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1

Hermawan, Erwin, Santun R. P. Sitorus, Marimin Marimin, and Suria Darma Tarigan. "Evaluasi Status Keberlanjutan Penggunaan Lahan di Das Ciliwung Bagian Hulu." TATALOKA 22, no. 4 (November 30, 2020): 515–27. http://dx.doi.org/10.14710/tataloka.22.4.515-527.

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The Upper Ciliwung watershed is classified into 15 watersheds that must be restored. This study aims to evaluate the existing conditions of the sustainability status of land use based on environmental, economic and social aspects in the Upper Ciliwung Watershed Region. The Multidimensional Scaling technique through the development of the Rap-Watershed application was used to evaluate the Status of Sustainability of land use in the upstream Ciliwung watershed. The results of the study show that in general the identification of sustainable land use in each sub-watershed in the Upper Ciliwung watershed is categorized as moderately sustainable. The condition of the sub-watersheds in the Ciliwung Hulu watershed which is quite good in conditions that are sufficiently environmentally, economically and socially sustainable are the Upper Ciliwung watershed and the Cisarua watershed. The Cibalok sub-watershed and the Ciesek sub-watershed need to be considered specifically for the status of sustainability in the environmental and economic dimensions.
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2

Annazili, Haqqi, Mahawan Karuniasa, and Muchamad Saparis Soedarjanto. "Sustainability Index of Watershed Using Environmental Restoration Approach." E3S Web of Conferences 73 (2018): 02013. http://dx.doi.org/10.1051/e3sconf/20187302013.

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The condition of the Upper Ciliwung Watershed’s Minimum Erosion Hazard value is still far from expected, since the value is still greater than one. The sustainability of watershed functions is influenced by the value of Minimum Erosion Hazard Rate, Farmer's Revenue, and Food Crop Production Results. The purpose of this research is to build calculation method of Sustainability Index of Watershed Function (IKFD) of Upper Ciliwung and to know the condition of Upper Ciliwung Watershed sustainability. The method of this research is mix method that combine quantitative and qualitative data. Data analysis was done by using Analytical Hierarchy Process (AHP). Based on the method used in this study, the authors build the calculation formula IKFD as follows: IKFD = (ITBEM × 72.8%) + (IPPet × 15.3%) + (IPTPa × 11.9%). The final calculation of IKFD Upper Ciliwung is done through the sum of the multiplication of the AHP value of each indicator with the real condition value of each indicator. After the Upper Ciliwung Watershed Index is obtained, then it is categorized into category classes based on the distribution of figures in the index calculation. The Sustainability Index Value of Upper Ciliwung Watershed Function at present is 30.7% and goes into very less level.
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3

Anggraheni, Evi, Dwita Sutjiningsih, and Jarot Widyoko. "Rainfall-runoff modelling calibration on the watershed with minimum stream gage network data." International Journal of Engineering & Technology 7, no. 3.29 (August 24, 2018): 121. http://dx.doi.org/10.14419/ijet.v7i3.29.18538.

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The hydrological model has an important role to present the accurate and reliable information for water resources management. In this research, combination of HEC-GeoHMS and HEC-HMS that adopt the SCS-CN model have been chosen to analyse the hydrological characteristic at Upper Ciliwung Watershed. Ciliwung Watershed is one of 13 watersheds that has big influence to flood management in Jakarta. Flooding is the natural hazard that occurs every year at Jakarta. One of important part of flood early warning system at Jakarta is Katulampa Weir that located at Upper Ciliwung watershed. The area of it watershed is about 150 km2 that only has one stream gauge station at Katulampa. Accurate representation of rainfall runoff modelling at this location is important in order to predict the discharge and water infrastructure design. The objective of this paper is to obtain the parameter combination of Upper Ciliwung Watershed which can produce the discharge close to the discharge observation using HEC-HMS. The comparison between HEC-HMS and observation gage at Upper Ciliwung Watershed was calculated by Nash-Sutcliffe Efficiency (NSE) method. Nash value of discharge simulation at Upper Ciliwung Watershed compare with the discharge observation at Katumpa Weir reach up until 0,9.
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4

Sa'ad, Nono Sutrisno. "Erosion Prediction Study of Tugu Utara (Ciliwung Hulu) Sub Watershed." Jurnal Ilmu Tanah dan Lingkungan 6, no. 1 (April 1, 2004): 31–38. http://dx.doi.org/10.29244/jitl.6.1.31-38.

