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020 ▼a 9780438294370
035 ▼a (MiAaPQ)AAI10745619
035 ▼a (MiAaPQ)uci:14937
040 ▼a MiAaPQ ▼c MiAaPQ ▼d 247004
0820 ▼a 551
1001 ▼a Purdy, Adam Jacob.
24510 ▼a Improvements to and Applications of Remotely Sensed Evapotranspiration.
260 ▼a [S.l.]: ▼b University of California, Irvine., ▼c 2018.
260 1 ▼a Ann Arbor: ▼b ProQuest Dissertations & Theses, ▼c 2018.
300 ▼a 163 p.
500 ▼a Source: Dissertation Abstracts International, Volume: 80-01(E), Section: B.
500 ▼a Adviser: James S. Famiglietti.
5021 ▼a Thesis (Ph.D.)--University of California, Irvine, 2018.
520 ▼a Evapotranspiration is one of the largest fluxes in the terrestrial water cycle, and also impacts the surface energy budget and the carbon cycle. In this dissertation, I explore how the surface energy budget contributes to ET uncertainty, I apply
520 ▼a First, the differences of ground heat flux models are evaluated against 88 locations with in situ observations. I discuss the mechanisms which control ground heat flux and quantify how errors in this measurement have the potential to impact evap
520 ▼a Second, I apply integrated observations of soil moisture and evapotranspiration to improve a satellite-based evapotranspiration algorithm. I demonstrate how observations from soil moisture improve evapotranspiration estimates in water-limited re
520 ▼a Overall, this dissertation advances remote sensing evapotranspiration algorithms through quantifying the uncertainty contribution from ground heat flux models and provides a new relationship to link soil moisture observations to evapotranspirati
590 ▼a School code: 0030.
650 4 ▼a Hydrologic sciences.
650 4 ▼a Remote sensing.
690 ▼a 0388
690 ▼a 0799
71020 ▼a University of California, Irvine. ▼b Earth System Science.
7730 ▼t Dissertation Abstracts International ▼g 80-01B(E).
773 ▼t Dissertation Abstract International
790 ▼a 0030
791 ▼a Ph.D.
792 ▼a 2018
793 ▼a English
85640 ▼u http://www.riss.kr/pdu/ddodLink.do?id=T14996862 ▼n KERIS ▼z 이 자료의 원문은 한국교육학술정보원에서 제공합니다.
980 ▼a 201812 ▼f 2019
990 ▼a ***1012033