Spatio-temporal variation of land surface temperature and temperature lapse rate over mountainous Kashmir Himalaya

Author:

Romshoo Shakil AhmadORCID,Rafiq MohammdORCID,Rashid IrfanORCID

Publisher

Springer Science and Business Media LLC

Subject

Nature and Landscape Conservation,Earth-Surface Processes,Geology,Geography, Planning and Development,Global and Planetary Change

Reference85 articles.

1. Adnan M, Nabi G, Poomee MS, Ashraf A (2016) Snowmelt runoff prediction under changing climate in the Himalayan Cryosphere: a case of Gilgit River Basin. Geoscience Frontiers. https://doi.org/10.1016/j.gsf.2016.08.008

2. Anderson MC, Allen RG, Morse A, Kustas WP (2012) Use of Landsat thermal imagery in monitoring evapotranspiration and managing water resources. Remote Sensing of Environment 122:50–65. https://doi.org/10.1016/j.rse.2011. 08.025

3. Anderson S (2002) An evaluation of spatial interpolation methods on air temperature in Phoenix, AZ. Available online: http://www.cobblestoneconcepts.com/ucgis2summer/anders on/anderson.htm, accessed on 1 November 2015.

4. Apaydin H, Sonmez FK, Yildirim YE (2004) Spatial interpolation techniques for climate data in the GAP region in Turkey. Climate Research 28(1):31–40. http://doi.org/10.3354/cr028031

5. Arnold NS, Willis IC, Sharp MJ, et al. (1996) A distributed surface energy–balance model for a small valley glacier. Journal of Glaciology 42(140): 77–89. https://doi.org/10.3189/S0022143000030549

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