1 Graduate Program in Forestry, Faculty of Forestry, Universitas Papua, Jl. Gunung Salju, Amban, Manokwari 98314, West Papua, Indonesia.
2 Undergraduate Programs in Forestry and Forest Resources Conservation, Faculty of Forestry, and Graduate Program, Universitas Papua, Manokwari 98314, West Papua, Indonesia.
3 Undergraduate Program in Environmental Science, Faculty of Forestry, and Graduate Program, Universitas Papua, Manokwari 98314, West Papua, Indonesia.
World Journal of Advanced Research and Reviews, 2026, 31(01), 1189–1202
Article DOI: 10.30574/wjarr.2026.31.1.1929
Received on 11 June 2026; revised on 18 July 2026; accepted on 20 July 2026
Aggregate watershed indicators can obscure concentrated environmental pressure in mountainous tropical landscapes. This study integrated forest cover, regulatory permanent-vegetation cover, statutory critical-land classes, and a land-unit Universal Soil Loss Equation (USLE) scenario to screen land condition and identify management priorities in the 152,782.33-ha Warjori Watershed, West Papua, Indonesia. The assessment used land cover, critical-land status, 2025 monthly rainfall, soil units, slope classes, soil depth, and supporting spatial data. Primary and secondary forest covered 84.14% of the watershed, while regulatory permanent vegetation covered 91.92%. Critical and Very Critical land accounted for 6.26%; however, Moderately Critical to Very Critical classes together accounted for 88.06%. The erosion-index dataset contained 4,270 land units covering 152,733.91 ha. The 2025 scenario yielded area-weighted modeled soil loss of 19.54 t ha⁻¹ yr⁻¹, area-weighted tolerable soil loss of 5.02 t ha⁻¹ yr⁻¹, and a weighted mean unit-level erosion index of 8.72. High and Very High erosion-index classes covered 51.35% of the modeled area. These results reveal a scale mismatch between favorable aggregate vegetation indicators and locally elevated modeled pressure. Management screening supports four complementary actions: forest protection, preventive management of Moderately Critical land, rehabilitation of degraded non-forest sites, and field verification of high-index units. Because rainfall covered one year, LS was class-based, several coefficients were transferred, P was fixed at 1.0, the tolerable-loss lookup was incomplete, and field validation was unavailable; the estimates should be interpreted as management-screening evidence rather than measured erosion or sediment delivery.
Critical Land; Erosion Index; Permanent Vegetation; Screening Assessment; Soil Loss; Watershed Prioritization
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Andi Munawir, Rudi A. Maturbongs and Bernadetta M. G. Sadsoeitoeboen. High forest cover does not preclude localized modeled erosion pressure: A screening and management-prioritization assessment of the Warjori Watershed, West Papua, Indonesia. World Journal of Advanced Research and Reviews, 2026, 31(01), 1189–1202. Article DOI: https://doi.org/10.30574/wjarr.2026.31.1.1929