Relation between Observed and Perceived Traffic Noise and Socio-Economic Status in Urban Blocks of Different Characteristics
Abstract
:1. Introduction
- (1)
- Which socio-economic groups mainly live in noisy locations (when looking at small-scale residential areas)?
- (2)
- Is there a correlation between noise exposure and the subjective perception of this stressor?
- (3)
- Is there a relation between perception of traffic noise and socio-economic characteristics?
2. Conceptual Issues of Environmental Justice and Noise Exposure in Urban Areas
2.1. Theoretical Approaches to Environmental Justice
2.2. Noise as Major Urban Stressor
2.3. Methodological Considerations and Recent Studies on Noise
- boundary effects: EJ studies often either use public statistical units (such as census blocks or ZIP code areas) or buffers around the origin of environmental stress factors (circular for point sources, linear for e.g., roads) to define the populations affected, which can lead to incorrect assignment of affected population [48,49]. We address this by using the results of a noise propagation model coupled with measurements and furthermore only comparing differences in affectedness among households living within our chosen study areas.
- Modifiable areal unit problem: The areal unit chosen for spatial analysis has repeatedly also been flagged as a potential source of uncertainty in EJ studies as the strength of association between socioeconomic and environmental variables often changes with scale. This phenomenon is known as the Modifiable Areal Unit Problem (MAUP). For instance, Mennis, Schweitzer and Stephenson (Jr.) illustrated the MAUP phenomenon by showing how using larger U.S. census- or ZIP code-based units show obscure variations and differences existing between smaller-scale units [50,51]. In this study we use socio-economic data from a household questionnaire which is not aggregated to larger units. The noise data originates from a dispersion model, which depicts dB(A) for 10 × 10 m raster cells. We thus do not consider MAUP to be a problem.
- Spatial autocorrelation is another important consideration in EJ analysis. According to Tobler’s first law of geography “(...) everything is related to everything else, but near things are more related than distant things” [52], such correlations can be expected in EJ analyses, which are based on the assumption that neither environmental burdens nor the population are randomly or evenly distributed in space. Spatial autocorrelation generally renders the application of general linear regression models inappropriate, since they rely on the assumption of independent residuals. However, in this study we test for correlations using Spearman’s Rho which is non-parametric.
3. Materials and Methodology
3.1. Study Areas and Data Acquisition
3.2. Measuring and Modeling of Noise
3.2.1. Noise Measurements
3.2.2. Noise Map
3.3. Software Used and Modelling Approach
3.3.1. Statistical Analyses
3.3.2. Socio-Economic Analyses
3.3.3. Spatial Analyses
4. Results
4.1. Description of the Survey Sample
4.2. Noise Pollution and Perception
4.3. Noise Pollution and Socio-Economic Parameters
4.4. Noise Perception and Socio-Economic Parameters
5. Discussion, Conclusions and Outlook
Acknowledgments
Author Contributions
Conflicts of Interest
References
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Question | Variable | Answer scale | No. Cases (n) | |
---|---|---|---|---|
Do you feel disturbed by noise in your apartment/house? (noise of every kind) | …on weekdays | NWD | 4-level Likert (very much, quite, some-what, not at all) | 1036 |
…on weekends | NWE | 1020 | ||
…during night | NNI | 1022 | ||
To what extent do you feel disturbed in your apartment/house by road traffic noise? | NRT | 4-level Likert (very much, quite, some-what, not at all) | 1002 | |
How old are you? | AGE | open | 1048 | |
