2 edition of Ground-based radiometric observations of cloud liquid in the Sierra Nevada found in the catalog.
Ground-based radiometric observations of cloud liquid in the Sierra Nevada
J. B. Snider
by U.S. Dept. of Commerce, National Oceanic and Atmospheric Administration, Environmental Research Laboratories in Boulder, Colo
Written in English
|Statement||J.B. Snider, D.C. Hogg.|
|Series||NOAA technical memorandum ERL WPL -- 72.|
|Contributions||Hogg, D. C., Wave Propagation Laboratory.|
|The Physical Object|
|Pagination||iii, 46 p. :|
|Number of Pages||46|
reaching the ground with respect to the cloud type cannot be determined, even though this is essential for cloud-radiation studies. Nowadays ground-based imaging devices are commonly used to support satellite studies (Cazorla et al., ; Feister and Shields, ; Sakellariou et al., ). One of the bestCited by: GROUND-BASED CLOUD OBSERVATION FOR SATELLITE-BASED CLOUD DISCRIMINATION AND ITS VALIDATION M. Yamashita a, M. Yoshimura b a Survey College of Kinki, Yata, Higashi-sumiyoshi-ku, Osaka, , Japan –[email protected] b PASCO Corporation, Research and Development Center, Higashiyama, Meguro-ku, Tokyo, , Japan – Cited by: 2.
The field experiment was conducted over the Sierra Madre and Medicine Bow mountains in early and , respectively, in the context of the Wyoming Weather Modification Pilot Project. The campaign was supported by a network of ground-based instruments, including a microwave radiometer, two profiling Ka-band Micro-Rain Radars (MRRs), a. processing application to Nebula Cloud Giovanni is a Web-based application which offer online visualization and analysis of vast amounts of Earth science data. The Giovanni MAPSS (Multi-sensor Aerosol Products Sampling System) portal focuses on visualizing aerosol relationships among ground-based data and satellite data.
AdvancesinMeteorology 43∘0 0 N 44∘0 0 N 45∘0 0 N 43∘0 0 N 44∘0 0 N 45∘0 0 N ∘0 0 W ∘0 0 W ∘0 0 W ∘0 0 W ∘0 0 W ∘0 0 W N W E S 0 25 50 Paytte Gens. Majo Cties Payett Basin Elevatio Bois Gens. Target Ss Dwnwind SitesCited by: 1. Washington, DC: The National Academies Press. doi: / This phenomenon and the lack of ground-based observations is not confined to HMA, but is evident in key mountain regions worldwide, In the river basins of California’s Sierra Nevada, for example.
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Get this from a library. Ground-based radiometric observations of cloud liquid in the Sierra Nevada. [J B Snider; D C Hogg; Wave Propagation Laboratory,].
 This paper investigates the influence of cloud model statistics on the accuracy of statistical multiple‐frequency liquid water path (LWP) retrievals for a ground‐based microwave radiometer.
Statistical algorithms were developed from a radiosonde data set in which clouds were modeled by using a relative humidity threshold and a modified adiabatic assumption. Accuracy of cloud liquid water path from ground-based microwave radiometry 1. Dependency on cloud model statistics Ulrich Lo¨hnert and Susanne Crewell Meteorological Institute, University of Bonn, Bonn, Germany Received 6 March ; revised 18 June ; accepted 21 August ; published 7 Cited by: Accuracy of cloud liquid water path from ground-based microwave radiometry 2.
Sensor accuracy and synergy Susanne Crewell and Ulrich Lo¨hnert Meteorological Institute, University of Bonn, Bonn, Germany Received 4 March ; revised 18 June ; accepted 20 August ; published 7.
Arctic clouds strongly influence the regional radiation balance, temperature, melting of sea ice, and freezing of sea water. Despite their importance, there is a lack of systematic and reliable observations of Arctic clouds.
The CloudSat satellite launched in with a 94 GHz Cloud Profiling Radar (CPR) may contribute to close this gap. Here we compare one of the key parameters, the cloud Cited by: 6. An evaluation of eleven operational cloud seeding programs in the watersheds of the Sierra Nevada Mountains Bernard A.
Silverman⁎ Consulting Meteorologist, E. Peakview Place, Centennial, COUSA article info abstract Article history: Received 1 February Received in revised form 20 May Accepted 30 June Cited by: 7. During Water Yearthe Desert Research Institute conducted: a) an operational ground-based cloud seeding program focused on the Central Sierra/Tahoe-Truckee Basin and b) a combined aircraft-ground cloud seeding research program focused south of the Tahoe-Truckee program in the Walker River Basin.