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The research of erosion prediction method at watershed scale was carried out at Tugu Utara (Upper Ciliwung) subwatershed in Puncak, West Java, Indonesia from August 2000 to February 2001. The objectives of this study were: ( I ) topredict erosion at watershed scale through approximation of sediment yield measurement at outlet of sub watershed, and (2)multple regression equation and Sediment Delivery Ratio (SDR) prediction. The experiment at Tugu Utara (upper Ciliwung)sub watershed measured the discharge, surface erosion by soilpan method, sediment yield by sampling at the outlet and SDR.The result showed that the multiple regression equation and SDR Stiff Diagram can be used to predict the erosion at TuguUtara (upper Ciliwung) sub watershed.
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5

Suswanti, Indri, RTM Sutamihardja, and Dian Arrisujaya. "POTENSI SENYAWAAN NITROGEN DAN FOSFAT PADA PENCEMARAN SUNGAI CILIWUNG HULU KOTA BOGOR." Jurnal Sains Natural 9, no. 1 (March 28, 2019): 11. http://dx.doi.org/10.31938/jsn.v9i1.186.

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Potential Of Phosphate and Nitrogen Compounds in Pollution of The Upper Ciliwung River in Bogor River is a habitat for various types of aquatic organisms that can provide an overview of the state of the river, such as the quality and quantity of ecological relationships that occur within it. Ciliwung is one of the rivers that flow to Jakarta via Puncak, Bogor Regency, Bogor City, Depok City and empties into the Bay of Jakarta. In 2015, the quality status of the upstream Ciliwung river had moderate polluted status. One parameter for reviewing water quality is nutrient content (phosphate and nitrogen). The presence of high nutrients can stimulate the growth of algae in waters that can harm the aquatic ecosystem. This study shows that there is a relations and positive relations with a correlation coefficient of 0.508 on the nitrogen and phosphate compounds in the upstream Ciliwung river water pollution. The concentration of nitrogen compounds is higher than that of phosphate.Keywords: Ciliwung, Nitrogen, Phosphates, River, Relations. ABSTRAK Sungai merupakan suatu habitat bagi berbagai jenis organisme akuatik yang dapat memberikan gambaran mengenai keadaan sungai, seperti kualitas dan kuantitas dari hubungan ekologis yang terjadi didalamnya. Sungai Ciliwung merupakan salah satu sungai yang mengalir kearah Jakarta melalui Puncak, Kabupaten Bogor, Kota Bogor, Kota Depok dan bermuara ke Teluk Jakarta. Pada tahun 2015, status mutu sungai Ciliwung bagian hulu memiliki status tercemar sedang. Salah satu parameter peninjauan kualitas air adalah kandungan zat hara (fosfat dan nitrogen). Keberadaan zat hara yang tinggi dapat menstimulasi ledakkan pertumbuhan algae di perairan yang dapat merugikan ekosistem perairan. Penelitian ini menunjukkan bahwa adanya hubungan yang sedang dan positif dengan koefisien korelasi sebesar 0,508 terhadap senyawaan nitrogen dan fosfat pada pencemaran air sungai Ciliwung bagian hulu. Konsentrasi senyawaan nitrogen lebih tinggi dibandingkan dengan fosfat.Kata kunci: Ciliwung, Nitrogen, Fosfat, Hubungan, Sungai.
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6

Yustika, Rahmah Dewi. "PENGGUNAAN MODEL HIDROLOGI DI SUB DAS CILIWUNG HULU." Informatika Pertanian 23, no. 2 (October 26, 2016): 197. http://dx.doi.org/10.21082/ip.v23n2.2014.p197-204.

