نتایج جستجو برای: amsu b
تعداد نتایج: 899508 فیلتر نتایج به سال:
The Atmospheric Infrared Sounder/Advanced Microwave Sounding Unit/Humidity Sounder for Brazil (AIRS/AMSU/HSB) instrument suite onboard Aqua observes infrared and microwave radiances twice daily over most of the planet. AIRS offers unprecedented radiometric accuracy and signal to noise throughout the thermal infrared. Observations from the combined suite of AIRS, AMSU, and HSB are processed into...
The Radiative Transfer for TOVS (RTTOV) is a widely-used radiative transfer model (RTM) for calculation of radiances for satellite infrared and microwave sensors, including the 8461-channel Infrared Atmospheric Sounding Interferometer (IASI) and the 15-band Advanced Microwave Sounding Unit-A (AMSU-A). In the era of hyperspectral sounders with thousands of spectral channels, the computation of t...
We develop an over-ocean rainfall retrieval algorithm for the Advanced Microwave Sounding Unit (AMSU) based on the Global Satellite Mapping of Precipitation (GSMaP) microwave radiometer algorithm. This algorithm combines an emissionbased estimate from brightness temperature (Tb) at 23 GHz and a scattering-based estimate from Tb at 89 GHz, depending on a scattering index (SI) computed from Tb at...
[1] The Suomi National Polar-orbiting Partnership (NPP) satellite was successfully launched on 28 October 2011. On board the Suomi NPP, the Advanced Technology Microwave Sounder (ATMS) is a cross-track scanning instrument and has 22 channels at frequencies ranging from 23 to 183 GHz which allows for probing the atmospheric temperature and moisture under clear and cloudy conditions. ATMS inherit...
There is considerable concern in the numerical weather prediction (NWP) community that the Advanced Technology Microwave Sounder (ATMS) is merely being built to the noise specifications of the Advanced Microwave Sounding Unit (AMSU) and the Microwave Humidity Sounder (MHS). Since the AMSU/MHS have greatly exceeded the noise specification, the NWP community is worried that the ATMS in fact would...
Stratospheric temperature series derived from the Advanced Microwave Sounding Unit (AMSU) on board successive NOAA satellites reveal, during periods of overlap, some bias and drifts. Part of the reason for these discrepancies could be atmospheric tides as the orbits of these satellites drifted, inducing large changes in the actual times of measurement. NOAA 15 and 16, which exhibit a long perio...
The Meteorological Research Institute (MRI) of the Japan Meteorological Agency (JMA) developed a new method for estimating tropical cyclone (TC) minimum sea level pressure (MSLP) from TC warm core intensity as observed using the Advanced Microwave Sounding Unit-A (AMSU-A). This approach is based on regression between TC warm core intensity data obtained from AMSU-A 55-GHz band brightness temper...
بدلیل صدمات ناشی از کمبود بارش در بخش وسیعی از کشور ایران و همچنین تلفات ناشی از وقوع سیلاب، برآورد دقیق مقدار بارش از نیازهای حیاتی کشور به شمار می رود. از طرفی بدلیل تنوع زیاد بارش و پراکندگی ایستگاه های زمینی در کشور، برآورد دقیق مقدار بارش ممکن نیست. امروزه با ظهور فناوری های پیشرفته در فرآیند دریافت اطلاعات هواشناسی، از طریق نصب سنجنده های پیشرفته بر روی ماهواره ها امکان برآورد دقیق تر بار...
Abstract To better understand the assimilation contribution and influence mechanism of different satellite platforms microwave instruments, radiance data Advanced Microwave Sounding Unit-A (AMSU-A) Humidity Sounder (MHS) onboard NOAA-15 NOAA-18 are assimilated to investigate various effects on prediction path intensity Typhoon Megi (2016) based Weather Research Forecasting (WRF) three-dimension...
A regional hybrid variational–ensemble data assimilation system (HVEDAS), the maximum likelihood ensemble filter (MLEF), is applied to the 2011 version of the NOAA operational Hurricane Weather Research and Forecasting (HWRF) model to evaluate the impact of direct assimilation of cloud-affected Advanced Microwave Sounding Unit-A (AMSU-A) radiances in tropical cyclone (TC) core areas. The forwar...
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