He has been involved with NASA satellite measurements for precipitation (GPM, TRMM) and scatterometry (QuikSCAT, RapidScat), a number of airborne field campaigns for studying convective clouds and hurricanes, and a member of the science team for the Radio Occultations though Heavy Precipitation (ROHP) instrument. Global Satellite Mapping of Precipitation (GSMaP) provides a global hourly rain rate with a 0.1 x 0.1 degree resolution. Dryland precipitation climatology from satellite observations -- Chapter 44. He has spent much of his career studying the global water and energy cycles. She has served as the Global Precipitation Measurement (GPM) Mission Associate Deputy Project Scientist for Applications since 2009, where she leads a team of outreach and applications specialists to provide scientific support for applications research and activities. She has authored over forty papers on the topic of applying remotely sensed surface and precipitation information to landslide hazard models at multiple spatial and temporal scales. He has been involved with NASA satellite measurements for precipitation (GPM, TRMM) and scatterometry (QuikSCAT, RapidScat), a number of airborne field campaigns for studying convective clouds and hurricanes, and a member of the science team for the Radio Occultations though Heavy Precipitation (ROHP) instrument. This book offers a complete overview of the measurement of precipitation from space, which has made considerable advancements during the last two decades. Kenji Nakamura is Professor of the Department of Economics on Sustainability, Faculty of Economics in Dokkyo University, Japan. Editors: This is mainly due to the Tropical Rainfall Measuring Mission (TRMM), the Global Precipitation Measurement (GPM) mission, CloudSat and a carefully maintained constellation of satellites hosting passive microwave sensors. The most im-portant ones which combine measurements from different satellite-borne sensors are the Multi-satellite Precipitation Tropical Rainfall Measurement Mission (TRMM) satellite in 1997, we have entered an era to observe global precipitation with an array of sensors aboard multiple satellite platforms, and to produce globally consistent, high‐resolution precipi-tation measurements from the synthesis of these sensors. To derive more comprehensive estimates of global rainfall, microwave and infrared satellite data are used. He was among the co-founders of the International Precipitation Working Group and has collaborated to clouds and precipitation missions of the European Organization for the Exploitation of Meteorological Satellites (EUMETSAT) and the European Space Agency (ESA). Global rainfall measurements using rain gauges are somewhat sparse, especially in less-developed areas and over the ocean. enable JavaScript in your browser. Compre o livro Satellite Precipitation Measurement de em Bertrand.pt. This is mainly due to the Tropical Rainfall Measuring Mission (TRMM), the Global Precipitation Measurement (GPM) … He is a recipient of Fujiwhara Award of the Japan Meteorological Society. Vincenzo Levizzani is Director of Research at the Institute of Atmospheric Sciences and Climate of the National Council of Research in Bologna, Italy, and Professor of Cloud Physics at the University of Bologna. seja o primeiro a comentar este produto comentar. Please review prior to ordering, Offers state-of-the-art intelligence on how to interpret precipitation data sets, Contains first-hand teaching material for undergraduate and graduate students, Highlights the successes of the community whilst indicating the open science, technology issues and future challenges, ebooks can be used on all reading devices, Institutional customers should get in touch with their account manager, Usually ready to be dispatched within 3 to 5 business days, if in stock, The final prices may differ from the prices shown due to specifics of VAT rules. The GPM (Global Precipitation Measurement) satellite was launched in February 2014 promising more refined precipitation data either in terms of time and as in space . This book provides unique contributions from field experts and from the International Precipitation Working Group (IPWG). (Eds.). ...you'll find more products in the shopping cart. Additional sensor channels and products have been demonstrated to provide additional useful information including visible channels, additional IR channels, water vapor channels and atmospheric sounding retrievals. Satellite Precipitation Measurement eBook. We have a dedicated site for USA. Springer is part of, Please be advised Covid-19 shipping restrictions apply. Global Precipitation Measurement (GPM) is a joint mission between JAXA and NASA as well as other international space agencies to make frequent (every 2–3 hours) observations of Earth's precipitation. high-resolution satellite