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A watershed has complex hydrological components and may be difficult to understand comprehensively. Modelling can be used to simplify and predict the processes which will happen. SWAT (Soil and Water Assessment Tool) is a model which can predict hydrology and simulate various processes in watershed.The objective of this research was: to analyse performance of SWAT model which predict discharge flow in upper Ciliwung watershed through calibration. Methods applied included analysis of the input data and calibration. The research was conducted in the period of June 2011 until June 2012. Based on the data of daily discharge flow in February and March 2008 and 2009, the calibration results showed values of R 0,80 and NSE 0,55. These results described that SWAT model can be used to predict hydrological processes in upper Ciliwung watershed.Prediction of hydrology could be used as the base to manage land agriculture towards sustainable agriculture.
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7

Pramono, Irfan Budi. "Distribution of Water Infiltration Rate in Ciliwung Watershed." Forum Geografi 30, no. 1 (August 3, 2016): 24. http://dx.doi.org/10.23917/forgeo.v30i1.1765.

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Floods in Jakarta showed that the Ciliwung watershed and surrounding areas in critical condition. More than 50 % of land cover Ciliwung watershed is residential. Planting trees in residential areas have been insufficient to infiltrate as much water into the ground. Infiltration well is one possibility for absorbing water in residential areas. The purpose of this study was to determine the variation in the level of water absorption Ciliwung watershed and surrounding areas. The method used is overlaying analysis of the factors that determine the rate of water infiltration with geographic information system. Each of these factors gave weights and scores to obtained variations Ciliwung water infiltration rate. The results showed that the regions with the highest levels found in the upper catchment area and the city of Bogor, middle absorbtion water area was in Bogor Regency, low water absorption areas in Depok , South Jakarta , and East Jakarta . While in North Jakarta, Central Jakarta and West Jakarta the water absortion is very low level due to the shallow ground water level and very low soil permeability. Map variations in water absorption can be used as a material consideration for determining the locations of recharge wells effectively.
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8

Dasanto, B. D., and Risyanto. "EVALUASI DAMPAK PERUBAHAN PENGGUNAAN LAHAN TERHADAP VOLUME LIMPASAN STUDI KASUS: DAS CILIWUNG HULU, JAWA BARAT (EVALUATION OF LANDUSE CHANGE IMPACT ON RUN-OFF VOLUME CASE STUDY : CILIWUNG HULU WATERSHED, WEST JAVA)." Agromet 20, no. 2 (December 6, 2006): 1. http://dx.doi.org/10.29244/j.agromet.20.2.1-13.

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<p>The upper Ciliwung watershed is one of the critical catchments areas in Java Island. A major element of this area is the modification of natural land-cover due to human activities. Land use change is driven by the interaction between physical and socio-economic factors. The objective of this paper is to develop a land use change model and to evaluate runoff volume based on land use prediction. The pseudo-R2 or 2 in this model is 51.7% and the calibration between predicted land use and the real is 65.5%. The analysis result of land use change for period 2005-2010 and 2015-2020 show a special change pattern. In the first period, the forest land will decrease by 85%, while resettlements land increase by 144%, so the Curve Number value will increase from 80 to 81. These indicate decreasing capability of the upper Ciliwung to retain rainfall. The impact of this condition will increase runoff volume from 660.000 m3 to be 905.000 m3. In the second period, the forest and resettlements land will increase by 612% and 28%, so the Curve Number will decrease from 80 to be 78. This will decrease runoff volume from 805.000 m3 to be 803.000 m3.</p>
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9

Farika, Niswatin, Dwita Sutjiningsih, and Evi Anggraheni. "Influence of impervious cover determination method of upper Ciliwung watershed on flood warning system level change in Katulampa weir." MATEC Web of Conferences 192 (2018): 02053. http://dx.doi.org/10.1051/matecconf/201819202053.

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The Katulampa Weir is a part of Jakarta Flood Early Warning System for the Ciliwung River. The measured water level fluctuation in the Katulampa Weir is affected by the physical condition of the Upper Ciliwung Watershed. In this study, the definition and relevance of the impervious cover determination method based on the Total Impervious Area (TIA) and Effective Impervious Area (EIA) in generating design flood discharge and its effect on the change of flood early warning level in Katulampa Weir will be evaluated. Identification of land use distribution is based on digitized process used combined GIS maps using visual interpretation of high resolution satellite images 2017. The flood analysis for both methods is applied to the same rain conditions. Evaluation of flood early warning level changes are based on flood discharge simulated results and rating curve discharge in the Katulampa Weir. The simulation by WinTR-20 gives that maximum discharge using TIA method is 150 m3/s and EIA method 139.5 m3/s. There is no significant difference between and both are classified as the same level of flood early warning system level, which is on stage 3. However, for large watersheds, it takes much effort to identify and digitize an effective impervious area.
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10

