Extending Class A pan evaporation for a shallow lake to simulate the impact of littoral sediment and submerged macrophytes: a case study for Keszthely Bay (Lake Balaton, Hungary)

Extending Class A pan evaporation for a shallow lake to simulate the impact of littoral sediment... •Linear model performed better than tree-based one in predicting pan evaporation Ep.•Higher heat storage of planted pan might lead to growth of ≈20% of their Ep rate.•Overall seasonal crop coefficients exceeded 1.0, as determined for filled up A pan.•Use of pan coefficients increased the E of Bay by more than 10% (≈3 million m3).•Ep of pan with macrophyte was the closest to derived reference Penman-Monteith ET. http://www.deepdyve.com/assets/images/DeepDyve-Logo-lg.png Agricultural and Forest Meteorology Elsevier

Extending Class A pan evaporation for a shallow lake to simulate the impact of littoral sediment and submerged macrophytes: a case study for Keszthely Bay (Lake Balaton, Hungary)

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Publisher
Elsevier
Copyright
Copyright © 2018 Elsevier B.V.
ISSN
0168-1923
D.O.I.
10.1016/j.agrformet.2018.01.001
Publisher site
See Article on Publisher Site

Abstract

•Linear model performed better than tree-based one in predicting pan evaporation Ep.•Higher heat storage of planted pan might lead to growth of ≈20% of their Ep rate.•Overall seasonal crop coefficients exceeded 1.0, as determined for filled up A pan.•Use of pan coefficients increased the E of Bay by more than 10% (≈3 million m3).•Ep of pan with macrophyte was the closest to derived reference Penman-Monteith ET.

Journal

Agricultural and Forest MeteorologyElsevier

Published: Mar 15, 2018

References

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