Quantifying vegetation canopy interception drivers and runoff effects using a coupled RS-Gash-WEP model. [PDF]
Zhang X, Gong B, Yan S, Wu Z, Zhang W.
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Leaf Traits, Yield Components, and Seed Quality of <i>Paeonia ostii</i> Across Contrasting Understory Positions in a Pecan-Based Agroforestry System. [PDF]
Zhang J, Li D, Duan Y, Niu H, Li R.
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A Rule-Based Transparent Machine Learning Approach for Precision Crop Protection: Modeling Orchard Microclimatic Orientations and Cherry Fruit Fly Pupal Habitats. [PDF]
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Soil-Temperature-Compensated Growing Degree Days Improve Unified Simulation of Maize LAI Dynamics Across Film Mulching Treatments. [PDF]
Zhang W, Zhang Y, Wang W, Sun S.
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Unprecedented Warming and Increased Herbivory Drive Collapse of Japan's Kelp Forests. [PDF]
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Estimating maize canopy water content using UAV-based multispectral-thermal infrared imagery and canopy signal distributional features. [PDF]
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Air Temperature Reductions at the Base of Tree Canopies
Journal of Sustainable Water in the Built Environment, 2021Trees in urban settings have a significant role in regulating urban hydrologic cycles. Urban trees, either as standalone plantings or as part of a tree pit, are an increasingly popular stormwater management tool. Beyond their aesthetic contribution to urban environments, trees are widely accepted as reducing the ambient air temperature.
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Variations in canopy temperature, relative humidity and soil temperature within crop micro-environment exert full control over plant’s physiological processes and thereby over growth, development and yield of crop. These micro-meteorological parameters tend to significantly control the exchange of energy between the crop environment and the atmosphere.
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Land surface temperature (LST) is an important parameter that modulates land surface process. The combination of infrared temperature and microwave temperature is a trend in the research of LST. Thermal infrared temperature and microwave temperature have different physical significances and values.
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Canopy Temperature Response to Water Stress under Partial Canopy
Transactions of the ASAE, 1985ABSTRACT UNSTRESSED baselines of the crop water stress index for cotton under full ground cover have slopes about twice those under partial canopy cover. These results were consistent between four strains and one commerical variety and were caused by a more aerodynamically rough canopy under partial ground cover.
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