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Open Access research that is tackling the climate emergency...

Addressing the energy challenge confronting society is a strategic research theme for Strathclyde. Researchers from across the institution, spanning multiple disciplines, are therefore working together to understand ways of reducing the environmental impacts of energy use, improving energy efficiency, coping with declining fossil fuel supplies, managing an ageing energy infrastructure, and devising policy or economic levers to achieve higher penetration of renewable energy systems and technologies. Strathprints makes this scholarly research content available Open Access thereby ensuring results are available to everyone in order meet the global climate challenge.

Explore some of this Open Access research from the departments of Mechanical & Aerospace Engineering, Electronic & Electrical Engineering, Civil & Environmental Engineering, Naval Architecture, Ocean & Marine Engineering, Economics, Entrepreneurship and the School of Government & Public Policy.

Or explore all of Strathclyde's Open Access research...

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Number of items: 5.

Article

Balzano, Brunella and Tarantino, Alessandro and Ridley, Andrew (2019) Preliminary analysis on the impacts of the rhizosphere on occurrence of rainfall-induced shallow landslides. Landslides, 16 (10). pp. 1885-1901. ISSN 1612-5118

Balzano, Brunella and Tarantino, Alessandro and Nicotera, Marco Valerio and Forte, Giovanni and de Falco, Melania and Santo, Antonio (2018) Building physically-based models for assessing rainfall-induced shallow landslide hazard at the catchment scale : the case study of the Sorrento Peninsula (Italy). Canadian Geotechnical Journal. ISSN 0008-3674

Balzano, Brunella and Tarantino, Alessandro and Ridley, Andrew (2016) Analysis of a rainfall-triggered landslide at rest and be thankful in Scotland. E3S Web of Conferences, 9. pp. 1-6. 15009. ISSN 2267-1242

Book Section

Amabile, A. and Balzano, B. and Caruso, M. and Tarantino, A.; Khalili, Nasser and Russell, Adrian and Khoshghalb, Arman, eds. (2014) A conceptual model for water-limited evapotranspiration taking into account root depth, root density, and vulnerability to xylem cavitation. In: Unsaturated Soils. CRC Press, AUS, pp. 1047-1052. ISBN 9781138001503

Balzano, B. and Amabile, A. and Caruso, M. and Tarantino, A.; Khalili, Nasser and Russell, Adrian and Khoshghalb, Arman, eds. (2014) A numerical study of hydrological effects of vegetation on slope stability. In: Unsaturated Soils. CRC Press, AUS, pp. 1249-1255. ISBN 9781138001503

This list was generated on Mon May 25 07:14:47 2020 BST.