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  • Radar Meteorology and its Applications

    Radar Meteorology and its Applications by Chandrasekar, V.; Das, Saurabh; Datta, Abhirup;

    Sorozatcím: Springer Atmospheric Sciences;

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      • Kiadói listaár EUR 139.09
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    Beszerezhetőség

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    Why don't you give exact delivery time?

    A beszerzés időigényét az eddigi tapasztalatokra alapozva adjuk meg. Azért becsült, mert a terméket külföldről hozzuk be, így a kiadó kiszolgálásának pillanatnyi gyorsaságától is függ. A megadottnál gyorsabb és lassabb szállítás is elképzelhető, de mindent megteszünk, hogy Ön a lehető leghamarabb jusson hozzá a termékhez.

    A termék adatai:

    • Kiadó Springer Nature Singapore
    • Megjelenés dátuma 2026. április 3.

    • ISBN 9789819554089
    • Kötéstípus Keménykötés
    • Terjedelem247 oldal
    • Méret 235x155 mm
    • Nyelv angol
    • Illusztrációk XIV, 247 p. 125 illus., 112 illus. in color.
    • 700

    Kategóriák

    Hosszú leírás:

    "

    This book aims at capturing the most recent advancements and research in the field of radar meteorology. It features the select research presented at the 6th conference on India Radar Meteorology (iRad-2024), held at the Indian Institute of Technology Indore, Madhya Pradesh, India, from 10–12 January 2024. The book provides a comprehensive and insightful resource for students, researchers, and professionals working in radar meteorology and atmospheric sciences. The key feature of the book is its multidisciplinary approach, bringing together scientists from various domains of radar technology and meteorology. The book covers the latest innovations in radar system design, signal processing techniques, radar data assimilation methods, and advanced applications in weather forecasting, climate monitoring, and severe weather detection which have significant societal impact.

    "

    Több

    Tartalomjegyzék:

    Chapter 1 Principles of Coherent Doppler Wind Lidar and Doppler Weather Radar; Similarities and Differences in Waveforms and Signal Processing.- Chapter 2 Deployment and Performance Evaluation of an Indigenously Designed High-Voltage Pulse Capacitor Bank for S-Band Dual-Polarized Doppler Weather Radar.- Chapter 3 Polarization controlled broadband frequency selective surface Based absorber for stealth design in high frequency radar.- Chapter 4Augmentation of Doppler Weather Radar (DWR) network for improved weather prediction over India.- Chapter 5 Overview of Dual-Polarization Radar-observations of Thunderstorms and Electrification Weather.- Chapter 6 Investigation Of Rainfall Over Indore From Surface Observations.- Chapter 7 High-resolution 3D Wind Field Estimation with Single Doppler Weather Radar.- Chapter 8 Microphysical Study of Precipitation over Ny-Ålesund, an Arctic location.- Chapter 9 Construction of a longer-term and more homogeneous GSMaP precipitation dataset.- Chapter 10 Artificial Intelligence in the Perception of Weather Radar Now Casting.- Chapter 11 Reconstructing radar reflectivity by synergistic use of space borne radar from GPM and satellite observations from INSAT3D for near real-time monitoring of convective storms over India.- Chapter 12 Orographic Rainfall Prediction Using Doppler Weather RADAR – A Soft Computing Approach.- Chapter 13 Enhanced Weather Surveillance and Disaster Mitigation Capabilities in Central India.- Chapter 14 RADCAST- A high resolution probabilistic radar based autonowcast system.- Chapter 15 Sensitivity of WRF simulations of Intensity and Track parameters of Nivar Cyclone to Land Surface Physics and validation with DWR observations.- Chapter 16 Microphysics Sensitivity of Intensity and Track Parameters of Mandous Cyclone simulated by WRF.- Chapter 17 Study of Extreme Rainfall event in Chennai on 30 December 2021 using high resolution WRF simulation and DWR Observations.- Chapter 18 Dual Wavelength Csu-Chill Radar Observations Of Insects And Birds.- Chapter 19 Synergy between Atmospheric studies and Radio Astronomy: Use of Passive mode operation of weather radar.- Chapter 20 Observations from Lower Atmosphere, Mesosphere and Ionosphere using 53MHz VHF Radar at University of Calcutta.- Chapter 21 Solar Observation at 53 MHz using CU-ST Radar with Signal processing Techniques in Passive Mode Operation.

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