Delineating Site‐Specific Management Zones and Evaluating Soil Water Temporal Dynamics in a Farmer's Field in Kentucky
Author:
Affiliation:
1. Dep. of Plant and Soil SciencesUniv. of KentuckyLexingtonKY40506
2. Kentucky Geological SurveyUniv. of KentuckyLexingtonKY40506
Funder
National Institute of Food and Agriculture
Publisher
Wiley
Subject
Soil Science
Link
https://onlinelibrary.wiley.com/doi/pdf/10.2136/vzj2018.07.0143
Reference80 articles.
1. From near-surface to root-zone soil moisture using an exponential filter: an assessment of the method based on in-situ observations and model simulations
2. Soil water content monitoring for irrigation management: A geostatistical analysis
3. Soil variability: A review;Beckett P.H.T.;Soils Fert.,1971
4. Landscape characteristics influence the spatial pattern of soil water storage: Similarity over times and at depths
5. Application of Continuous Wavelet Transform in Examining Soil Spatial Variation: A Review
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