Soil Structure & Compaction
Benchmark Value
Scoring Curve
The scoring engine could not generate a curve for this benchmark context. The primary form is Point, but the benchmark data may be missing required fields (e.g., optimal range bounds for an OptimalRange benchmark). This is typically a data quality issue in the benchmark pipeline.
Evidence & Context
"A similar pattern was observed in TH, where the average soil penetration resistance increased from 1.6 MPa in zone 1 to 1.8 and 2.6 MPa in zones 2 and 3, respectively."
Soil penetration resistance measured at 0-40 cm depth in undisturbed, high-elevation reference environments.
Baseline soil mechanical resistance in undisturbed subalpine grassland.
Establishes a highly comparable subalpine soil mechanical resistance baseline under zero-disturbance conditions.
Sources (1)
Saputra, D. D., and others. 2024. Stay on trails: Detrimental effects of recreational activities on soil compaction and infiltration. Journal of Degraded and Mining Lands Management.
View SourceSupporting Sources (11)
Additional references from the underlying research that informed this benchmark.
Effects of grazing on alpine grassland soil available nutrients across the Tibetan Plateau
View SourceKirkpatrick, J. B., Bridle, K., & Wild, A. S. (2014). Patterns of variation in Australian alpine soils and their relationships to parent material, vegetation formation, climate and topography. CATENA, 121, 186-194.
View SourceDepartment of Conservation and Land Management. 1996. The effects of soil compaction on the emergence, survival and growth of eucalyptus seedlings. Department of Conservation and Land Management, Western Australia.
View SourcePhosphorus: a finite resource essential for life, critical for agriculture and food security
View SourceManea, A., & Aon, M. A. (2020). Penetration resistance: An effective indicator for monitoring soil compaction in pastures. Ecological Indicators, 117, 106647.
View SourceDepartment of Primary Industries and Regional Development, Western Australia. (n.d.). Soil compaction overview.
View SourceiForest. 2015. Effects of Soil Compaction on Seedling Morphology, Growth, and Architecture of Quercus castaneifolia. iForest - Biogeosciences and Forestry.
View SourceLunt, I. D., Eldridge, D. J., Morgan, J. W., & Witt, G. B. (2007). A framework to predict the effects of livestock grazing and grazing exclusion on conservation values in natural ecosystems in Australia. Australian Journal of Botany, 55(4), 401-415.
View SourceDrewry, J. J., Cameron, K. C., & Buchan, G. D. (2008). Pasture yield and soil physical property responses to soil compaction from treading and grazing – a review. Australian Journal of Soil Research, 46(4), 237-256.
View SourceSouth Australian Department for Environment and Water. 2021. Soil health. Penetrometer. Government of South Australia.
View SourceTERN. (n.d.). Sustaining the Australian Alps. Terrestrial Ecosystem Research Network.
View Source