Arid
DOI10.5194/hess-22-1135-2018
Dead Sea evaporation by eddy covariance measurements vs. aerodynamic, energy budget, Priestley-Taylor, and Penman estimates
Metzger, Jutta1; Nied, Manuela1; Corsmeier, Ulrich1; Kleffmann, Joerg2; Kottmeier, Christoph1
通讯作者Metzger, Jutta
来源期刊HYDROLOGY AND EARTH SYSTEM SCIENCES
ISSN1027-5606
EISSN1607-7938
出版年2018
卷号22期号:2页码:1135-1155
英文摘要

The Dead Sea is a terminal lake, located in an arid environment. Evaporation is the key component of the Dead Sea water budget and accounts for the main loss of water. So far, lake evaporation has been determined by indirect methods only and not measured directly. Consequently, the governing factors of evaporation are unknown. For the first time, long-term eddy covariance measurements were performed at the western Dead Sea shore for a period of 1 year by implementing a new concept for onshore lake evaporation measurements. To account for lake evaporation during offshore wind conditions, a robust and reliable multiple regression model was developed using the identified governing factors wind velocity and water vapour pressure deficit. An overall regression coefficient of 0.8 is achieved. The measurements show that the diurnal evaporation cycle is governed by three local wind systems: a lake breeze during daytime, strong downslope winds in the evening, and strong northerly along-valley flows during the night. After sunset, the strong winds cause half-hourly evaporation rates which are up to 100% higher than during daytime. The median daily evaporation is 4.3 mm d(-1) in July and 1.1 mm d(-1) in December. The annual evaporation of the water surface at the measurement location was 994 +/- 88 mm a(-1) from March 2014 until March 2015. Furthermore, the performance of indirect evaporation approaches was tested and compared to the measurements. The aerodynamic approach is applicable for subdaily and multi-day calculations and attains correlation coefficients between 0.85 and 0.99. For the application of the Bowen ratio energy budget method and the Priestley-Taylor method, measurements of the heat storage term are inevitable on timescales up to 1 month. Otherwise strong seasonal biases occur. The Penman equation was adapted to calculate realistic evaporation, by using an empirically gained linear function for the heat storage term, achieving correlation coefficients between 0.92 and 0.97. In summary, this study introduces a new approach to measure lake evaporation with a station located at the shoreline, which is also transferable to other lakes. It provides the first directly measured Dead Sea evaporation rates as well as applicable methods for evaporation calculation. The first one enables us to further close the Dead Sea water budget, and the latter one enables us to facilitate water management in the region.


类型Article
语种英语
国家Germany
收录类别SCI-E
WOS记录号WOS:000424705400002
WOS关键词SONIC ANEMOMETER ; BALANCE CLOSURE ; WATER BODIES ; LAKE ; SURFACE ; HEAT ; FLUX ; TEMPERATURE ; ENVIRONMENT ; RESERVOIR
WOS类目Geosciences, Multidisciplinary ; Water Resources
WOS研究方向Geology ; Water Resources
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/209922
作者单位1.KIT, Inst Meteorol & Climate Res, POB 3640, D-76021 Karlsruhe, Germany;
2.Berg Univ Wuppertal, Fak Math & Nat Wissensch, Phys & Theoret Chem, D-42097 Wuppertal, Germany
推荐引用方式
GB/T 7714
Metzger, Jutta,Nied, Manuela,Corsmeier, Ulrich,et al. Dead Sea evaporation by eddy covariance measurements vs. aerodynamic, energy budget, Priestley-Taylor, and Penman estimates[J],2018,22(2):1135-1155.
APA Metzger, Jutta,Nied, Manuela,Corsmeier, Ulrich,Kleffmann, Joerg,&Kottmeier, Christoph.(2018).Dead Sea evaporation by eddy covariance measurements vs. aerodynamic, energy budget, Priestley-Taylor, and Penman estimates.HYDROLOGY AND EARTH SYSTEM SCIENCES,22(2),1135-1155.
MLA Metzger, Jutta,et al."Dead Sea evaporation by eddy covariance measurements vs. aerodynamic, energy budget, Priestley-Taylor, and Penman estimates".HYDROLOGY AND EARTH SYSTEM SCIENCES 22.2(2018):1135-1155.
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