http://www.iisc.ernet.in/
Solar Potential in the Himalayan Landscape
http://wgbis.ces.iisc.ernet.in/energy/
Ramachandra T V 1,2,3,*                Gautham Krishnadas 1                Rishabh Jain 1
1 Energy & Wetlands Research Group, Center for Ecological Sciences [CES], 2 Centre for Sustainable Technologies (astra), 3 Centre for infrastructure, Sustainable Transportation and Urban Planning [CiSTUP], Indian Institute of Science, Bangalore, Karnataka, 560 012, India
*Corresponding author: cestvr@ces.iisc.ernet.in

References

  1. Kishore V.V.N, Renewable Energy Engineering and Technology : A knowledge compendium , TERI Press, New Delhi, 2008
  2. Mani A., Handbook of solar radiation, Allied Publishers, New Delhi, 1981
  3. World Radiation Data Centre, St.Petersburg, Viewed on August 1 2011 <http://wrdc.mgo.rssi.ru/>
  4. Varshita R.D, Gupta M.K., Modernisation of Radiation Network, Indian Meteorological Department, Pune, India, Viewed July 29 2010, <http://www.wmo.int/pages/prog/www/IMOP/publications/IOM-82-TECO_2005/Posters/P1%2810%29_India_Vashistha.pdf>
  5. NASA, Surface Meteorology and Solar Energy Release 6.0 Methodology,  Viewed 29 July 2010, <http://eosweb.larc.nasa.gov/sse/documents/SSE6Methodology.pdf>
  6. Alberto Ortega, Rodrigo Escobar, Sergio Colle, Samuel Lunade Abreu, The state of solar energy resource assessment in Chile, Renewable energy, 35, (2010) 2514 – 2524
  7. Christian A. Gueymard, Daryl R. Myers, Evaluation of conventional and high-performance routine solar radiation measurements for improved solar resource, climatological trends, and radiative modeling, Solar Energy, 83, (2009) 171–185
  8. Pitz-Paal R., Geuder Norbert, Hoyer-Klick Carsten, Schillings Christoph, 2007, How to get bankable meteodata ? DLR solar resource assessment, NREL 2007 parabolic trough technology workshop, Golden, Colorado, Viewed August 1 2010, <http://www.nrel.gov/csp/troughnet/pdfs/2007/pitz_paal_dlr_solar_resource_assessment.pdf >
  9. Ramachandra T.V., Subramanian D.K, Potential and prospects of solar energy in Uttara Kannada district of Karnataka State, Energy Sources, 19, (1996) 945 – 988  
  10. Kun Yang, Toshio Koike, Baisheng Ye, Improving estimation of hourly, daily, and monthly radiation by importing global data sets, Agricultural and Forest Meteorology, 137, (2006) 43–55
  11.  Xiaoying Liu, Xurong Mei, Yuzhong Li, Qingsuo Wang, Jens Rauns Jensen, Yanqing Zhang, John Roy Porter, Evaluation of temperature-based global solar radiation models in China. Agricultural and Forest Meteorology, 149, (2009) 1433–1446
  12. Liu D.L., Scott B.J., Estimation of solar radiation in Australia from rainfall and temperature observations, Agricultural and Forest Meteorology, 106, (2001) 41–59
  13.  Jimmy S.G.E, Math H.J.B, Simulation of global solar radiation based on cloud observations, Solar Energy, 78, (2005) 157–162
  14.  Ramachandra T.V., Solar energy potential assessment using GIS, Energy Education Science and Technology, 18, Issue 2, (2007) 101-114
  15. Adnan Sozen, Erol Arcaklioglu, Solar potential in Turkey, Applied Energy, 80, (2005) 35 – 45
  16. Kishtawal C.M., Meteorological Satellites, Satellite Remote Sensing and GIS Applications in Agricultural Meteorology, pp. 67-79, viewed August 1 2010 <http://www.wamis.org/agm/pubs/agm8/Paper-4.pdf>
  17. Malik A.Q., Mufti A., Hiser H.W., Veziroglu N.T.and  Kazi L., Application of Geostationary data for determining solar radiation over Pakistan, Renewable Energy, 1, (1991) 455-461
  18. John E. Hay, Satellite based estimates of solar irradiance at the earth's surface - I Modelling approaches, Renewable energy, 3, (1993) 381- 393
  19. Chumnong Sorapipatana, An assessment of solar energy potential in Kampuchea, Renewable and Sustainable Energy Reviews, 14, (2010) 2174–2178