Lestari, Isnayulia, and Bambang Dwi Dasanto. "Determination of Extreme Hydrological Index using HBV Model Simulation Results (Case Study : Upper Ciliwung Watershed)." Agromet 33, no. 1 (June 11, 2019): 20–29. http://dx.doi.org/10.29244/j.agromet.33.1.20-29.

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The study of climate change on hydrological response is a crucial as climate change impact will drive the change in hydrological regimes of river. Upper Ciliwung watershed is one of the critical rivers in Java Island, which has been affected by climate change. This study aims to: (i) simulate the discharge flow using the Hydrologiska Byrans Vattenbalansavdelning (HBV) model; (ii) simulate future flow using three general circulation models (GCM) namely Commonwealth Scientific and Industrial Research Organisation (CSIRO) Mk.3.6.0, Model for Interdisciplinary Research on Climate version 5 (MIROC5), and Geophysical Fluid Dynamics Laboratory-Coupled Model generation 3 (GFDL-CM3); (iii) determine the changes of extreme hydrological index during historical period (2001-2015) and projected period (2031-2045). The historical year simulation and projections are used to determine eight hydrologic extreme indices for high flow and low flow. We calibrated the HBV model for two years (2001-2002) and validated it for two years (2003-2004). Our model performed well in discharge simulation as shown by the NSE values (0.66 for calibration and validation). Then we calculated the indices for each period used (historical and projected). To show the changes in hydrological regimes, we compare the indices between two periods. Changes in the index of the two periods tend to decrease in value on the index parameters that characterize the minimum extreme events. Hence, that it is possible in the projected period there will be extreme hydrological events in the form of drought.
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11

Nuryasan, Rizki Mirzam, and Budi Hartanto Susilo. "STUDI LOKASI RAWAN KECELAKAAN DI KOTA BANDUNG." Jurnal Teknik Sipil 15, no. 2 (November 18, 2019): 136–48. http://dx.doi.org/10.28932/jts.v15i2.1946.

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Kecelakaan lalu lintas menjadi permasalahan utama dalam penyelanggaraan tranportasi jalan di Indonesia. Untuk meningkatkan keselamatan transportasi jalan ada beberapa cara salah satunya yaitu melakukan penentuan dan penanganan lokasi rawan kecelakaan (LRK). Tujuan dari penelitian ini adalah menentukan, menganalisis dan menyusun penanganan LRK dengan metode Angka Ekuivalen Kecelakaan (AEK) dan Upper Control Limit (UCL). Studi ini menggunakan data sekunder dari Polrestabes Bandung (periode tahun 2018). Dalam analisis frekuensi kecelakaan, terdapat 92 LRK, kemudian analisis dengan metode AEK dan UCL menghasilkan 15 LRK prioritas. Dari identifikasi LRK prioritas digunakan 3 (tiga) LRK prioritas untuk menjadi acuan dalam melakukan survei lapangan, pembuatan denah LRK dan usulan tindakan penanganan LRK yaitu Jalan Sor GBLA, Jalan Soekarno-Hatta, dan Simpang Supratman-Ciliwung.
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12

Karuniasa, Mahawan, Haqqi Daulay, and Muchamad Soedarjanto. "Determination of The Best Watershed Managament Practice In The Upper Ciliwung Watershed Based on Watershed Sustainablility Model." Jurnal Penelitian Pengelolaan Daerah Aliran Sungai 3, no. 1 (April 1, 2019): 79–88. http://dx.doi.org/10.20886/jppdas.2019.3.1.79-88.

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13

Komariah, Imas, and Toru Matsumoto. "Application of Hydrological Method for Sustainable Water Management in the Upper-Middle Ciliwung (UMC) River Basin, Indonesia." Journal of Water and Environment Technology 17, no. 4 (2019): 203–17. http://dx.doi.org/10.2965/jwet.18-003.

