The hydrodynamics within small boreal lakes have rarely been studied, yet knowing whether turbulence at the air-water interface and in the water column scales with metrics developed elsewhere is essential for computing metabolism and fluxes of climate-forcing trace gases. We instrumented a humic, 4.7 ha, boreal lake with two meteorological stations, three thermistor arrays, an infrared (IR) camera to quantify surface divergence, obtained turbulence as dissipation rate of turbulent kinetic energy (epsilon) using an acoustic Doppler velocimeter and a temperature-gradient microstructure profiler, and conducted chamber measurements for short periods to obtain fluxes and gas transfer velocities (k). Near-surface epsilon varied from 10(-8) to 10(...
Lake-induced atmospheric circulations over three lakes ranging from 3 to 10 km width are analyzed us...
Measurements of the gas transfer rate of CO2 between lake water and the atmosphere present a critica...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/94821/1/jgrd10025.pd
The hydrodynamics within small boreal lakes have rarely been studied, yet knowing whether turbulence...
The hydrodynamics within small boreal lakes have rarely been studied, yet knowing whether turbulence...
The hydrodynamics within small boreal lakes have rarely been studied, yet knowing whether turbulence...
High-frequency physical observations from 40 temperate lakes were used to examine the relative contr...
Inland waters, such as lakes, reservoirs and rivers, are important sources of climate forcing trace ...
Quantifying the interaction of the atmosphere and water surfaces is of great importance for water re...
The gas transfer velocity (k) is a major source of uncertainty when assessing the magnitude of lake ...
Nocturnal land breezes and daytime lake breezes are studied using data collected by the Canadian Twi...
Freshwaters bring a notable contribution to the global carbon budget by emitting both carbon dioxide...
Lake-induced atmospheric circulations over three lakes ranging from 3 to 10 km width are analyzed us...
Freshwaters bring a notable contribution to the global carbon budget by emitting both carbon dioxide...
Aim: in this article, we describe the energetics and dynamics of small-scale turbulence and mixing i...
Lake-induced atmospheric circulations over three lakes ranging from 3 to 10 km width are analyzed us...
Measurements of the gas transfer rate of CO2 between lake water and the atmosphere present a critica...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/94821/1/jgrd10025.pd
The hydrodynamics within small boreal lakes have rarely been studied, yet knowing whether turbulence...
The hydrodynamics within small boreal lakes have rarely been studied, yet knowing whether turbulence...
The hydrodynamics within small boreal lakes have rarely been studied, yet knowing whether turbulence...
High-frequency physical observations from 40 temperate lakes were used to examine the relative contr...
Inland waters, such as lakes, reservoirs and rivers, are important sources of climate forcing trace ...
Quantifying the interaction of the atmosphere and water surfaces is of great importance for water re...
The gas transfer velocity (k) is a major source of uncertainty when assessing the magnitude of lake ...
Nocturnal land breezes and daytime lake breezes are studied using data collected by the Canadian Twi...
Freshwaters bring a notable contribution to the global carbon budget by emitting both carbon dioxide...
Lake-induced atmospheric circulations over three lakes ranging from 3 to 10 km width are analyzed us...
Freshwaters bring a notable contribution to the global carbon budget by emitting both carbon dioxide...
Aim: in this article, we describe the energetics and dynamics of small-scale turbulence and mixing i...
Lake-induced atmospheric circulations over three lakes ranging from 3 to 10 km width are analyzed us...
Measurements of the gas transfer rate of CO2 between lake water and the atmosphere present a critica...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/94821/1/jgrd10025.pd