4.7 Article

Explaining public preferences for high voltage pylon designs: An empirical study of perceived fit in a rural landscape

Journal

LAND USE POLICY
Volume 31, Issue -, Pages 640-649

Publisher

ELSEVIER SCI LTD
DOI: 10.1016/j.landusepol.2012.09.011

Keywords

Electricity pylon designs; Public preferences; Mitigation measures; Socio-psychological approach

Funding

  1. Fundação para a Ciência e a Tecnologia [PEst-OE/PSI/UI3125/2013] Funding Source: FCT

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In many countries, electricity transmission networks are being upgraded and developed arising from policies aiming to decarbonise energy systems. However, new power lines are often controversial, due to their perceived negative impacts on rural landscapes. Despite the fact that visual impacts are an important element of public objections, to date, little research has analysed public preferences for alternative pylon designs, as well as investigating the social and psychological factors that might explain such preferences. This paper sought to address this gap, informed by research on public acceptance of renewable energy technologies, using a survey conducted with a representative sample of UK adults (n = 1519). The findings indicate that the 'T-pylon' design, winner of a recent competition, was most strongly preferred and the one most perceived to fit with a rural landscape, by comparison to the conventional 'A frame' design and a 'Totem' design shortlisted in the competition. Linear regression analyses indicated three factors that explained perceived fit, regardless of the designs: lower levels of educational attainment, positive general attitudes towards transmission lines and higher levels of trust in National Grid were associated with positive perceptions of fit of the pylons in a rural landscape. Finally, findings concerning public support for diverse mitigation measures indicated that the use of alternative designs was less supported than burying new powerlines underground and routing pylons away from homes and schools. The implications of these results for more sustainable grid networks are discussed. (C) 2012 Elsevier Ltd. All rights reserved.

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