NASA Logo

NTRS

NTRS - NASA Technical Reports Server

Press Enter or click the Search button to begin your search.

Back to Results
NPP ATMS Snowfall Rate ProductPassive microwave measurements at certain high frequencies are sensitive to the scattering effect of snow particles and can be utilized to retrieve snowfall properties. Some of the microwave sensors with snowfall sensitive channels are Advanced Microwave Sounding Unit (AMSU), Microwave Humidity Sounder (MHS) and Advance Technology Microwave Sounder (ATMS). ATMS is the follow‐on sensor to AMSU and MHS. Currently, an AMSU and MHS based land snowfall rate (SFR) product is running operationally at NOAA/NESDIS. Based on the AMSU/MHS SFR, an ATMS SFR algorithm has been developed recently. The algorithm performs retrieval in three steps: snowfall detection, retrieval of cloud properties, and estimation of snow particle terminal velocity and snowfall rate. The snowfall detection component utilizes principal component analysis and a logistic regression model. The model employs a combination of temperature and water vapor sounding channels to detect the scattering signal from falling snow and derive the probability of snowfall (Kongoli et al., 2015). In addition, a set of NWP model based filters is also employed to improve the accuracy of snowfall detection. Cloud properties are retrieved using an inversion method with an iteration algorithm and a two‐stream radiative transfer model (Yan et al., 2008). A method developed by Heymsfield and Westbrook (2010) is adopted to calculate snow particle terminal velocity. Finally, snowfall rate is computed by numerically solving a complex integral. NCEP CMORPH analysis has shown that integration of ATMS SFR has improved the performance of CMORPH‐Snow. The ATMS SFR product is also being assessed at several NWS Weather Forecast Offices for its usefulness in weather forecast.
Document ID
20150002865
Acquisition Source
Marshall Space Flight Center
Document Type
Abstract
Authors
Meng, Huan
(National Oceanic and Atmospheric Administration Highlands, NJ, United States)
Ferraro, Ralph
(National Oceanic and Atmospheric Administration Highlands, NJ, United States)
Kongoli, Cezar
(Maryland Univ. College Park, MD, United States)
Wang, Nai-Yu
(I.M. Systems Group, Inc. Rockville, MD, United States)
Dong, Jun
(Maryland Univ. College Park, MD, United States)
Zavodsky, Bradley
(NASA Marshall Space Flight Center Huntsville, AL, United States)
Yan, Banghua
(National Oceanic and Atmospheric Administration Highlands, NJ, United States)
Date Acquired
March 13, 2015
Publication Date
February 23, 2015
Subject Category
Numerical Analysis
Meteorology And Climatology
Earth Resources And Remote Sensing
Report/Patent Number
MSFC-E-DAA-TN19707
Report Number: MSFC-E-DAA-TN19707
Meeting Information
Meeting: 2015 NOAA Satellite Science Week, GOES-R and JPSS Programs
Location: Boulder, CO
Country: United States
Start Date: February 23, 2015
End Date: February 27, 2015
Sponsors: NASA Headquarters, National Oceanic and Atmospheric Administration
Funding Number(s)
WBS: WBS 281945.02.03.05.45
Distribution Limits
Public
Copyright
Public Use Permitted.
Keywords
Forecasting
Passive Microwave
No Preview Available