengan Metode Remote Sensing di Pulau Bangka Provinsi Kepulauan Bangka Belitung, Badan Geologi.

10.  Kajian Microwave Remote Sensing untuk Mendeteksi Potensi Sumber Daya Geologi Daerah Mahakam-Ulu, working partner Pemda Mahulu.

Patents and proprietary rights Title Year
Important publications over the last 5 years 1.      Nurtyawan R., Saepuloh A., Budiharto A., Wikantika K., 2016, Modeling Surface Roughness to Estimate Surface Moisture using Radarsat-2 Quad Polarimetric SAR Data, IOP Conference Series: Journal of Physics, Vol. 739, No. 012105, pp. 10.

2.      Muhammad R.R.D, Saepuloh A., 2016, The Effectiveness of Hydrothermal Alteration Mapping based on Hyperspectral Data under Tropical Region, IOP Conference Series: Earth and Environmental Science, Vol. 42, No. 1, pp. 012005.

3.      Pradipta R.A., Saepuloh A., Suryantini., 2016, Geology Structure Identification based on Polarimetric SAR (PolSAR) Data and Field Based Observation at Ciwidey Geothermal Field, IOP Conference Series: Earth and Environmental Science, Vol. 42, No. 1, pp. 012008.

4.      Ishaq, Heriawan M.N., Saepuloh A., 2016, Charaterizing Geothermal Surface Manifestation Based on Multivariate Geostatistics of Ground Measurements Data, IOP Conference Series: Earth and Environmental Science, Vol. 42, No. 1, pp. 012025.

5.      Wakila M.H., Saepuloh A., Heriawan M.N., 2016, Performance Analysis of Mineral Mapping Method to Delineate Mineralization Zones under Tropical Region, IOP Conference Series: Earth and Environmental Science, Vol. 42, No. 1, pp. 012007.

6.      Haeruddin, Saepuloh A., Heriawan, M.N., Kubo T., 2016, Identification of Linear Features at Geothermal Field Based on Segment Tracing Algorithm (STA) of the ALOS PALSAR data, IOP Conference Series: Earth and Environmental Science, Vol. 42, No. 1, pp. 012003.

7.      Akbari D, Saepuloh A., 2016, Identification of Surface Manifestation at Geothermal Field Using SAR Dual Orbit Data, IOP Conference Series: Earth and Environmental Science, Vol. 42, No. 1, pp. 012001.

8.      Suminar W., Saepuloh A., Meilano I., 2016, Identifying hazard parameters to develop quantitative and dynamic hazard map of active volcano in Indonesia, AIP Conf. Proc. Vol. 1730, pp. 050007-1 – 050007-8.

9.      Saepuloh A., Fitrianingtyas C., 2016, Detecting River Sediments to Asses Hazardous Materials at Volcanic Lake using Advanced Remote Sensing Techniques, AIP Conf. Proc. Vol. 1730, pp. 050009-1 – 050009-10.

10.  Saepuloh A., Wikantika K., Urai M., 2016, Observing Lava Dome Roughness on Synthetic Aperture Radar (SAR) Data Case Study at Mt. Sinabung and Merapi – Indonesia, 2015 IEEE 5th Asia-Pacific Conference on Synthetic Aperture Radar (APSAR), pp. 645 – 648.

11.  Saepuloh A., Koike K., Heriawan M.N, Kubo T., 2016, Quantifying Surface Roughness to Detect Geothermal Manifestations from Polarimetric Synthetic Aperture Radar (PolSAR) Data, Proceedings of the 41th Annual Stanford Geothermal Workshop, Standford, Canada, pp. 1744 – 1750.

12.  Saepuloh A., Koike K., Urai M., and Sri Sumantyo J.T., 2015, Identifying surface materials on an active volcano by deriving dielectric permittivity from polarimetric SAR data, IEEE Geoscience and Remote Sensing Letters (GRSL), Vol. 12, No. 8, pp. 1620-1624.

13.  Ramdhan R.M., Pratama A., Pratama W.W., Wahyu Ardi R.D., Saepuloh A., 2015, Application of Remote Sensing to Determine Volcanic Facies and Structural Features: Case Study in Mountain Malabar, West Java, Proceeding of the International Symposium on Earth Science and Technology 2015, Kyushu University, Japan.

14.  Indrastomo F.D., Sukadana I.G., Saepuloh A., Handoyo H., 2015, Integrated Radiometric Mapping using Field Based and Remote Sensing Techniques for Uranium and Thorium Exploration at Mamuju Region, West Sulawesi, Indonesia, Proceeding of the HAGI-IAGI Joint Convention 2015, Balikpapan.

15.  Saepuloh A., Suparka E., 2015, Application of Polarimetric Synthetic Aperture Radar (PolSAR) data to detect volcanic products: a new insight into ancient volcanism at Karangsambung Region, Proceeding of the HAGI-IAGI Joint Convention 2015, Balikpapan.

