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Are Water Level Fluctuations and Pelagic Water Quality in Lake Kinneret Directly Related? Perspectives of Nutrient Dynamics
by
Gophen, Moshe
in
Altitude
/ Chloride
/ Climate change
/ evaporation
/ Hydrology
/ Laboratories
/ lakes
/ Load
/ Nitrates
/ Nitrogen
/ Nutrients
/ Phosphorus
/ rain
/ Regression analysis
/ Salinity
/ Sediments
/ subtropics
/ Summer
/ temperature
/ Trends
/ water
/ Water quality
/ Water shortages
/ Water supply
/ Winter
2023
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Are Water Level Fluctuations and Pelagic Water Quality in Lake Kinneret Directly Related? Perspectives of Nutrient Dynamics
by
Gophen, Moshe
in
Altitude
/ Chloride
/ Climate change
/ evaporation
/ Hydrology
/ Laboratories
/ lakes
/ Load
/ Nitrates
/ Nitrogen
/ Nutrients
/ Phosphorus
/ rain
/ Regression analysis
/ Salinity
/ Sediments
/ subtropics
/ Summer
/ temperature
/ Trends
/ water
/ Water quality
/ Water shortages
/ Water supply
/ Winter
2023
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Do you wish to request the book?
Are Water Level Fluctuations and Pelagic Water Quality in Lake Kinneret Directly Related? Perspectives of Nutrient Dynamics
by
Gophen, Moshe
in
Altitude
/ Chloride
/ Climate change
/ evaporation
/ Hydrology
/ Laboratories
/ lakes
/ Load
/ Nitrates
/ Nitrogen
/ Nutrients
/ Phosphorus
/ rain
/ Regression analysis
/ Salinity
/ Sediments
/ subtropics
/ Summer
/ temperature
/ Trends
/ water
/ Water quality
/ Water shortages
/ Water supply
/ Winter
2023
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Are Water Level Fluctuations and Pelagic Water Quality in Lake Kinneret Directly Related? Perspectives of Nutrient Dynamics
Journal Article
Are Water Level Fluctuations and Pelagic Water Quality in Lake Kinneret Directly Related? Perspectives of Nutrient Dynamics
2023
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Overview
Long-term records of Water Level Fluctuations (WLF) and nutrient dynamics in Lake Kinneret have indicated an independence between them. The winter’s high WLF with nutrient-rich conditions and the summer’s low WLF with nutrient-poor conditions are recurrent states. Are Water Level Fluctuations and Lake Kinneret’s pelagic water quality related directly or indirectly? Overall, the results found that WLF and nutrient dynamics in the pelagic zone of Lake Kinneret are not co-partners, but independent escorts. The common periodical (monthly) distribution of nutrient concentrations in the epilimnion of Lake Kinneret indicates that a 20 m deep epilimnion formed following a decline in water input, temperature, and evaporation elevation, resulting in the decline of WL. There was a seasonal correlation between summer’s natural conditions and pelagic nutrients’ deficiency. Low WL in summer is the result of natural subtropical climate conditions, whilst dry or high rainfall seasons induce water input modification and consequently, the WL decline of nutrient inputs and independent followers.
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