Solar radiation in forested urban environments with dry climate. Case: Metropolitan Area of Mendoza, Argentina

Authors

  • Mariela Edith Arboit CONICET
  • Ernesto Simon Betman CONICET

Abstract

The aim of this work is to advance the understanding of the solar potential of urban residential environments which, by their morphology, and the impact of urban trees, present values of irradiance very different from full solar collection. Morphological variables of urban settings and urban trees, a very distinctive feature of the Mendoza Metropolitan Area (MMA), have a fundamental impact on the feasibility of implementing strategies for solar energy utilization in urban environments. The results achieved will contribute to modify and gradually update urban and building legislation to implement higher levels of energy efficiency and minimum environmental impacts. This work proposes to study the potential of solar collection in urban environments, analyzing eleven urban configurations selected according to their building and urban morphological characteristics. Methodologically, we have monitored the global solar irradiance on vertical plane on northern facades, completely sunny and partly sunny, affected by solid masking and arboreal masking. Results obtained so far indicate that solar masking is critical for vertical surfaces, with a reduction of the available solar energy between 2% and 66% in the winter season. However, these drawbacks caused by urban trees are compensated by benefits in the warm season: controlling the intensity of the urban heat island, absorption of pollutants, cooling and humidifying the air through evapotranspiration, reducing thermal loads of buildings, occupancy of public open spaces, and an invaluable contribution to the urban aesthetic.

Keywords:

Sustainable urban development, Urban Morphology, Solar potential

Author Biographies

Mariela Edith Arboit, CONICET

Doctora en Arquitectura. Investigador Asistente. CONICET

Ernesto Simon Betman, CONICET

Doctor en Ingeniería. Profesional Principal. CONICET