precipitation estimates, including Joyce et al.’s (2004) Climate Prediction Center Morphing Technique (CMORPH) and the arithmetic mean of the microwave estimates used in CMORPH; Huffman et al.’s (2007) Tropical Rainfall Measuring Mission (TRMM) precipitation product 3B42 and its real-time version From 1997 to 2000 he served as the TRMM Project Scientist and continues to serve on the science steering teams of both the TRMM as the Global Precipitation Mission where he leads the team responsible for the passive microwave rainfall products. The book will be of interest to meteorologists, hydrologists, climatologists, water management authorities, students at various levels and many other parties interested in making use of satellite precipitation data sets. ERA5 provides monthly precipitation estimates, produced by data assimilation of models and observations. This book offers a complete overview of the measurement of precipitation from space, which has made considerable advancements during the last two decades. NASA and JAXA operate the Global Precipitation Measure-ments (GPM) mission [29], which is a constellation of around 10 operational satellites that provides global precipitation coverage from 65ÂřS to 65ÂřN with 3-hour temporal resolution. GPM Microwave Imager (GMI) (amount, size, intensity and type of precipitation) 2. (Eds.). ‎This book offers a complete overview of the measurement of precipitation from space, which has made considerable advancements during the last two decades. Satellite Precipitation Measurement Book Subtitle Volume 1 Editors. We have a dedicated site for USA. The Global Precipitation Measurement (GPM) Mission, The Megha-Tropiques Mission After Seven Years in Space, Microwave and Sub-mm Wave Sensors: A European Perspective, Introduction to Passive Microwave Retrieval Methods, The Goddard Profiling (GPROF) Precipitation Retrieval Algorithm, Precipitation Estimation from the Microwave Integrated Retrieval System (MiRS), Introduction to Radar Rain Retrieval Methods, Dual-Frequency Precipitation Radar (DPR) on the Global Precipitation Measurement (GPM) Mission’s Core Observatory, DPR Dual-Frequency Precipitation Classification, Precipitation Retrievals from Satellite Combined Radar and Radiometer Observations, A 1DVAR-Based Snowfall Rate Algorithm for Passive Microwave Radiometers, Integrated Multi-satellite Retrievals for the Global Precipitation Measurement (GPM) Mission (IMERG), Global Satellite Mapping of Precipitation (GSMaP) Products in the GPM Era, Improving PERSIANN-CCS Using Passive Microwave Rainfall Estimation, Algorithm and Data Improvements for Version 2.1 of the Climate Hazards Center’s InfraRed Precipitation with Stations Data Set, Merging the Infrared Fleet and the Microwave Constellation for Tropical Hydrometeorology (TAPEER) and Global Climate Monitoring (GIRAFE) Applications. . The DPR originally collected data over a swath of 78 and 152 miles (125 and 245km) for the Ka and Ku band radars respectively, but since May 2018 the swath now covers 152 miles (245 km) for both radars. Conventional measurements using networks of rain gauges and, where available, weather radar systems are common. He has spent much of his career studying the global water and energy cycles. ‎This book offers a complete overview of the measurement of precipitation from space, which has made considerable advancements during the last two decades. GSMaP is a product of the Global Precipitation Measurement (GPM) mission, which provides global precipitation observations at three hour intervals. Her research interests center on the application of GPM data to rainfall-triggered landslide modeling efforts, including a global landslide situational awareness system that is being used worldwide. He is author of several hundreds peer-reviewed journal publications, book contributions and scientific reports, and has served in several high-level committees of WMO, NASA, ESA, EUMETSAT, KMA, European Commission, etc. The project provides global precipitation maps to assist researchers in improving the forecasting of extreme events, studying global climate, and adding to current capabilities for using suc… He is a recipient of Fujiwhara Award of the Japan Meteorological Society.F. A comprehensive validation of three satellite precipitation datasets (SPDs), including (1) the Climate Prediction Center Morphing algorithm (CMORPH), (2) Global Satellite Mapping of Precipitation (GSMaP) Reanalysis, and (3) Tropical Rainfall Measuring Mission multi-satellite precipitation analysis (TRMM) 3B42, was conducted using the rain gauge-based Vietnam Gridded Precipitation … He led the Tropical Rainfall Measuring Mission (TRMM) and the Global Precipitation Measurement (GPM) projects in Japan. This is mainly due to the Tropical Rainfall Measuring Mission (TRMM), the Global Precipitation Measurement (GPM) mission, CloudSat and a carefully maintained constellation of satellites hosting passive microwave sensors. He has authored over one hundred peer reviewed journal publications related to global clouds and the hydrologic cycle.Kenji Nakamura is Professor of the Department of Economics on Sustainability, Faculty of Economics in Dokkyo University, Japan. Heavy precipitation systems in the Mediterranean area: The role of GPM -- Chapter 43. He served as a Member of the Board of Directors of the Meteorological Society of Japan and a Senior advisor of the Earth Observation Research Center, the Japan Aerospace Exploration Agency. (gross), © 2020 Springer Nature Switzerland AG. He is particularly interested in observing the global water cycle and its uncertainties – how uncertainties relate to physical aspects of the atmosphere, and thus the fundamental processes underlying precipitation. She has served as the Global Precipitation Measurement (GPM) Mission Associate Deputy Project Scientist for Applications since 2009, where she leads a team of outreach and applications specialists to provide scientific support for applications research and activities. His research has been related to a variety passive and active microwave measurements and remote sensing techniques. Analysis of that data is shown here as weekly, monthly and annual precipitation totals. Springer is part of, Please be advised Covid-19 shipping restrictions apply. He led the Tropical Rainfall Measuring Mission (TRMM) and the Global Precipitation Measurement (GPM) projects in Japan. This book provides unique contributions from field experts and from the International Precipitation Working Group (IPWG). The measurement and monitoring of precipitation is critical to the management of water resources. This is mainly due to the Tropical Rainfall Measuring Mission (TRMM), the Global Precipitation Measurement (GPM) mission, CloudSat and a carefully maintained constellation of satellites hosting passive microwave sensors. Dalia B. Kirschbaum is a Research Physical Scientist in the Hydrological Sciences Lab at NASA Goddard Space Flight Center in Greenbelt, Maryland. The Global Precipitation Measurement mission is an international network of satellites that provide the next-generation global observations of rain and snow to advance our understanding of Earth's water and energy cycle, improve forecasting of extreme events, and provide accurate and timely information to directly benefit society. enable JavaScript in your browser. Before Dokkyo University, he was a professor at Nagoya University, Japan, and he was the Director of the Hydrospheric-Atmospheric Research Center, Nagoya University during 2001-2005 and 2011-2013. The current content has been completely renewed to incorporate the advancements of science and technology in the field since then. Before Dokkyo University, he was a professor at Nagoya University, Japan, and he was the Director of the Hydrospheric-Atmospheric Research Center, Nagoya University during 2001-2005 and 2011-2013. Today, scientists can measure precipitation directly—using ground-based instruments such as rain gauges—or indirectly—using remote sensing techniques (e.g., from radar systems, aircraft, and Earth-observing satellites). Vincenzo Levizzani is Director of Research at the Institute of Atmospheric Sciences and Climate of the National Council of Research in Bologna, Italy, and Professor of Cloud Physics at the University of Bologna. He has been a member of the AMS Satellite Meteorology and Oceanography Committee, and Editor for the AMS Journal of Hydrometeorology and active in the IPWG since its inception. Joseph Turk is a radar scientist with the Jet Propulsion Laboratory, California Institute of Technology, Pasadena, CA. It is part of NASA's Earth Systematic Missions program and works with a satellite constellationto provide full global coverage. He has authored over one hundred peer reviewed journal publications related to global clouds and the hydrologic cycle. Edição: Springer International Publishing, abril de 2020 ‧ ISBN: 9783030357986 ‧ ver detalhes do produto. Radars are even rarer in these areas. His specialization is in microwave remote sensing techniques, multi-wavelength and dual-polarization radar techniques, and precipitation science. Vincenzo Levizzani; Chris Kidd; Dalia Kirschbaum; Chris Kummerow; Kenji Nakamura; F Joseph Turk; Series Title Advances in Global Change Research Series Volume 67 Copyright 2020 Publisher Springer International Publishing Copyright Holder Springer Nature Switzerland AG eBook ISBN 978-3-030-24568-9 DOI Levizzani, V., Kidd, C., Kirschbaum, D., Kummerow, C., Nakamura, K., Turk, F.J. The current content has been completely renewed to incorporate the advancements of science and technology in the field since then. His research interests concentrate on cloud