  20. J. Polo, L.F. Zarzalejo, M. Cony, A.A. Navarro , R. Marchante , L. Martın, M. Romero, Solar radiation estimations over India using Meteosat satellite images, Solar Energy, 85, (2011), 2395–2406
  21.  Tanahashi S.,  Kawamura H.,  Matsuura T., Takahashi T, and  Yusa H., Improved estimates of hourly insolation from GMS S-VISSR data, Remote sensing of environment, 74, (2000) 409 – 413
  22.  Cogliani E., Ricchiazzi P. and Maccari A., Generation of operational maps of global solar irradiation on horizontal plan and of direct normal irradiation from meteosat imagery by using SOLARMET, Solar energy, 82, (2008) 556 – 562
  23.  Janjai S.,  Pankaew P. and Laksanaboonsong J., A model for calculating hourly global solar radiation from satellite data, Applied Energy, 86, (2009) 1450 – 1457
  24. Ramachandra T.V., Rishabh J., Gautham K., Hotspots of solar potential in India, Renewable and sustainable energy review, 15(6), (2011) 3178-3186
  25.  Richard Perez, Robert Seals, Antoine Zelenka, Comparing satellite remote sensing and ground network measurements for the production of site/time specific irradiance data,  Solar Energy, f50, (1997) 89-96
  26.  Illera P., Fernfindez A, and Perez A., A simple model for the calculation of global solar radiation using geostationary satellite data, Atmospheric Research, 39, (1995) 79 – 90
  27.  Statistical Data of Himachal Pradesh upto 2009-10, Himachal Pradesh Planning Department, Govt. of Himachal Pradesh, Viewed on August 2, 2010, <http://hpplanning.nic.in/Statistical data of Himachal Pradesh upto 2009-10.pdf>
  28.  SRB Data and Information, Atmospheric Science Data Center, NASA, Viewed August 2, 2010 <http://eosweb.larc.nasa.gov/PRODOCS/srb/table_srb.html>
  29.  Gupta S.K., Wilber A.C., Kratz D.P. aand Stackhouse Jr. P.W., The Langley Parameterized Shortwave Algorithm (LPSA) for Surface Radiation Budget Studies, NASA/TP-2001-211272, 2001
  30.  Gupta S.K., Whitlock C.H., Ritchey N.A. and Wilber A.C., An Algorithm for Longwave Surface Radiation Budget for Total Skies, CERES ATBD Subsystem 4.6.3 , Viewed August 2 2010,   http://ceres.larc.nasa.gov/documents/ATBD/pdf/r2_2/ceres-atbd2.2-s4.6.3.pdf
  31.  NASA/GEWEX Surface Radiation Budget Project, Viewed August 2 2010, <http://gewex-srb.larc.nasa.gov/>
  32. Richard Perez, Pierre Ineichen, Kathy Moore, Marek Kmiecik, Cyril Chain, Ray George, Frank Vignola, A new operational model for satellite-derived irradiances: Description and Validation, Solar Energy, 73 (5),(2002) 307–317
  33. National Renewable Energy Laboratory, Colorado, USA, Viewed September 1, 2011, <http://www.nrel.gov/international/docs/readme_india_solar_maps.txt>
  34. Solar Resource Assessment Methodology for Northwest India, Ministry of New and Renewable Energy, Government of India, Viewed September 1 2011 < http://www.mnre.gov.in/sec/National%20Renewable%20Energy%20Laboratory/contents/pdfs/india_solar_methods_final.pdf>
  35. Andrzej Z. Kotarba, Satellite-derived cloud climatology over high elevation areas based on circulation types: A 2007 analysis of the Tatra Mountains, Physics and chemistry of the earth, 35, (2010) 462 – 468
  36. Himachal Pradesh Finance Department, Viewed September 6 2011,   <http://himachal.nic.in/finance/ES_201011/EconomisSurveyEng1011.pdf>
Citation : Ramachandra. T.V., Gautham Krishnadas and Rishab Jain, 2012. Solar Potential in the Himalayan Landscape., International Scholarly Research Network, ISRN Renwable Energy, Volume 2012, 13 pages.
* Corresponding Author :
  Dr. T.V. Ramachandra
Energy & Wetlands Research Group, Centre for Ecological Sciences, Indian Institute of Science, Bangalore – 560 012, India.
Tel : 91-80-23600985 / 22932506 / 22933099,      Fax : 91-80-23601428 / 23600085 / 23600683 [CES-TVR]
E-mail : cestvr@ces.iisc.ernet.in, energy@ces.iisc.ernet.in,     Web : http://wgbis.ces.iisc.ernet.in/energy
E-mail   |   Sahyadri   |   ENVIS   |   GRASS   |   Energy   |   CES   |   CST   |   CiSTUP   |   IISc   |   E-mail