Title :
Studying mountain glacier processes using a staring instrument
Author :
Donnellan, A. ; Bills, B. ; Green, J.J. ; Goullioud, Renaud ; Jones, Simon ; Knight, R. ; Underhill, Matthew ; Goguen, Jay ; De Jong, E.M. ; Ansar, Adnan ; Hallet, Bernard ; Thompson, Lachlan ; Scambos, Ted ; Gardner, Alex S. ; Morin, P. ; Ekholm, Jared
Author_Institution :
Jet Propulsion Lab., California Inst. of Technol., Pasadena, CA, USA
Abstract :
Mountain glaciers around the globe are retreating rapidly, but the exact mechanisms causing the retreat are not well understood. Is warming of the atmosphere the key driver? What are the roles of changes in surface albedo due to contaminants and snow optical grain size and surface roughness? Improved understanding of the response of mountain glaciers to global and environmental change is key to answering these questions. A staring instrument that provides measurements from multiple viewing and illumination angles enables simultaneous measurement of 3D surface structure, including texture, material characteristics, and albedo. Such measurements make it possible to determine melt due to absorbed solar energy separately from melt due to other sources. The International Space Station (ISS) provides a possible host platform for a staring instrument that could access all tropical and most temperate mountain glaciers. The non-sun-synchronous orbit enables varying solar illumination angles.
Keywords :
albedo; glaciology; global warming; grain size; hydrological equipment; melting; snow; 3D surface structure measurement; ISS; International Space Station; atmosphere warming; contaminants; environmental change; material characteristics; mountain glacier; nonsun-synchronous orbit; optical grain size; snow; solar energy absorbption; solar illumination angles; surface albedo; surface roughness; texture; Extraterrestrial measurements; Ice; Lighting; Rough surfaces; Snow; Surface topography; Surface treatment;
Conference_Titel :
Aerospace Conference, 2014 IEEE
Conference_Location :
Big Sky, MT
Print_ISBN :
978-1-4799-5582-4
DOI :
10.1109/AERO.2014.6836284