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Jakarta Sebagai "Service City" dan Pengaruhnya Terhadap Perencanaan Tata Ruang: Pendekatan Sosial Ekonomi . Hidayat
Journal of Regional and City Planning Vol. 7 No. 21 (1996)
Publisher : The Institute for Research and Community Services, Institut Teknologi Bandung

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Abstract

The Governor of Jakarta has declared that Jakarta will be build and developed to become a "service city". This program is in accordance with the plan of the GOI to develop Indonesia to become a "New Industrializing Country" by the year 2020. There are 5 (five) pillars to support Jakarta as service city: the center of public service, the center of trade and goods distribution, the center of finance, the center of tourism, and the center of society development. One important aspect that should be taken into consideration is spatial planning. There should be a review whether the existing RUTR and RBWK are still in accordance with the program. There also should be a review for factors relating to the building permit (IMB) since the existing IMB has not supported the program of service city.
DETECTING THE AFFECTED AREAS OF MOUNT SINABUNG ERUPTION USING LANDSAT 8 IMAGERIES BASED ON REFLECTANCE CHANGE . Suwarsono; . Hidayat; Jalu Tejo Nugroho; . Wiweka; . Parwati; M. Rokhis Khomarudin
International Journal of Remote Sensing and Earth Sciences (IJReSES) Vol 12, No 1 (2015)
Publisher : National Institute of Aeronautics and Space of Indonesia (LAPAN)

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (1498.92 KB) | DOI: 10.30536/j.ijreses.2015.v12.a2672

Abstract

The position of Indonesia as part of a "ring of fire" bringing the consequence that the life of the nation and the state will also be influenced by volcanism. Therefore, it is necessary to map rapidly the affected areas of a volcano eruption. Objective of the research is to detect the affected areas of Mount Sinabung eruption recently in North Sumatera by using optical images Landsat 8 Operational Land Imager (OLI). A pair of Landsat 8 images in 2013 and 2014, period before and after eruption, was used to analysis the reflectance change from that period. Affected areas of eruption was separated based on threshold value of reflectance change. The research showed that the affected areas of Mount Sinabung eruption can be detected and separated by using Landsat 8 OLI images based on the change of reflectance value band 4, 5 and NDVI. Band 5 showed  the highest values of decreasing and band 4 showed the highest values of increasing. Compared with another uses of single band, the combination of both bands (NDVI) give the best result for detecting the affected areas of  volcanic eruption.