16.  Saepuloh A., Wikantika K., 2016, Observing Lava Dome Roughness on Synthetic Aperture Radar (SAR) Data Case Study at Mt. Sinabung and Merapi – Indonesia, Proceedings of the 5th Asia-Pacific Conference on Synthetic Aperture Radar (APSAR), Singapore.

17.  Saepuloh A., Koike K., Urai M., and Sri Sumantyo J.T., 2015. Identifying surface materials on an active volcano by deriving dielectric permittivity from polarimetric SAR data, IEEE Geoscience and Remote Sensing Letters (GRSL), Vol. 12, No. 8, pp. 1620-1624.

18.  Saepuloh A., Detecting surface structures after large eruption of Mt. Merapi in 2010 using ALOS/PALSAR data, Procedia: Earth and Planetary Science, Vol. 12, pp. 84–92.

19.  Saepuloh A., Susanto A., Sumintadireja P, Suparka E., 2015, Characterizing Surface Manifestation of Geothermal System under Torrid Zone using Synthetic Aperture Radar (SAR) Data, Proceedings of the World Geothermal Congress 2015, Melbourne, Australia.

20.  Saepuloh A., Trianaputri M.O., 2015, Observing ground surface change series at active volcanoes in Indonesia using backscattering intensity of SAR data, AIP Conf. Proc. Vol. 1658, pp. 0500111-0500117.

21.  Nurwati D.D., Saepuloh A., Sumintadireja P., 2015, Identifying Recharge and Discharge Zones at Geothermal System using Full Polarimetric Synthetic Aperture Radar (PolSAR) Data, Proceeding of the 4th ITB Geothermal Workshop 2015, Bandung.

22.  Nugraha B.A., Saepuloh A., Wikantika K., 2014, Ground Surface Changes Detection at Geothermal Surface Manifestations using Multi-Temporal Landsat Imageries, Proceedings of the Asian Conference on Remote Sensing 2014, Nay Pyi Taw, Myanmar, Paper No. PS-041.

23.  Anugrah F.A., Saepuloh A., Wikantika A., 2014, Surface Roughness Modeling using Polarimetric SAR Data to Delineate Geomorphologic of Mineralization Zones At Volcanic Terrain, Proceedings of the Asian Conference on Remote Sensing 2014, Nay Pyi Taw, Myanmar, Paper No. PS-043.

24.  Saepuloh A., Kriswati E., Agustan., 2014, Application of Full-Polarized ALOS/PALSAR and PiSAR Data for Characterizing Surface Geology at Active Volcanoes, Proceedings of the Joint Airborne SAR Campaign in Indonesia for Forest Carbon Monitoring, Ship Detection, Disaster Monitoring, Geometric Evaluation, and Crop Monitoring, Jakarta, Indonesia.

25.  Iswahyudi S.,  Saepuloh A.,  Widagdo A., 2014, Delineating Outflow Zones using Linear Features Density (LFD) Derived from Landsat Imagery at Paguyangan, Brebes, Central Java, Proceeding of the 3rd  ITB Geothermal Workshop 2014, Bandung, Indonesia.

26.  Saepuloh A., Aisyah N., Urai M., 2013, Detecting surface structures after large eruption of Mt. Merapi in 2010 using ALOS/PALSAR data, The 3rd International Symposium on Earthquake and Disaster Mitigation (ISEDM), Yogyakarta.

27.  Saepuloh A., 2013, Potential use of synthetic aperture radar (SAR) data for geothermal exploration, Proceeding of The International Conference on Geological Engineering, UGM, Yogyakarta.

28.  Saepuloh A., Urai M., Suryantini, Sumintadireja P., Meilano I, Harsolumakso A.H., Suparka E., 2013, Extracting linear features density of SAR data to detect the paths of a geothermal system, Proceeding of HAGI-IAGI Joint Convention 2013, Medan.

29.  Saepuloh A., Urai M., Aisyah N., Sunarta, Widiwijayanti C., Subandriyo, Jousset P., 2013, Interpretation of ground surface changes prior to the 2010 large eruption of Merapi volcano using ALOS/PALSAR, ASTER TIR and gas emission data, Journal of Volcanology and Geothermal Research, Vol. 261, pp. 130-143.

30.  Sumintadireja P., Saepuloh A., 2013, Significant role of remote sensing technology in geology explorations, Proceeding of the 34th Asian Conference on Remote Sensing 2013 (ACRS 2013), Denpasar.

31.  Saepuloh A., Urai M., Meilano I., Sumintadireja P., 2013, Automatic extraction and validation of linear features density from ALOS PALSAR data for active faults and volcanoes, Proceeding of the International Symposium on Remote Sensing (ISRS 2013), Chiba.

Activities in specialist bodies over the last 5 years Organization Role Period
ASEAN Engineering Journal (AEJ)

Bulletin of Geology

Jurnal Geofisika

Editor

 

Editor-in-chief

 

Editor

2015-now

 

2016-now

 

2016-now

EnglishIndonesia