Skip to content
Home/ Weather Radar Networking (Cost 73 Project) Final Report: Edited for the Cost 73 Management Committee
Weather Radar Networking (Cost 73 Project) Final Report: Edited for the Cost 73 Management Committee

Weather Radar Networking (Cost 73 Project) Final Report: Edited for the Cost 73 Management Committee

No customer reviews yet ISBN 9780792319399

1.0 Introduction.- 2.0 Summary and Recommendations.- A. Summary.- B. Recommendations.- Operational networking continuity.- Guidelines for the exchange of radar products.- Data transmission.- Network structure.- North Sea radar coverage.- Electronically scanning radar project.- Follow-on COST project.- Multi-national hydrological applications.- Training.- Wet deposition of pollution.- Radar systems database.- 3.0 Organisation of Work in the Project.- The form and role of the Management Committee.- Financing of the Project.- Support of the CEC.- Project Co-ordinator.- Report structure and working groups.- Total estimated cost of the COST 73 Project.- Seminars.- 4.0 Study Results from the Project.- Radar networking in Europe.- Current distribution and types of radar.- Operational radar characteristics.- Conventional radars.- Doppler radars.- Techniques.- Waveforms.- MTI performance.- Transmitter/receiver principles.- A typical modern Doppler radar.- Benefits of Doppler radar.- Identifying ground echoes.- Wind measurements.- Manual interpretation techniques.- Automatic interpretation techniques.- System outputs and usefulness.- Meteorological aspects.- Practical aspects.- Radar data generation and analyses used in different countries - obtained from the results of a questionnaire.- A proposal for a radar meteorology training curriculum.- Types of users requiring training.- Meteorologists/scientists.- Technicians/engineers.- Scientific assistants.- Computer specialists.- Specialist users.- Training curriculum.- Radar site processing.- Current radar site processing characteristics.- Occultation.- Useful range of weather radars.- Theoretical range of radars.- Effective earth radius for radar and optical propagation.- Practical determination of the lowest usable beam axis.- Theodolite measurements.- Use of a geographical map or geographical data base.- Format for COST purposes.- Coverage map and database.- Weather radar measurements, derived quantities and units employed.- Results of weather radar measurements.- Echo intensity.- Echo position and height.- Assignment of intensity class intervals in digital reflectivity processing.- Conventional radar products.- Doppler radar products.- Summary.- Clutter cancellation.- Basic considerations.- Relevance of clutter elimination.- Choice of wavelength.- Choosing a radar site.- Clutter characteristics.- Cross section of clutter and weather targets.- Variability of clutter and anaprop.- Clutter removal in real-time.- Clutter avoidance.- Pre-processing of the radar signal.- Distribution of clutter in space.- Continuity of weather echoes in time.- Use of other meteorological data.- Clutter map.- Additional image processing.- Sampling requirements and radar scan constraints.- Clutter elimination.- Quantitative applications.- A possible solution.- Summary.- Calibration of radar equipment and adjustment of radar data.- Hardware calibration of radar systems.- Meteorological adjustment of radar data.- Software structure.- Control of the radar.- Correction of data.- Products to be produced by the site system.- Products, transmission and receipt.- Typical system sizes.- Low-cost display systems.- Potential users of low-cost display systems.- The uses of low-cost display systems.- Low-cost display requirements.- The use of PCs.- Storage requirements.- Operational considerations.- Screen layout.- Data reception.- Menu-driven interface.- Main menu.- Controlling the replay sequence.- On-line help system.- Colours.- Replay options.- Record interval.- Coastline/boundary on/off.- Save preferences.- Select image.- Technical characteristics of some of the commercially available video boards.- End user requirements and applications of weather radar data.- End user requirements.- Weather radars and computer systems.- Transmission systems.- End users' workstation.- Applications of weather radar data.- Weather radar for winter operations.- Weather radar in road maintenance.- Weather radar for agricultural applic...

About the author

Product details

Pub dateSep 30, 1992
ISBN-100792319397
ISBN-139780792319399
LanguageEnglish
Last updated 2026-09-08 12:33
$103.22
In stock — ships in 24 hours with free tracking
Delivery by Monday, September 14, 2026
Qty
Sign in to Add to Saved list
Free delivery on orders over $35.
15-day returns. Any reason.
Secure checkout. We never store card details.

Readers who bought this also bought

More from Weather
See all
Light Scattering by Nonspherical Particles: Theory, Measurements, and Applications
<p>There is hardly a field of science or engineering that does not have some interest in light scattering by small particles. For example, this subject is important to climatology because the energy budget for the Earth's atmosphere is strongly affected by scattering of solar radiation by cloud and aerosol particles, and the whole discipline of remote sensing relies largely on analyzing the parameters of radiation scattered by aerosols, clouds, and precipitation. The scattering of light by spherical particles can be easily computed using the conventional Mie theory. However, most small solid particles encountered in natural and laboratory conditions have nonspherical shapes. Examples are soot and mineral aerosols, cirrus cloud particles, snow and frost crystals, ocean hydrosols, interplanetary and cometary dust grains, and microorganisms. It is now well known that scattering properties of nonspherical particles can differ dramatically from those of "equivalent" (e.g., equal-volume or equal-surface-area) spheres. Therefore, the ability to accurately compute or measure light scattering by nonspherical particles in order to clearly understand the effects of particle nonsphericity on light scattering is very important.</p> <p>The rapid improvement of computers and experimental techniques over the past 20 years and the development of efficient numerical approaches have resulted in major advances in this field which have not been systematically summarized. Because of the universal importance of electromagnetic scattering by nonspherical particles, papers on different aspects of this subject are scattered over dozens of diverse research and engineering journals. Often experts in one discipline (e.g., biology) are unaware of potentially useful results obtained in another discipline (e.g., antennas and propagation). This leads to an inefficient use of the accumulated knowledge and unnecessary redundancy in research activities.</p> <p>This book offers the first systematic and unified discussion of light scattering by nonspherical particles and its practical applications and represents the state-of-the-art of this important research field. Individual chapters are written by leading experts in respective areas and cover three major disciplines: theoretical and numerical techniques, laboratory measurements, and practical applications. An overview chapter provides a concise general introduction to the subject of nonspherical scattering and should be especially useful to beginners and those interested in fast practical applications. The audience for this book will include graduate students, scientists, and engineers working on specific aspects of electromagnetic scattering by small particles and its applications in remote sensing, geophysics, astrophysics, biomedical optics, and optical engineering.<br></p>
$235.92