Sushovan Ghosh
Biographic Data
| ID | 7997815 |
|---|---|
| NAME | Sushovan Ghosh |
| GIVEN NAMES | Sushovan |
| FAMILY NAME | Ghosh |
| SIGNATURE | GHOSH S |
| AFFILIATIONS | Indian Institute of Technology Delhi |
| ORCID | 0000-0002-0536-0983 |
| VERIFIED | Yes |
| TOTAL WORKS | 3 |
| TOTAL CITATIONS | 0 |
| AUTHOR COUNT | 3 |
| EDITOR COUNT | 0 |
| FIRST PUBLICATION YEAR | 2022 |
| LATEST PUBLICATION YEAR | 2026 |
| H-INDEX | 0 |
Mapping Urban Energy Transitions: Decoding Solar PV Potential, Energy Burden, and Socio-Demographic Dimensions in the Athens Metropolitan Area
Urban energy transitions require spatially explicit diagnostics that integrate renewable potential, consumption patterns, and socio-demographic determinants. This study presents a comprehensive framework for assessing rooftop photovoltaic (PV) adequacy, energy burden, and CO2-equivalent emission savings across all municipalities in the Athens Metropolitan Area (AMA). Using high-resolution three-dimensional radiative modeling and Earth observation…
Future photovoltaic potential in India: Navigating the interplay between air pollution control and climate change mitigation
India has set ambitious solar energy targets to meet its climate commitments. However, climate change, already evident in the country, poses significant challenges to solar power generation. Therefore, assessing the impact of climate change on future photovoltaic potential in India is essential. This study evaluates the mid-century (2041–2050) solar photovoltaic potential across Indian power grids using CMIP6 models under two scenarios: SSP2-4.5 …
Cleaner air would enhance India’s annual solar energy production by 6–28 TWh
India has set a target of 100 GW solar installation capacity by the year 2022. However, the loss of solar energy due to environmental factors like air pollution is not properly considered in renewable energy resource assessments. Here we show that India lost 29% of its utilizable global horizontal irradiance potential due to air pollution between 2001 and 2018. The average loss in output incurred by solar power systems with horizontal, fixed-tilt…
No prominent works on this page.
Cleaner air would enhance India’s annual solar energy production by 6–28 TWh
India has set a target of 100 GW solar installation capacity by the year 2022. However, the loss of solar energy due to environmental factors like air pollution is not properly considered in renewable energy resource assessments. Here we show that India lost 29% of its utilizable global horizontal irradiance potential due to air pollution between 2001 and 2018. The average loss in output incurred by solar power systems with horizontal, fixed-tilt…
Future photovoltaic potential in India: Navigating the interplay between air pollution control and climate change mitigation
India has set ambitious solar energy targets to meet its climate commitments. However, climate change, already evident in the country, poses significant challenges to solar power generation. Therefore, assessing the impact of climate change on future photovoltaic potential in India is essential. This study evaluates the mid-century (2041–2050) solar photovoltaic potential across Indian power grids using CMIP6 models under two scenarios: SSP2-4.5 …
Mapping Urban Energy Transitions: Decoding Solar PV Potential, Energy Burden, and Socio-Demographic Dimensions in the Athens Metropolitan Area
Urban energy transitions require spatially explicit diagnostics that integrate renewable potential, consumption patterns, and socio-demographic determinants. This study presents a comprehensive framework for assessing rooftop photovoltaic (PV) adequacy, energy burden, and CO2-equivalent emission savings across all municipalities in the Athens Metropolitan Area (AMA). Using high-resolution three-dimensional radiative modeling and Earth observation…
Energy and Environment Impacts (3 works) · Air pollution (2 works) · Energy, Environment, and Transportation Policies (2 works) · Engineering (2 works) · Environmental Engineering (2 works) · Environmental Science (2 works) · Photovoltaic system (2 works) · Solar energy (2 works) · Solar Radiation and Photovoltaics (2 works) · Climate change (1 works)