Assessing Evapotranspiration Changes in Response to Cropland Expansion in Tropical Climates

被引:0
|
作者
Laipelt, Leonardo [1 ]
Rossi, Julia Brusso [1 ]
de Andrade, Bruno Comini [1 ]
Scherer-Warren, Morris [2 ]
Ruhoff, Anderson [1 ]
机构
[1] Univ Fed Rio Grande do Sul, Inst Pesquisas Hidraul, BR-91501970 Porto Alegre, RS, Brazil
[2] Agencia Nacl Aguas & Saneamento Basico ANA, BR-70610200 Brasilia, DF, Brazil
关键词
S & atilde; o Marcos River Basin; surface energy balance model; remote sensing; ENERGY-BALANCE; LAND-USE; SATELLITE; ALGORITHM; AMAZON; FIELD; DEFORESTATION; CALIBRATION; MANAGEMENT; IMPACTS;
D O I
10.3390/rs16183404
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
The expansion of cropland in tropical regions has significantly accelerated in recent decades, triggering an escalation in water demand and changing the total water loss to the atmosphere (evapotranspiration). Additionally, the increase in areas dedicated to agriculture in tropical climates coincides with an increased frequency of drought events, leading to a series of conflicts among water users. However, detailed studies on the impacts of changes in water use due to agriculture expansion, including irrigation, are still lacking. Furthermore, the higher presence of clouds in tropical environments poses challenges for the availability of high-resolution data for vegetation monitoring via satellite images. This study aims to analyze 37 years of agricultural expansion using the Landsat collection and a satellite-based model (geeSEBAL) to assess changes in evapotranspiration resulting from cropland expansion in tropical climates, focusing on the S & atilde;o Marcos River Basin in Brazil. It also used a methodology for estimating daily evapotranspiration on days without satellite images. The results showed a 34% increase in evapotranspiration from rainfed areas, mainly driven by soybean cultivation. In addition, irrigated areas increased their water use, despite not significantly changing water use at the basin scale. Conversely, natural vegetation areas decreased their evapotranspiration rates by 22%, suggesting possible further implications with advancing changes in land use and land cover. Thus, this study underscores the importance of using satellite-based evapotranspiration estimates to enhance our understanding of water use across different land use types and scales, thereby improving water management strategies on a large scale.
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页数:15
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