Analysis of Climate Change Impacts on Agricultural Water Availability in Cimanuk Watershed, Indonesia

Heryani, Nani and Kartiwa, Budi and Sosiawan, Hendri and Rejekiningrum, Popi and Adi, Setyono Hari and Apriyana, Yayan and Pramudia, Aris and Yufdy, Muhammad Prama and Tafakresnanto, Chendy and Rivaie, Achmad Arivin and Suratman, Suratman and Dariah, Ai and Malik, Afrizal and Yusuf, Yusuf and Setiani, Cahyati (2022) Analysis of Climate Change Impacts on Agricultural Water Availability in Cimanuk Watershed, Indonesia. Sustainability, 14 (23). p. 16236. ISSN 2071-1050

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Abstract

Climate change has been affecting agricultural water resources dynamics spatially and temporally. This article presents analysis results of climate change impact on agricultural water availability in Cimanuk Watershed, Indonesia. STREAM was utilized to model agricultural water availability through FAO MOSAICC web application. Climate spatial data time-series were generated using 3 Global Climate Model (GCM), i.e.,: CanESM2, CNRM-CM5, and MPI-ESM-MR following two climate change scenarios of RCP4.5 and 8.5. Model inputs were split into three periods of 1981–2010 (historical), 2010–2039 (near-future), and 2040–2069 (far-future). Historical data model validation showed the efficiency coefficient of the observed and simulated discharge data ratio was 0.68. The results showed a decreasing volumetric water availability from all generated climate data and scenarios, identified by comparing the discharge normal distribution of the historical and future data periods. Whereas, trend analysis of RCP4.5 scenario showed increasing maximum discharge of Cimanuk river using CanESM2 and MPI-ESM-MR GCM’s data, with a Mann–Kendall coefficient of 3.23 and 3.57. These results indicate a different agricultural water balance status within the watershed area, particularly a “very critical” water balance in Indramayu and Majalengka, “critical” in Garut, and “close to critical” in Sumedang Regency.

Item Type: Article
Uncontrolled Keywords: climate change; GCM; RCPs4.5; stream model; agricultural water balance
Subjects: Natural Resources & Earth Sciences
Agriculture & Food > Agricultural Equipment, Facilities, & Operations
Depositing User: Saepul Mulyana
Date Deposited: 14 Nov 2025 06:07
Last Modified: 14 Nov 2025 06:07
URI: https://karya.brin.go.id/id/eprint/54939

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