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14

Rafiei Emam, Ammar, Binaya Mishra, Pankaj Kumar, Yoshifumi Masago, and Kensuke Fukushi. "Impact Assessment of Climate and Land-Use Changes on Flooding Behavior in the Upper Ciliwung River, Jakarta, Indonesia." Water 8, no. 12 (November 29, 2016): 559. http://dx.doi.org/10.3390/w8120559.

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15

Anggraheni, Evi, Dwita Sutjiningsih, Jarot Widyoko, and Bambang Hidayah. "Potential impact of sub-urban development on the surface runoff estimations (a case study at Upper Ciliwung watershed)." IOP Conference Series: Earth and Environmental Science 301 (September 6, 2019): 012002. http://dx.doi.org/10.1088/1755-1315/301/1/012002.

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16

Sartika, Firda Aulia, Dwita Sutjiningsih, and Evi Anggraheni. "Analysis of classification hydrologic soil group distribution based on infiltration rate of horton method in the upper Ciliwung watershed." IOP Conference Series: Earth and Environmental Science 426 (March 13, 2020): 012030. http://dx.doi.org/10.1088/1755-1315/426/1/012030.

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17

Robo, S., H. Pawitan, S. D. Tarigan, and B. D. Dasanto. "Projection of changes in land-use and impacts on the peak flow and discharge volume of the Upper Ciliwung watershed." IOP Conference Series: Earth and Environmental Science 325 (September 19, 2019): 012009. http://dx.doi.org/10.1088/1755-1315/325/1/012009.

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18

Prawira, D., H. Soeryantono, E. Anggraheni, and D. Sutjiningsih. "Efficiency analysis of Muskingum-Cunge method and kinematic wave method on the stream routing (Study case: upper Ciliwung watershed, Indonesia)." IOP Conference Series: Materials Science and Engineering 669 (November 21, 2019): 012036. http://dx.doi.org/10.1088/1757-899x/669/1/012036.

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19

Arifien, Y., S. Anggarawati, and D. B. Wibaningwati. "The influence of farmer behavior and motivation in land conservation on farmers’ income in the upper Ciliwung Watershed, Bogor Regency." IOP Conference Series: Earth and Environmental Science 686, no. 1 (March 1, 2021): 012015. http://dx.doi.org/10.1088/1755-1315/686/1/012015.

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20

Heryani, Nani, Hidayat Pawitan, Mohamad Yanuar Jarwadi Purwanto, and Kasdi Subagyono. "Relationship between Concentration and Discharge on Storm Events: Case Study at Cakardipa Catchment, Cisukabirus Subwatershed, Upper Ciliwung Watershed, Bogor, West Java." Jurnal TANAH TROPIKA (Journal of Tropical Soils) 17, no. 1 (January 1, 2012): 85–95. http://dx.doi.org/10.5400/jts.2012.17.1.85.

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21

Heryani, Nani, Hidayat Pawitan, Mohamad Yanuar Jarwadi Purwanto, and Kasdi Subagyono. "Relationship between Concentration and Discharge on Storm Events: Case Study at Cakardipa Catchment, Cisukabirus Subwatershed, Upper Ciliwung Watershed, Bogor, West Java." JOURNAL OF TROPICAL SOILS 17, no. 1 (May 29, 2020): 85. http://dx.doi.org/10.5400/jts.2012.v17i1.85-95.

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River nutrient loadings rates are frequently determined from discharge and hydrochemistry relationships using regression techniques. Unfortunately such methods as a conventional technique are inadequate for dealing with the problem such as differences in shape and direction of loop forming in individual and seasonal storms. Besides the relationships are nonlinear and time-dependent, they also varies from site to site. There is a currently method to study hysteresis between discharge and concentration of hydrochemistry. The relationship between discharge and solute concentration was investigated at Cakardipa catchment, Upper Ciliwung watershed, between the years of 2009-2010. The characteristics of the hysteresis loops were used to evaluate the temporal variation of the relative contribution to stream flow of source waters at Cakardipa Catchment including groundwater (CG), soil water (CSO), and rain water (CR). Chemical water analysis was carried out on 497 water samples on storm event. The chemical analysis of storm event of Februari 14, 2010 was carried out for the concentrations of K+, Ca2+, Mg2+, Na+, SiO2, SO42-NO3-, Cl-, and HCO3-. Results of the experiment showed that concentrations displayed circular hysteresis loops during the events, highlighting the complex relation among solutes and discharge during storm hydrographs. The solutes of K, Na, and Ca produced concave curvature, anti-clockwise hysteresis loops, and positive trend, so that classified as A2 loops with components ranking were CR> CG> CSO. .The solutes of Mg, SO4, NO3 assumed to come from groundwater produced convex curvature, clockwise hysteresis loops, and positive trend, indicating a concentration component ranking of CG > CR > CSO (C2 model). While Si and Cl produced clockwise hysteresis loops, indicating a concentration component ranking of CG> CSO> CR which was C1 model.
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22

