Yenni Vetrita
Dados Biográficos
| ID | 7992822 |
|---|---|
| NOME | Yenni Vetrita |
| PRENOMES | Yenni |
| SOBRENOME | Vetrita |
| ASSINATURA | VETRITA Y |
| AFILIAÇÕES | Indonesian National Institute of Aeronautics and Space |
| ORCID | 0000-0002-1619-8336 |
| VERIFICADO | Sim |
| TOTAL DE OBRAS | 4 |
| TOTAL DE CITAÇÕES | 0 |
| TOTAL COMO AUTOR | 4 |
| TOTAL COMO EDITOR | 0 |
| PRIMEIRO ANO DE PUBLICAÇÃO | 2015 |
| ANO MAIS RECENTE DE PUBLICAÇÃO | 2021 |
| ÍNDICE H | 0 |
Drainage canal impacts on smoke aerosol emissions for Indonesian peatland and non-peatland fires
Indonesia has experienced frequent fires due to the lowering of groundwater levels caused by drainage via extensive canal networks for agricultural development since the 1970s. However, the impact of canals on fire emissions is still poorly understood. Here we investigate canal impacts on smoke aerosol emissions for Indonesian peatland and non-peatland fires by quantifying the resulting changes of smoke aerosol emission coefficient (Ce) that repr…
Beyond slash‐and‐burn
Near‐annual landscape‐scale fires in Indonesia's peatlands have caused severe air pollution, economic losses, and health impacts for millions of Southeast Asia residents. While the extent of fires across the peatland surface has been widely attributed to widespread peatland drainage for plantation agriculture, fires that transition from surface into sub‐surface soil‐based fires are the source of the most dangerous air pollution. Yet the mechanism…
Evaluating accuracy of four Modis-derived burned area products for tropical peatland and non-peatland fires
Satellite-based burned area products are accurate for many regions. However, only limited assessments exist for Indonesia despite extensive burning and globally important carbon emissions. We evaluated the accuracy of four MODIS-derived (moderate resolution imaging spectroradiometer) burned area products (MCD45A1 collection 5.1, MCD64A1 (collection 5.1 and 6), FireCCI51), and their sensitivity to burned-area size and temporal window length used f…
Long-wave infrared identification of smoldering peat fires in Indonesia with nighttime Landsat data
Smoldering peat fires in Indonesia are responsible for large quantities of trace gas and particulate emissions. However, to date no satellite remote sensing technique has been demonstrated for the identification of smoldering peat fires. Fires have two distinct combustion phases: a high temperature flaming and low temperature smoldering phases. The flaming phase temperature is approximately twice that of the smoldering phase. This temperature dif…
Sem obras proeminentes nesta página.
Long-wave infrared identification of smoldering peat fires in Indonesia with nighttime Landsat data
Smoldering peat fires in Indonesia are responsible for large quantities of trace gas and particulate emissions. However, to date no satellite remote sensing technique has been demonstrated for the identification of smoldering peat fires. Fires have two distinct combustion phases: a high temperature flaming and low temperature smoldering phases. The flaming phase temperature is approximately twice that of the smoldering phase. This temperature dif…
Beyond slash‐and‐burn
Near‐annual landscape‐scale fires in Indonesia's peatlands have caused severe air pollution, economic losses, and health impacts for millions of Southeast Asia residents. While the extent of fires across the peatland surface has been widely attributed to widespread peatland drainage for plantation agriculture, fires that transition from surface into sub‐surface soil‐based fires are the source of the most dangerous air pollution. Yet the mechanism…
Evaluating accuracy of four Modis-derived burned area products for tropical peatland and non-peatland fires
Satellite-based burned area products are accurate for many regions. However, only limited assessments exist for Indonesia despite extensive burning and globally important carbon emissions. We evaluated the accuracy of four MODIS-derived (moderate resolution imaging spectroradiometer) burned area products (MCD45A1 collection 5.1, MCD64A1 (collection 5.1 and 6), FireCCI51), and their sensitivity to burned-area size and temporal window length used f…
Drainage canal impacts on smoke aerosol emissions for Indonesian peatland and non-peatland fires
Indonesia has experienced frequent fires due to the lowering of groundwater levels caused by drainage via extensive canal networks for agricultural development since the 1970s. However, the impact of canals on fire emissions is still poorly understood. Here we investigate canal impacts on smoke aerosol emissions for Indonesian peatland and non-peatland fires by quantifying the resulting changes of smoke aerosol emission coefficient (Ce) that repr…
Environmental Science (4 obras) · Geography (4 obras) · Geology (4 obras) · Peat (4 obras) · Atmospheric sciences (3 obras) · Fire effects on ecosystems (3 obras) · Meteorology (3 obras) · Atmospheric and Environmental Gas Dynamics (2 obras) · Ecology (2 obras) · Flood Risk Assessment and Management (2 obras)