¿Tejados verdes o placas fotovoltáicas en los tejados?

¿Por qué elegir? Combinar placas solares con vegetación en los tejados incrementa el rendimiento de las placas hasta en un 20% en los momentos pico:

Además, es #solarpunk as fuck.

https://www.abc.net.au/news/2021-08-24/nsw-green-roofs-make-solar-panels-more-efficient/100400552

Study finds green roofs make solar panels more efficient

Researchers say green roofs could make Australian cities more liveable and reduce the impact of climate change while increasing biodiversity.

ABC News

Y si esto os gusta, permitidme que os presente el mundo de las #agrivoltaics, combinación de agricultura y placas solares con beneficios para ambos y totalmente solarpunk, porque esta es una cuenta de apreciación del solarpunk.

https://sci-hub.ru/10.1038/s41893-019-0364-5

@Shine_McShine Dos más para tu colección, esta vez sobre masas de agua, caudales y embalses.

1. Los canales de agua pierden por evaporación una cantidad enorme de este líquido tan escaso. Pero hay formas de reducir esas pérdidas, una de ellas el colocar paneles solares a lo largo del canal. Recientes investigaciones han descubierto que no solo se evapora menos agua, sino que el canal actúa como sistema de refrigeración pasivo para las placas solares, y estas producen más energía durante más tiempo. Obviamente, esto no sirve para los ríos, solo para canales.
https://www.nature.com/articles/s41893-021-00693-8.epdf

Energy and water co-benefits from covering canals with solar panels | Nature Sustainability

Solar power development over canals is an emerging response to the energy–water–food nexus that can result in multiple benefits for water and energy infrastructure. Case studies of over-canal solar photovoltaic arrays have demonstrated enhanced photovoltaic performance due to the cooler microclimate next to the canal. In addition, shade from the photovoltaic panels has been shown to mitigate evaporation and potentially mitigate aquatic weed growth. However, the evaporation savings and financial co-benefits have not been quantified across major canal systems. Here we use regional hydrologic and techno-economic simulations of solar photovoltaic panels covering California’s 6,350 km canal network, which is the world’s largest conveyance system and covers a wide range of climates, insolation rates and water costs. We find that over-canal solar could reduce annual evaporation by an average of 39 ± 12 thousand m3 per km of canal. Furthermore, the financial benefits from shading the canals outweigh the added costs of the cable-support structures required to span the canals. The net present value of over-canal solar exceeds conventional overground solar by 20–50%, challenging the convention of leaving canals uncovered and calling into question our understanding of the most economic locations for solar power. Over-canal solar photovoltaic arrays are likely to reduce water evaporation and carry financial co-benefits, but estimates are lacking. With hydrologic and techno-economic simulations of solar panels covering California’s canal network, this study shows the advantages of covering canals with solar panels.

News Release: NREL Details Great Potential for Floating PV Systems