In the work by Kneifel et al. , a significant TB enhancement in ground-based measurements at 90 and GHz is observed in presence of snowfall, due to the large amounts of liquid water and to.
retrieval of atmospheric temperature profile, water vapor content, cloud liquid path, and cloud depolarization ratio. In particular, the GHz channels are located in the strong oxygen absorption.
Partnered Journals. Chinese Journal of Geophysics () Earth Interactions; Earth and Planetary Physics; Geophysics; International Journal of Geomagnetism and Aeronomy. Introduction. Airborne and spaceborne sensors provide critical data to the scientific community for Earth-observation studies.
Long-term environmental data sets are maturing and expanding with the launch of an ever-increasing number of sensors from both the government and commercial sectors. 1 Scientific models are created using sensors with a wide variety of spectral, spatial, and temporal Cited by: 6.
Targeting seedable clouds with silver iodide in complex terrain adds considerable uncertainty in weather modification studies. This study explores the geographic and temporal distribution of silver iodide associated with an active cloud seeding program in central Idaho snowpack using trace chemistry.
Over 4, snow samples were analyzed for the presence of a cloud seeding silver iodide (AgI Cited by: 1. Sierra Nevada USA at m resolution from to are now available [Rittger et al., ]. The disad-vantages are that reconstruction can only be calculated retroactively after snow disappears, that it is only valid for the melt season, that persistent cloud cover can obscure the snow’s date of disappearance, andCited by: The Evaluation of CloudSat and CALIPSO Ice Microphysical Products Using Ground-Based Cloud Radar and Lidar Observations A.
PROTAT Centre for Australian Weather and Climate Research, Melbourne, Victoria, Australia, and Laboratoire Atmosphe`re, Milieux, et Observations Spatiales (LATMOS), Ve´lizy, France J. DELANOE¨ AND E. O’CONNOR. Abstract. This article is a review of work on the subject of seedability of winter orographic clouds for increasing precipitation.
Various aspects of seedability are examined in the review, including definitions, distribution of supercooled liquid water, related meteorological factors, relationship of supercooled liquid water to storm stage, factors governing seedability, and the use of Cited by: 1. T1 - Earth-observing satellite intercomparison using the Radiometric Calibration Test Site at Railroad Valley.
AU - Czapla-Myers, Jeffrey S. AU - McCorkel, Joel. AU - Anderson, Nikolaus J. AU - Biggar, Stuart F. PY - /1/1. Y1 - /1/1Cited by: 6. For the first time, a multi color criterion is applied on sky images, in order to improve the accuracy in detection of broken and overcast clouds under large solar zenith angles.
The performance of the cloud detection algorithm is successfully compared with ground based weather by: Through some remarkable technological accomplish- Before TRMM, rainfall estimates were obtained from ments, some important variables and processes associated ground-based sources (e.g., rain gauges and radar) and with the water cycle can be retrieved now from satellite from satellites with visible, infrared, and passive microwave observations.
This book presents a variety of recent advances in this field, including the properties and composition of aerosol particles, chemical transformation and scavenging processes, the relationship between liquid-phase chemistry and cloud micro-physics, entrainment, evaporation and deposition, trends in high Alpine pollution, transport processes Author: Sandro Fuzzi.
Volcanic Ash Cloud Retrieval by Ground-Based Microwave Weather Radar Frank Silvio Marzano, Senior Member, IEEE, Stefano Barbieri, Gianfranco Vulpiani, Member, IEEE, and William I. Rose Abstract—The potential of ground-based microwave weather radar systems for volcanic ash cloud detection and quantitative retrieval is by:.
Heggli, M. R., and R. M. Rauber, The characteristics and evolution of supercooled water in wintertime storms over the Sierra Nevada: A summary of microwave radiometric measurements taken during the Sierra Cooperative Pilot Project.Combining ground-based microwave radiometer and the AROME convective scale model through 1DVAR retrievals in complex terrain: an Alpine valley case study Pauline Martinet1, Domenico Cimini2, Francesco De Angelis3, Guylaine Canut1, Vinciane Unger1, Remi Guillot1, Diane Tzanos1, and Alexandre Paci1 1CNRM UMRMeteo France/CNRS, Toulouse, France.
One year ago, it was 83 percent of the norm. According to the latest measurements from 98 ground-based stations, the average snow-water equivalent in the Author: NASA Earth Observatory.