Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Wind Power and NIMBYism in Norway: Public Attitudes and Local Resistance

View through CrossRef
Abstract This study explores the impact of NIMBY (Not In My Backyard) sentiments on local resistance to wind power developments in Norway. With a reopening of concession processing for new onshore wind power projects in 2022, a significant number of applications await evaluation, provoking substantial local opposition. This research assesses the prevalence and impact of NIMBY attitudes among the Norwegian public and to critically examine the theoretical validity and practical utility of the NIMBY concept. Using data from an online survey, which yielded 1220 complete responses, we analyzed general attitudes toward wind power in Norway and specific attitudes toward local wind power installations. While 37% of respondents support wind power construction in Norway, only 27% favor it near their homes. Based on the relationship between these two attitudes, we identified the proportion of NIMBYs in the data using two approaches. A strict definition requires individuals to support wind power in Norway but oppose its presence in the natural areas near their own homes. A less strict definition also includes those who expressed a neutral stance toward wind power in Norway among the NIMBYs. In both cases, a relatively small segment of respondents exhibit classic NIMBY characteristics, i.e., support (or claim neutrality) to wind power in general but opposing it locally. Further analysis reveals that direct experience with wind power installations is associated with increased acceptance rather than opposition, challenging the NIMBY narrative. Our study argues that labeling local resistance as NIMBYism oversimplifies the issue and ignores other significant factors like environmental identity, place attachment, and broader environmental attitudes. Hence, the study suggests that blaming wind power opponents as “Nimbys” often is misplaced and unjust.
Title: Wind Power and NIMBYism in Norway: Public Attitudes and Local Resistance
Description:
Abstract This study explores the impact of NIMBY (Not In My Backyard) sentiments on local resistance to wind power developments in Norway.
With a reopening of concession processing for new onshore wind power projects in 2022, a significant number of applications await evaluation, provoking substantial local opposition.
This research assesses the prevalence and impact of NIMBY attitudes among the Norwegian public and to critically examine the theoretical validity and practical utility of the NIMBY concept.
Using data from an online survey, which yielded 1220 complete responses, we analyzed general attitudes toward wind power in Norway and specific attitudes toward local wind power installations.
While 37% of respondents support wind power construction in Norway, only 27% favor it near their homes.
Based on the relationship between these two attitudes, we identified the proportion of NIMBYs in the data using two approaches.
A strict definition requires individuals to support wind power in Norway but oppose its presence in the natural areas near their own homes.
A less strict definition also includes those who expressed a neutral stance toward wind power in Norway among the NIMBYs.
In both cases, a relatively small segment of respondents exhibit classic NIMBY characteristics, i.
e.
, support (or claim neutrality) to wind power in general but opposing it locally.
Further analysis reveals that direct experience with wind power installations is associated with increased acceptance rather than opposition, challenging the NIMBY narrative.
Our study argues that labeling local resistance as NIMBYism oversimplifies the issue and ignores other significant factors like environmental identity, place attachment, and broader environmental attitudes.
Hence, the study suggests that blaming wind power opponents as “Nimbys” often is misplaced and unjust.

Related Results

Contributions of flywheel systems in wind power plants
Contributions of flywheel systems in wind power plants
The stepwise replacement of conventional power plants by renewable-based ones such as wind power plants could a ect the system behaviour and planning. First, the network stability ...
Wind lidars within Dutch offshore wind farms
Wind lidars within Dutch offshore wind farms
The growing number of wind farms in the Dutch part of the North Sea [1] offers the necessity, as well as the opportunity, to measure the meteorological conditions at these location...
Probabilistic Modeling of Structural Wind Loads and Reliability Implications Considering Wind Direction Effects in Northeast China
Probabilistic Modeling of Structural Wind Loads and Reliability Implications Considering Wind Direction Effects in Northeast China
Wind speed and wind direction are key random variables governing structural wind-load effects and reliability levels. Conventional probabilistic wind-load analyses usually derive r...
Analysis of Senegal Type Vertical Axis Wind Turbines Arrangement in Wind Farm
Analysis of Senegal Type Vertical Axis Wind Turbines Arrangement in Wind Farm
Background: In a wind farm, the wind speed of the downstream wind turbine will be lower than the wind speed of the upstream wind turbine due to the influence of the wake. Therefore...
Solar wind interaction with comet 67P around perihelion
Solar wind interaction with comet 67P around perihelion
AbstractNear perihelion, when comet 67P was most active, the Rosetta spacecraft resided inside the comet induced magnetosphere. The solar wind magnetic field was still present, but...
Savonius Rotor for Offshore Wind Energy Conversion
Savonius Rotor for Offshore Wind Energy Conversion
Abstract Analysis of performance is presented for wind energy conversion by a Savonius type vertical axis rotor configured for generation of electrical power. The...
Modeling of the dynamics of wind to power conversion including high wind speed behavior
Modeling of the dynamics of wind to power conversion including high wind speed behavior
AbstractThis paper proposes and validates an efficient, generic and computationally simple dynamic model for the conversion of the wind speed at hub height into the electrical powe...
Assessing offshore wind power resources in British Columbia
Assessing offshore wind power resources in British Columbia
Wind resources are investigated and estimated offshore of the northern and central coasts of British Columbia, Canada. Remote sensing-based wind speed observations from a Synthetic...

Back to Top