Jornada Bibliography
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Filters: Author is D. E. Gillette [Clear All Filters]
Broad-scale landscape, soil, and wind influences on fine-scale dynamics. Sixth Symposium on the Natural Resources of the Chihuahuan Desert Region. :35.
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2004. A combined modeling and measurement technique for estimating wind-blown dust emissions at Owens (dry) Lake, CA. Journal of Geophysical Research. 109:1-23.
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2004. Deposition and removal of fugitive dust in the arid southwestern United States: Measurements and model results. Journal of the Air & Waste Management Association. 54:1099-1111.
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2004. Distribution of vegetation in wind-dominated landscapes: implications for wind erosion modeling and landscape processes. Journal of Geophysical Research. 106:9673-9684.
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2001. Disturbance of biological soil crusts: Impacts on potential wind erodibility of sandy desert soils in southeastern Utah, U.S.A.. Land Degradation and Rehabilitation.
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1997. Elemental geochemistry of wind-erodible playa sediments, Owens Lake, California. Nuclear Instruments and Methods in Physics Research B.. 189:209-213.
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2002. Eolian processes across the Jornada basin. Structure and Function of a Chihuahuan Desert Ecosystem. The Jornada Basin Long-Term Ecological Research Site. :189-210.
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2006. Estimating PM10 concentrations from dust storms in Iraq, Kuwait, and Saudi Arabia. Atmospheric Environment. 35:4315-4330.
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2001. Factors controlling threshold friction velocity in semiarid and arid areas of the United States. Journal of Geophysical Research. 102:23277-23287.
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1997. Field evaluation of relationships between a vegetation structural parameter and sheltered against wind erosion. Land Degradation and Rehabilitation. 2:87-94.
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1990. Field measurements of the sheltering effect of vegetation on erodible land surfaces. Land Degradation and Rehabilitation. 2:77-85.
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1990. Introduction to special section on mineral dust: outstanding problems in quantifying the radiative impact of mineral dust. Journal of Geophysics Research. 106:15-18.
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2001. The long-distance A ‘transportable fraction’ of the vertical flux of wind-transported dust. Proceedings of ICAR5/GCTE-SEN Joint Conference, International Center for Arid and Semiarid Lands Studies. Publication 02-2
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2002. Modeling flow patterns in a small vegetated area in the northern Chihuahuan Desert using QUIC (Quick Urban & Industrial Complex). Environmental Fluid Mechanics. 6:359-384.
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2006. Modelling wind erosion and dust emission on vegetated surfaces. Spatial Modeling of the Terrestrial Environment. :137-156pp.
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2004. Multiscale controls on and consequences of aeolian processes in landscape change in arid and semi-arid environments. Journal of Arid Environments. 65:253-275.
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2006. Particle production and aeolian transport from a "supply-limited" source area in the Chihuahuan desert, New Mexico, United States. Journal of Geophysical Research. 106:5267-5278.
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2001. A qualitative geophysical explanation for "hot spot" dust emitting source regions. Contributions to Atmospheric Physics.
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1999. Relationship between the aerodynamic roughness length and the roughness density for low roughness density. Environmental Fluid Mechanics. 3:249-267.
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2003. Sand flux in the northern Chihuahuan desert, New Mexico, USA, and the influence of mesquite-dominated landscapes. Journal of Geophysical Research. 109
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2004. Sand flux simulations at a small scale over a heterogeneous mesquite area of the northern Chihuahuan Desert. Journal of Applied Meteorology and Climatology. 46:1410-1422.
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2007. Sensitivity testing of the gap intercept method, a simple, rapid indicator of changes in vegetation, soil erosion and hydrologic function. Eco-Hydrology of Semiarid Landscapes: Interactions and Processes, Chapman Conference. :17.
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2002. Supply-limited horizontal sand drift at an ephemerally crusted, unvegetated saline playa. Journal of Geophysical Research. 106:18085-18098.
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Vulnerability of desert soil surfaces to wind erosion: the influences of crust development, soil texture, and disturbance. Journal of Arid Environments. 39:133-142.
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1998. Wind characteristics of mesquite streets in the northern Chihuahuan desert, New Mexico, USA. Environmental Fluid Mechanics. 6:241-275.
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2006.