Testing a theory of aircraft noise annoyance: a structural equation analysis

J Acoust Soc Am. 2008 Jun;123(6):4250-60. doi: 10.1121/1.2916589.

Abstract

Previous research has stressed the relevance of nonacoustical factors in the perception of aircraft noise. However, it is largely empirically driven and lacks a sound theoretical basis. In this paper, a theoretical model which explains noise annoyance based on the psychological stress theory is empirically tested. The model is estimated by applying structural equation modeling based on data from residents living in the vicinity of Amsterdam Airport Schiphol in The Netherlands. The model provides a good model fit and indicates that concern about the negative health effects of noise and pollution, perceived disturbance, and perceived control and coping capacity are the most important variables that explain noise annoyance. Furthermore, the model provides evidence for the existence of two reciprocal relationships between (1) perceived disturbance and noise annoyance and (2) perceived control and coping capacity and noise annoyance. Lastly, the model yielded two unexpected results. Firstly, the variables noise sensitivity and fear related to the noise source were unable to explain additional variance in the endogenous variables of the model and were therefore excluded from the model. And secondly, the size of the total effect of noise exposure on noise annoyance was relatively small. The paper concludes with some recommended directions for further research.

MeSH terms

  • Acoustics
  • Aircraft*
  • Environmental Exposure
  • Health Policy
  • Health Surveys
  • Humans
  • Models, Biological
  • Netherlands
  • Noise, Transportation / adverse effects*
  • Perception