structure, precipitation measurement from space, regional climatology of clouds and precipitation and new space mission concept design. Rainfall trends in East Africa from an ensemble of IR-based satellite products -- Chapter 42. She has authored over forty papers on the topic of applying remotely sensed surface and precipitation information to landslide hazard models at multiple spatial and temporal scales.Christian D. Kummerow is Professor of Atmospheric Science at Colorado State University where he also serves as Director of the Cooperative Institute for Research in the Atmosphere (CIRA). The International Precipitation Working Group Satellites offer an unrivalled vantage point to observe and measure Earth system processes and parameters. The Global Precipitation Measurement Mission (GPM) is an international satellite mission launched by NASA and JAXA on Feb. 27th, 2014 that is setting new standards for precipitation measurements worldwide. F. Joseph Turk is a radar scientist with the Jet Propulsion Laboratory, California Institute of Technology, Pasadena, CA. JavaScript is currently disabled, this site works much better if you He has been at the forefront of satellite precipitation estimation over the last 30 years, focusing upon retrieval schemes from both passive microwave observations and multi-sensor observations, together with the verification, validation and inter-comparison of satellite estimates and surface measurements. The IPWG Satellite Precipitation Validation Effort, Multiscale Evaluation of Satellite Precipitation Products: Effective Resolution of IMERG, Remote Sensing of Orographic Precipitation, Integrated Multi-satellite Evaluation for the Global Precipitation Measurement: Impact of Precipitation Types on Spaceborne Precipitation Estimation, Global-Scale Evaluation of 22 Precipitation Datasets Using Gauge Observations and Hydrological Modeling, OceanRAIN – The Global Ocean Surface-Reference Dataset for Characterization, Validation and Evaluation of the Water Cycle, GPCP and the Global Characteristics of Precipitation, Global Snowfall Detection and Measurement, On the Duration and Life Cycle of Precipitation Systems in the Tropics, Observational Characteristics of Warm-Type Heavy Rainfall, Satellite Precipitation Measurement and Extreme Rainfall, Rainfall Trends in East Africa from an Ensemble of IR-Based Satellite Products, Heavy Precipitation Systems in the Mediterranean Area: The Role of GPM, Dryland Precipitation Climatology from Satellite Observations, Improving High-Latitude and Cold Region Precipitation Analysis, Latent Heating Retrievals from Satellite Observations, Operational Applications of Global Precipitation Measurement Observations, Assimilation of Precipitation Observations from Space into Numerical Weather Prediction (NWP), Precipitation Ensemble Data Assimilation in NWP Models, PERSIANN-CDR for Hydrology and Hydro-climatic Applications, Soil Moisture and Precipitation: The SM2RAIN Algorithm for Rainfall Retrieval from Satellite Soil Moisture, Drought Risk Management Using Satellite-Based Rainfall Estimates, Two Decades of Urban Hydroclimatological Studies Have Yielded Discovery and Societal Benefits, Extreme Precipitation in the Himalayan Landslide Hotspot, The Value of Satellite Rainfall Estimates in Agriculture and Food Security, Using Satellite Estimates of Precipitation for Fire Danger Rating, Variability of Satellite Sea Surface Salinity Under Rainfall. Shop now! (gross), © 2020 Springer Nature Switzerland AG. He served as a Member of the Board of Directors of the Meteorological Society of Japan and a Senior advisor of the Earth Observation Research Center, the Japan Aerospace Exploration Agency. His research interests concentrate on cloud structure, precipitation measurement from space, regional climatology of clouds and precipitation and new space mission concept design. It seems that you're in USA. Microphysical characterization of precipitation and quantitative precipitation estimation are important applications that are critical in the validation of satellite-borne precipitation measurements and also serve as valuable tools in algorithm development. The book revisits a previous book, Measuring Precipitation from Space, edited by V. Levizzani, P. Bauer and F. J. Turk, published with Springer in 2007. Christopher Kidd obtained a BSc in Geography from the University of Nottingham, followed by a PhD from the University of Bristol. The book will be of interest to meteorologists, hydrologists, climatologists, water management authorities, students at various levels and many other parties interested in making use of satellite precipitation data sets. Rain gauges: Rain gauges measure precipitation amounts at a given location. Since then, algorithms improved and further multi-source products with higher resolutions emerged. Satellite-based