Estimating the volume and age of water stored in global lakes using a geo-statistical approach

Оценка объёма и возраста воды, хранящейся в глобальных озёрах, с использованием геостатистического подхода
Mathis Messager, Bernhard Lehner, Günther Grill, Irena Nedeva, Oliver Schmitt
2016-12-15

geo-statistical modelglobal lakeshydraulic residence timelake volumespatially resolved database
Abstract Lakes are key components of biogeochemical and ecological processes, thus knowledge about their distribution, volume and residence time is crucial in understanding their properties and interactions within the Earth system. However, global information is scarce and inconsistent across spatial scales and regions. Here we develop a geo-statistical model to estimate the volume of global lakes with a surface area of at least 10 ha based on the surrounding terrain information. Our spatially resolved database shows 1.42 million individual polygons of natural lakes with a total surface area of 2.67 × 10 6 km 2 (1.8% of global land area), a total shoreline length of 7.2 × 10 6 km (about four times longer than the world’s ocean coastline) and a total volume of 181.9 × 10 3 km 3 (0.8% of total global non-frozen terrestrial water stocks). We also compute mean and median hydraulic residence times for all lakes to be 1,834 days and 456 days, respectively.
1
A geo-statistical model estimates the volume and hydraulic residence time of global natural lakes with surface areas of at least 10 hectares.
2
Global natural lakes have an estimated total shoreline length of 7.2 × 10^6 km, approximately four times the world’s ocean coastline.
3
Mean and median hydraulic residence times across global lakes are estimated at 1,834 days and 456 days, respectively.
4
The estimated total lake volume is 181.9 × 10^3 km³, representing 0.8% of global non-frozen terrestrial water stocks.
5
The resulting database contains 1.42 million individual natural-lake polygons covering 2.67 × 10^6 km², equivalent to 1.8% of global land area.

Global natural lakes with a surface area of at least 10 ha

Their spatial distribution, surface area, shoreline length, volume, and hydraulic residence time

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2016-12-15
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Mathis Messager
Bernhard Lehner
Günther Grill
Irena Nedeva
Oliver Schmitt
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