WAHYUNI, SRY, and SYARTINILIA WIJAYA. "Studi Nilai dan Distribusi Biodiversitas di Daerah Aliran Sungai (DAS) Ciliwung Hulu." Jurnal Arsitektur Lansekap, October 31, 2015, 91. http://dx.doi.org/10.24843/jal.2015.v01.i02.p05.

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ABSTRACT Study of Biodiversity Value and Distribution in The Upper Stream of Ciliwung Watershed Watershed is one of the ecological boundary that has important role related to landscape sustainability. Ciliwung Watershed is categorized as super-priority watershed in Indonesia and provides landscape services particularly mentioned in this study is biodiversity value.The study sites were located in three sub-districts in the upper stream of Ciliwung Watershed (Ciawi, Megamendung, Cisarua), Bogor District of West Java. The main objectives of this study were to analyze value and distribution of biodiversity using six indicators of landscape sustainability. The six indicators (presence of threatened species, land use and land cover change, land use intensity of organic agricultural, population, occupation, and infrastructure) were analyzed using geographical information system (GIS). Based on the result, it can be shown that Cisarua and Megamendung sub-district are the first and second largest area with high biodiversity value (4.022 Ha and 2.099 Ha). Meanwhile, Ciawi sub-district has no area with high biodiversity value. Finally, we propose six recomendations of landscape management for biodiversity sustainability in the upper stream of Ciliwung Watershed. Keywords:biodiversity value, Ciliwung Watershed, landscape service, GIS, landscape management
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23

Jesica, Jennie, Regan Kaswanto, and Hadi Susilo Arifin. "Management of “Pekarangan” in Informal Settlement of Ciliwung River Riparian Landscape." KnE Social Sciences, August 5, 2019. http://dx.doi.org/10.18502/kss.v3i21.4984.

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Riparian is undefined government land and can be converted to other utilization. Riparian areas have natural connections throughout the watershed; they are particularly sensitive and often degraded by human use. One of them is the informal settlement, such as the residential areas in the Ciliwung River riparian which changed the land function from a conservation area. This research conducted in three sites of the Ciliwung River riparian section that is represented by the upper part (Kelurahan Katulampa); middle part (Kelurahan Babakan Pasar); and the lower part (Kelurahan Kedunghalang). The purposes of this research are: 1) to analyze the riparian settlement yard in upper part, middle part, and lower part, 2) to figure out people’s motivation for the management of land yard, and 3) to calculate the potential of land as water catchment areas and to support household-scale agricultural production. The remaining of land in the informal settlement is upgraded to fulfill the riparian function and to improve local people’s welfare. Data were obtained by doing a literature review on previous research with a systematic literature review method; by analyzing the agroforestry land use; and by analyzing plant production. Plants production for agriculture concept in pekarangan in Ciliwung River riparian, Bogor Municipality have high potency. The result of the study of all sites is combined into an integrated agriculture concept as an alternative to efficient land use. These concepts offer some benefits from the ecological, social and ecological aspect. It can be used to convince the community for improving their welfare, as well as raising public awareness about the primary function of the riparian landscape.
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24

Komariah, Imas, and Toru Matsumoto. "System dynamics for water resource sustainability issues: assessing the impact of river restoration plans in the Upper-Middle Ciliwung river basin, Indonesia." International Journal of River Basin Management, August 27, 2020, 1–10. http://dx.doi.org/10.1080/15715124.2020.1803336.

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