Solar and Infrared Radiation Measurements, Second Edition | Agenda Bookshop Skip to content
Online orders placed from 19/12 onward will not arrive in time for Christmas.
Online orders placed from 19/12 onward will not arrive in time for Christmas.
A01=Frank Vignola
A01=Joseph Michalsky
A01=Thomas Stoffel
Age Group_Uncategorized
Age Group_Uncategorized
Author_Frank Vignola
Author_Joseph Michalsky
Author_Thomas Stoffel
automatic-update
Category1=Non-Fiction
Category=TBM
Category=THRB
Category=THX
COP=United Kingdom
Delivery_Delivery within 10-20 working days
Language_English
PA=Available
Price_€100 and above
PS=Active
softlaunch

Solar and Infrared Radiation Measurements, Second Edition

The rather specialized field of solar and infrared radiation measurements has become increasingly important due to the increased demands by the renewable energy and climate change research communities for data with higher accuracy and increased temporal and spatial resolutions. Recent advances in radiometry, measurement systems, and information dissemination also have increased the need for refreshing the literature available for this topic.

This book provides the reader with an up-to-date review of the important aspects of solar and infrared radiation measurements: radiometer design; equipment installation, operation, maintenance, and calibration; data quality assessment parameters; and the knowledge necessary to properly interpret and apply the measured data to a variety of topics. Each of the authors has more than 40 years of experience with this subject, primarily as the result of developing and operating multiple measurement stations, working with the industry to improve radiometry, and conducting various research projects.

The books scope and subject matter have been designed to help a wide audience gain a general understanding of this subject and to serve as a technical reference. A student new to the field will benefit from the review of terminology and the historical perspective for radiometry before addressing more detailed topics in radiometry that we hope will be of interest to the more experienced reader.

Describes the strengths and weaknesses of irradiance instruments

Provides detailed information on how to assess uncertainty in measurements

Offers comprehensive background information needed to understand the use of solar instrumentation

Discusses design concepts for shadowband radiometers, sky imagers, and satellite-based estimates of solar irradiance at the Earths surface

Includes chapter-end questions, references, and useful links

See more
Current price €179.54
Original price €188.99
Save 5%
A01=Frank VignolaA01=Joseph MichalskyA01=Thomas StoffelAge Group_UncategorizedAuthor_Frank VignolaAuthor_Joseph MichalskyAuthor_Thomas Stoffelautomatic-updateCategory1=Non-FictionCategory=TBMCategory=THRBCategory=THXCOP=United KingdomDelivery_Delivery within 10-20 working daysLanguage_EnglishPA=AvailablePrice_€100 and abovePS=Activesoftlaunch
Delivery/Collection within 10-20 working days
Product Details
  • Weight: 1316g
  • Dimensions: 178 x 254mm
  • Publication Date: 12 Aug 2019
  • Publisher: Taylor & Francis Ltd
  • Publication City/Country: United Kingdom
  • Language: English
  • ISBN13: 9781138096295

About Frank VignolaJoseph MichalskyThomas Stoffel

Frank Vignola is the director of the University of Oregon Solar Energy Center and runs the Solar Radiation Monitoring Laboratory (SRML). He received his B.A. in physics at the University of CaliforniaBerkeley in 1967 and his Ph.D. in physics at the University of Oregon in 1975 with his thesis on elementary particle physics. He decided to apply his skills to more practical applications and started working in solar energy in 1977 at the University of Oregon. Dr. Vignola helped establish and manage the SRML solar radiation monitoring network that has created the longest-running high-quality solar radiation data set in the United States. He has organized and participated in many workshops on solar resource assessment and has written and contributed to approximately 100 papers on solar resource assessment. He was technical chair of the 1994 and 2004 conferences of the American Solar Energy Society (ASES) and for several years chaired the Technical Review Committee for ASES that managed the publication of several white papers on solar energy. He is currently associate editor for solar resource assessment for the Solar Energy Journal. To help facilitate the use of solar energy he created and maintains a solar resource assessment website that is accessed by over 150000 users a year. In addition he has served on the boards of ASES and the Solar Energy Industries Association and is past president of the Oregon Solar Energy Industries Association (OSEIA). Dr. Vignola has helped pass solar tax credit and net metering legislation in Oregon and was author of Oregons law requiring 1.5% of the capital for solar in new public buildings. Joseph Michalsky received his B.S. in physics at Lamar University and M.S. and Ph.D. in physics at the University of Kentucky. He began his career with Battelle Memorial Institute that operates the Department of Energys Pacific Northwest National Laboratory. Following that he was with the Atmospheric Sciences Research Center a part of the State University of New York in Albany. He then joined the Global Monitoring Division within the Earth System Research Laboratory in the Office of Oceanic and Atmospheric Research (OAR) a part of the National Oceanic and Atmospheric Administration (NOAA). He continued his research part-time for a few years with the University of Colorados Cooperative Institute for Research in Environmental Sciences. Now fully retired he continues to dabble in atmospheric research of his own choosing. His early career focused on astronomical research before taking on problems in solar energy. His focus in the major part of his career has been in the solar energy and atmospheric sciences. Dr. Michalsky has over 100 refereed publications in astronomy solar energy and atmospheric science. Thomas Stoffel received his B.S. in aerospace engineering from the University of ColoradoBoulder and an M.S. in meteorology from the University of Utah. He began his professional career as an aerospace engineer at the U.S. Air Force Propulsion Laboratory simulating gas turbine engine performance and infrared radiation signatures. He returned to school to pursue his interests in radiative transfer and atmospheric science. Upon graduation he worked at what is now the National Oceanic and Atmospheric Administration Earth System Research Laboratory to analyze urbanrural differences in solar radiation. In 1978 he began his career in renewable energy at the Solar Energy Research Institute (now the National Renewable Energy Laboratory) operated for the U.S. Department of Energy in Golden Colorado. Progressing from his start as an associate scientist to retiring as a principal group manager he and his team of scientists and engineers were responsible for the development and dissemination of solar resource information for the advancement of solar technologies and climate change research. This included the development of the Solar Radiation Research Laboratory (SRRL) which continues to provide research-quality solar resource measurements radiometer calibrations and systems for data acquisition and quality assessment (https://www.nrel.gov/grid/solar-resource/renewable-resource-data.html). He has authored or contributed to more than 80 publications addressing various aspects of solar and infrared radiation measurements.

Customer Reviews

Be the first to write a review
0%
(0)
0%
(0)
0%
(0)
0%
(0)
0%
(0)
We use cookies to ensure that we give you the best experience on our website. If you continue we'll assume that you are understand this. Learn more
Accept