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EAGER: A New Method for Sampling Sea-Salt Aerosols [项目]
Alison Nugent
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EAGER: Cloud Microphysics Measurements Using Unmanned Aircraft Systems [项目]
Matthew Van Den Broeke
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Modern and prospective technologies for weather modification activities: A look at integrating unmanned aircraft systemsReview ArticleVolumes 178–179, 1 September 2016, Pages 114-124Duncan Axisa, Tom P. DeFeliceAbstractClose research highlightsPDF (690 K)Highlights•First look at the integration of autonomous unmanned aircraft systems (UAS) for weather modification operations and research.•Issues with UAS integration are primarily related to government policy, technology advancements, and operational considerations.•Demand exists for UAS that measure meteorological state parameters, 3D-winds and cloud microphysics in conditions conducive to seeding.•Instrumented UAS will improve and validate model parameterizations especially when applied to simulating seeding agent dispersion.•Cloud physics measurements by UAS are needed to test cloud seeding hypotheses.•UAS allow for concurrent, real-time eulerian and lagrangian analyses of seeding processes throughout cloud life cycles on sub-cloud scalesOpen AccessOpen Access ArticlePhysical climatology of Indonesian maritime continent: An outline to comprehend observational studiesReview ArticleVolumes 178–179, 1 September 2016, Pages 231-259Manabu D. YamanakaAbstractClose research highlightsPDF (11282 K)Highlights•The latest knowledge and understanding on climatology of Indonesian maritime continent (IMC) are overviewed briefly.•Diurnal and annual cycles are the 1st/2nd modes over the IMC, in contrast to intraseasonal and interannual modes in open oceans.•Rainfall is distributed along coastlines where the diurnal cycles are concentrated.•Intraseasonal/annual/interannual variations of sea–land temperature gradient modulate the diurnal-cycle amplitude.•The IMC with the world's longest coastline has the world's largest rainfall.Open AccessOpen Access ArticleSensitivity of boundary-layer variables to PBL schemes in the WRF model based on surface meteorological observations, lidar, and radiosondes during the HygrA-CD campaign [期刊论文]
Atmospheric Research, 2016-01-01, Volumes 176–177) : Pages 185-201
Duncan Axisaa;  ;  ;  ;  Tom P. DeFeliceb;  
Adobe PDF(690Kb)  |  View/Download:18/0
 
Collaborative Research: RAPID--Integration of Unmanned Aircraft System (UAS) into the Program for Research on Elevated Convection with Intense Precipitation [项目]
Eric Frew
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Collaborative Research: RAPID--Integration of Unmanned Aircraft System (UAS) into the Program for Research on Elevated Convection with Intense Precipitation [项目]
Adam Houston
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