Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Evaporation Driven by Atmospheric Boundary Layer Processes over a Shallow Saltwater Lagoon in the Altiplano

View through CrossRef
Abstract Observations over a saltwater lagoon in the Altiplano show that evaporation E is triggered at noon, concurrent to the transition of a shallow, stable atmospheric boundary layer (ABL) into a deep mixed layer. We investigate the coupling between the ABL and E drivers using a land–atmosphere conceptual model, observations, and a regional model. Additionally, we analyze the ABL interaction with the aerodynamic and radiative components of evaporation using the Penman equation adapted to saltwater. Our results demonstrate that nonlocal processes are dominant in driving E. In the morning, the ABL is controlled by the local advection of warm air (∼5 K h−1), which results in a shallow (<350 m), stable ABL, with virtually no mixing and no E (<50 W m−2). The warm-air advection ultimately connects the ABL with the residual layer above, increasing the ABL height h by ∼1 km. At midday, a thermally driven regional flow arrives to the lagoon, which first advects a deeper ABL from the surrounding desert (∼1500 m h−1) that leads to an extra ∼700-m h increase. The regional flow also causes an increase in wind (∼12 m s−1) and an ABL collapse due to the entrance of cold air (∼−2 K h−1) with a shallower ABL (∼−350 m h−1). The turbulence produced by the wind decreases the aerodynamic resistance and mixes the water body releasing the energy previously stored in the lake. The ABL feedback on E through vapor pressure enables high evaporation values (∼450 W m−2 at 1430 LT). These results contribute to the understanding of E of water bodies in semiarid conditions and emphasize the importance of understanding ABL processes when describing evaporation drivers.
Title: Evaporation Driven by Atmospheric Boundary Layer Processes over a Shallow Saltwater Lagoon in the Altiplano
Description:
Abstract Observations over a saltwater lagoon in the Altiplano show that evaporation E is triggered at noon, concurrent to the transition of a shallow, stable atmospheric boundary layer (ABL) into a deep mixed layer.
We investigate the coupling between the ABL and E drivers using a land–atmosphere conceptual model, observations, and a regional model.
Additionally, we analyze the ABL interaction with the aerodynamic and radiative components of evaporation using the Penman equation adapted to saltwater.
Our results demonstrate that nonlocal processes are dominant in driving E.
In the morning, the ABL is controlled by the local advection of warm air (∼5 K h−1), which results in a shallow (<350 m), stable ABL, with virtually no mixing and no E (<50 W m−2).
The warm-air advection ultimately connects the ABL with the residual layer above, increasing the ABL height h by ∼1 km.
At midday, a thermally driven regional flow arrives to the lagoon, which first advects a deeper ABL from the surrounding desert (∼1500 m h−1) that leads to an extra ∼700-m h increase.
The regional flow also causes an increase in wind (∼12 m s−1) and an ABL collapse due to the entrance of cold air (∼−2 K h−1) with a shallower ABL (∼−350 m h−1).
The turbulence produced by the wind decreases the aerodynamic resistance and mixes the water body releasing the energy previously stored in the lake.
The ABL feedback on E through vapor pressure enables high evaporation values (∼450 W m−2 at 1430 LT).
These results contribute to the understanding of E of water bodies in semiarid conditions and emphasize the importance of understanding ABL processes when describing evaporation drivers.

Related Results

Will Taiwan lose its lagoon? Effects of sandbar migration and sediment transport on lagoon siltation in Southwest Taiwan
Will Taiwan lose its lagoon? Effects of sandbar migration and sediment transport on lagoon siltation in Southwest Taiwan
Cigu lagoon in Southwest Taiwan is susceptible to disappear due to sandbar migration and sedimentation issues over the past few decades. According to the Water Resources Agency in ...
Evaporation driven by Atmospheric Boundary Layer Processes over a Shallow Salt-Water Lagoon in the Altiplano
Evaporation driven by Atmospheric Boundary Layer Processes over a Shallow Salt-Water Lagoon in the Altiplano
The Chilean Altiplano is a region composed by endorheic basins immersed in a complex topography. These basins are predominantly characterized by desert surfaces in which small-scal...
Assessment of some key indicators of the ecological status of an African freshwater lagoon (Lagoon Aghien, Ivory Coast)
Assessment of some key indicators of the ecological status of an African freshwater lagoon (Lagoon Aghien, Ivory Coast)
The supply of drinking water is a vital challenge for the people who live on the African continent, as this continent is experiencing strong demographic growth and therefore increa...
OCEANOGRAPHIC OBSERVATIONS IN THE LAGOON OF KAIAFA (W PELOPONNESE)
OCEANOGRAPHIC OBSERVATIONS IN THE LAGOON OF KAIAFA (W PELOPONNESE)
The Kaifa lagoon is a coastal marine ecosystem located in the Kyparisiakos Bay. The purpose of this study is to: (a) To determine the spatial and temporal changes of the physicoche...
Mixing Experimental Study on Water-rock Interaction (WRI) in the Inland Shallow Salt Groundwater Area
Mixing Experimental Study on Water-rock Interaction (WRI) in the Inland Shallow Salt Groundwater Area
The shallow salt groundwater is widely distributed in North Shandong, which makes it difficult for people and livestock to drink daily. In addtion, the genetic mechanism of shallow...
Practice of Ultra-Deepwater Shallow Well Construction in Nature Gas Hydrate and Shallow Gas Formation
Practice of Ultra-Deepwater Shallow Well Construction in Nature Gas Hydrate and Shallow Gas Formation
Abstract Due to the large water depth and geological structure, a large amount of nature gas hydrate (NGH) and shallow gas are buried in the shallow layer in the dee...
Saltwater reduces CO 2 and CH 4 production in organic soils from a coastal freshwater forested wetland
Saltwater reduces CO 2 and CH 4 production in organic soils from a coastal freshwater forested wetland
Abstract. A major concern for coastal freshwater wetland function and health is saltwater intrusion and the potential impacts on greenhouse gas production. Coastal freshwater wetla...
Detectability of an intermediate layer by magnetotelluric sounding
Detectability of an intermediate layer by magnetotelluric sounding
Abstract The recent publication by Verma and Mallick (1979) on the detectability of an intermediate layer by time domain EM sounding provides some informative ans...

Back to Top