measurements offer global coverage or a good part thereof. Volume 2. idioma: Inglês. Please review prior to ordering, Offers state-of-the-art intelligence on how to interpret precipitation data sets, Contains first-hand teaching material for undergraduate and graduate students, Highlights the successes of the community whilst indicating the open science, technology issues and future challenges, ebooks can be used on all reading devices, Institutional customers should get in touch with their account manager, Usually ready to be dispatched within 3 to 5 business days, if in stock, The final prices may differ from the prices shown due to specifics of VAT rules. He is author of several hundreds peer-reviewed journal publications, book contributions and scientific reports, and has served in several high-level committees of WMO, NASA, ESA, EUMETSAT, KMA, European Commission, etc.Christopher Kidd obtained a BSc in Geography from the University of Nottingham, followed by a PhD from the University of Bristol. His specialization is in microwave remote sensing techniques, multi-wavelength and dual-polarization radar techniques, and precipitation science. 155,12€ i. Comprar Checkout. Levizzani, V., Kidd, C., Kirschbaum, D., Kummerow, C., Nakamura, K., Turk, F.J. Volume 1. idioma: Inglês. It seems that you're in USA. NASA’s Precipitation Measurement Missions consist of TRMM and GPM. Shop now! JavaScript is currently disabled, this site works much better if you This NASA video gives a great overview of the Global Precipitation Measurement Mission, which is an international mission to provide precipitation data for the Earth from 60 degrees N to 60 degrees S. 1. Geostationary satellites … From 1997 to 2000 he served as the TRMM Project Scientist and continues to serve on the science steering teams of both the TRMM as the Global Precipitation Mission where he leads the team responsible for the passive microwave rainfall products. Satellite precipitation measurement and extreme rainfall -- Chapter 41. Thursday, September 13, 2018. 191,05€ i. Comprar Checkout. Satellite Precipitation Measurement eBook. DPR provides three-dimensional measurements of precipitation structure and characteristics. The GPCP V2.3 Combined Precipitation Data Set provides monthly precipitation estimates from 1979 to near‐present, produced from GPCC rain gauge analyses over land, satellite measurements over land and ocean, and sounding observations. Happy Holidays—Our $/£/€30 Gift Card just for you, and books ship free! The book revisits a previous book, Measuring Precipitation from Space, edited by V. Levizzani, P. Bauer and F. J. Turk, published with Springer in 2007. Dual-frequency Precipitation Radar (DPR) (3D profiles and intensities of liquid and solid precipitation)The satellite orbits 407 km (253 miles) above the Earth, with an orbital duration of 93 minutes. Christian D. Kummerow is Professor of Atmospheric Science at Colorado State University where he also serves as Director of the Cooperative Institute for Research in the Atmosphere (CIRA). of Precipitation (CMAP) to create a new monthly precipita-tion product on a 2.5 ×2.5 grid. price for Spain Her research interests center on the application of GPM data to rainfall-triggered landslide modeling efforts, including a global landslide situational awareness system that is being used worldwide. a. Satellites such as the Tropical Rainfall Measuring Mission (TRMM) and the Global Precipitation Measurement (GPM) mission employ microwave sensors to form precipitation estimates. He has been at the forefront of satellite precipitation estimation over the last 30 years, focusing upon retrieval schemes from both passive microwave observations and multi-sensor observations, together with the verification, validation and inter-comparison of satellite estimates and surface measurements.Dalia B. Kirschbaum is a Research Physical Scientist in the Hydrological Sciences Lab at NASA Goddard Space Flight Center in Greenbelt, Maryland. price for Spain ...you'll find more products in the shopping cart. This is mainly due to the Tropical Rainfall Measuring Mission (TRMM), the Global Precipitation Measurement (GPM) … And type of precipitation from space, which has made considerable advancements during last. Of satellite precipitation measurement, Pasadena, CA Physical scientist in the Hydrological Sciences Lab at NASA Goddard space Flight in... And extreme rainfall -- Chapter 42 microwave and infrared satellite data are used /£/€30 Card. Research Physical scientist in the shopping cart multi-wavelength and dual-polarization radar techniques, and. Trends in East Africa from an ensemble of IR-based satellite products -- Chapter 44 at three hour intervals the. In East Africa from an ensemble of IR-based satellite products -- Chapter.... 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