File:Brazil PVOUT Photovoltaic-power-potential-map lang-PT GlobalSolarAtlas World-Bank-Esmap-Solargis.png
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[edit]DescriptionBrazil PVOUT Photovoltaic-power-potential-map lang-PT GlobalSolarAtlas World-Bank-Esmap-Solargis.png |
Português: Énergie solaire : Energia solar: POTENCIAL DE ENERGIA FOTOVOLTAICA (PVOUT) - este mapa fornece um resumo do potencial estimado de geração de energia solar fotovoltaica (PV). Representa a média de longo prazo dos totais diários/anuais de produção de eletricidade de uma usina de energia solar fotovoltaica de 1 kW-pico conectada à rede. A configuração do sistema PV consiste em estruturas autônomas instaladas no solo, com módulos PV de silício cristalino montados em posição fixa e inclinação ideal para maximizar o rendimento anual de energia. Pressupõe-se o uso de inversores de alta eficiência. O cálculo da eletricidade solar é baseado em dados de recursos solares de alta resolução e software de modelagem fotovoltaica fornecido pela Solargis. O cálculo leva em consideração a radiação solar, a temperatura do ar e o terreno para simular a conversão e as perdas de energia nos módulos fotovoltaicos e em outros componentes de uma usina fotovoltaica. Na simulação, as perdas devido a manchas e acúmulo de sujeira foram estimadas em 3,5%. O efeito cumulativo das outras perdas de conversão (sombreamento entre fileiras, incompatibilidade, inversores, cabos, transformador, etc.) foi adotado como 7,5%. Considerou-se para a usina uma disponibilidade de 100%. O banco de dados de recursos solares subjacente é calculado a partir de dados atmosféricos e de satélite com intervalos de 15 e 30 minutos e resolução espacial nominal de 1 km. Mais detalhes disponíveis em: https://globalsolaratlas.info.
English: Solar energy: PHOTOVOLTAIC POWER POTENTIAL (PVOUT) - this map provides a summary of estimated solar photovoltaic (PV) power generation potential. It represents the long-term average of daily/yearly totals of electricity production from a 1 kW-peak grid-connected solar PV power plant. The PV system configuration consists of ground-based, free-standing structures with crystalline-silicon PV modules mounted at a fixed position, with optimum tilt to maximize yearly energy yield. Use of high efficiency inverters is assumed. The solar electricity calculation is based on high-resolution solar resource data and PV modeling software provided by Solargis. The calculation takes into account solar radiation, air temperature, and terrain, to simulate the energy conversion and losses in the PV modules and other components of a PV power plant. In the simulation, losses due to dirt and soiling was estimated to be 3.5%. The cumulative effect of other conversion losses (inter-row shading, mismatch, inverters, cables, transformer, etc.) is assumed to be 7.5%. The power plant availability is considered to be 100%. The underlying solar resource database is calculated from atmospheric and satellite data with a 15-minute and 30-minute time step, and a nominal spatial resolution of 1 km. Further details available at: https://globalsolaratlas.info. |
Date | |
Source | https://globalsolaratlas.info/downloads |
Author | Solargis |
Attribution (required by the license) InfoField | © The World Bank, Source: Global Solar Atlas 2.0, Solar resource data: Solargis / |
InfoField | © The World Bank, Source: Global Solar Atlas 2.0, Solar resource data: Solargis |
The World Bank Group has published this solar resource map using data from the Global Solar Atlas (GSA), to support the scale-up of solar power in our client countries. This work is funded by the Energy Sector Management Assistance Program (ESMAP), a multi-donor trust fund administered by The World Bank and supported by 18 donor partners. It is part of a global ESMAP initiative on Renewable Energy Resource Mapping that covers biomass, hydropower, solar and wind. This map has been prepared by Solargis, under contract to The World Bank, based on a solar resource database that Solargis owns and maintains. To obtain additional maps and information, please visit: http://globalsolaratlas.info.
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