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  • A regional-scale study of multi-decennial erosion of vineyard fields using vine-stock unearthing-burying measurements
  • Biological indicator ; Erosion rate ; France ; Languedoc-Roussillon ; Methodology ; Soil erosion ; Spatial variation ; Vine ; Vinegrowing area
  • Erosion and deposition rates were quantified in a vineyard context (Languedoc, France) using a method based on vine-stock bio-markers. The within-field spatial structure of erosion (Field Erosive State) was described based on maps of “unearthing
  • ” height of vine-stock. When this method was applied to a sample of 49 fields, the intensity of erosion in the study area showed a high variability between fields. The Field Erosive States (FES) were classified into 5 categories based on the intensity
  • 2010
  • Aquitaine ; Bordeaux ; France ; Man-environment relations ; Pedogenesis ; Terroir ; Vine ; Vinegrowing area
  • 2010
  • Agribusiness ; Consumption of space ; Economic value ; Land market ; New Zealand ; Place ; Production of space ; Regional analysis ; Vine
  • 2010
  • Agriculture ; Human impact ; Mountain farming ; Rural landscape ; Slovenia ; Terrace cultivation ; Tradition ; Vine
  • 2010
  • Agribusiness ; Agricultural product ; Castilla-León ; Food ; Innovation ; Market ; Quality of product ; Spain ; Vine ; Wine
  • 2010
  • Bioclimatology ; Climatic change ; Climatic warming ; France ; Pays de la Loire ; Regional analysis ; Spatial variation ; Temperature ; The 2000's ; Twentieth Century ; Vine ; Viticulture
  • 2010
  • Bibliography ; France ; Globalization ; History of geography ; Terroir ; Twentieth Century ; Vine ; Viticulture
  • 2010
  • Applied climatology ; Champagne-Ardenne ; Climate ; Climatic change ; Climatic hazard ; Climatic variability ; France ; Freezing ; Global change ; Model ; Temperature ; Twenty-first century ; Vine
  • 2010
  • interaction ; Regional climate ; Scale ; Simulation ; Temperature ; Time series ; Vine ; Viticulture
  • 2010
  • Champagne-Ardenne ; Climatic change ; Climatic warming ; Forecast ; France ; Numerical model ; Phenology ; Regional analysis ; Scenario ; Simulation ; Temperature ; Twenty-first century ; Vine ; Viticulture
  • 2010