What is the approximate monthly net income of your household? (Combined disposable income of all household members, incl. child support etc.) | INC | Eleven classes in 500 € steps; without limit from 5000 € up | 964 | |
Highest level of education reached? | EDU | Five categories | 1057 | |
What is/are your occupation(s)? (Multiple answers possible) | OCC | Seven categories, open answer | 1047 | |
Gender? | GEN | Three categories (incl. other) | 1073 |
Survey Area | District | District Type | Building Type | No. of Cases (n) |
---|---|---|---|---|
1 | Wilhelmsburg | Harbor, Business & Residential | 1920s block building | 28 |
2 | Wilhelmsburg | Harbor, Business & Residential | 1970s large housing estate | 16 |
3 | Wilhelmsburg | Harbor, Business & Residential | 1950s apartment houses (rows) | 13 |
4 | Wilhelmsburg | Harbor, Business & Residential | 1950s row housing/town-houses/detached houses | 38 |
5 | Altona-Altstadt | Inner City | 1920s block building | 26 |
6 | Ottensen | Inner City | 1900s block building/Gap closing and re-compaction | 58 |
7 | Altona-Nord | Inner City | 1950s–60s apartment houses/2010s block building | 42 |
8 | Sternschanze | Inner City | 1900s block building | 55 |
9 | Othmarschen | Transition Area | 1900s apartment & detached houses | 24 |
10 | Hafen City | Old Town | 2010s compact mid/high rise | 53 |
11 | Niendorf | Transition Area | 1950s apartment houses (rows)/1970s high rise | 41 |
12 | Niendorf | Transition Area | 1980s/90s apartment houses/detached & townhouses | 79 |
13 | Duvenstedt | Suburban Area | 1900s–1990s apartment & detached houses | 30 |
14 | Bergstedt | Suburban Area | 1950s apartment houses (rows) | 19 |
15 | Neuallermöhe | Transition Area | 1980s apartment houses | 69 |
16 | Billstedt | Transition Area | 1960s apartment & high rise | 33 |
17 | Eilbek | Inner City | 1960s apartment houses (gap closing)/1990s apartment rows | 68 |
18 | Eimsbüttel | Inner City | 1900s/1920s block buildings/mixed gap closings | 102 |
19 | Winterhude | Inner City | 1900s large townhouses & mixed apartment houses | 58 |
20 | St. Pauli | Inner City | 1900s block building/Gap closing/2010s high rise | 60 |
21 | Osdorf | Transition Area | 1970s large housing estate/ detached houses | 31 |
22 | Moorburg/Haus-bruch/Neugraben | Transition Area/Harbor, Business & Residential | 1920s–1980s apartment & detached houses/1990s block | 37 |
23 | Ochsenwerder | Suburban Area | 1950s–1990s detached & apartment houses | 24 |
24 | Barmbek-Nord | Inner City | 1920s block building/1960s apartment houses | 77 |
Variable | Source | Scale | No. of Cases |
---|---|---|---|
Lnight | Strategic noise map, city of Hamburg | dB(A) | 60 different average means (for 1024 cases) |
Lden | Strategic noise map, city of Hamburg | dB(A) | 62 different average means (for 1057 cases) |
Laeq | Measurements | dB(A) | 179 |
Overall Annoyance by Noise | |||||
---|---|---|---|---|---|
Daytime Weekdays (NWD) | Daytime Weekends (NWE) | Nights (NNI) | Traffic Noise (NRT) | ||
Lden | r (Spearman-Rho) | 0.23 *** | 0.19 *** | 0.23 *** | 0.42 *** |
df | 1034 | 1018 | 1020 | 1000 |
Overall Annoyance by Noise | ||||
---|---|---|---|---|
Daytime Weekdays (NWD) | Daytime Week-Ends (NWE) | Traffic Noise (NRT) | ||
Laeq | r (Spearman-Rho) | 0.18 * | 0.19 * | 0.60 *** |
df | 177 | 175 | 174 |
Overall Annoyance by Noise | |||||
---|---|---|---|---|---|
Daytime Weekdays (NWD) | Daytime Weekends (NWE) | Nights (NNI) | Traffic Noise (NRT) | ||
Age (years) | r (Spearman-ho) | 0.09 ** | 0.09 ** | 0.17 *** | 0.16 *** |
df | 1025 | 1009 | 1011 | 991 |
Lden > 55–60 dB(A) | Lnight > 55–60 dB(A) | |
---|---|---|
Annoyance from road noise (NRT) | ➢ very much (45) = 45 years, p < 0.05 vs. somewhat (62) = 54.4 years, p < 0.05 | ➢ very much (56) = 43.1 years, p < 0.00 vs. somewhat (41) = 59 years, p < 0.00 ➢ very much (56) = 43.1 years, p < 0.00 vs. not at all (35) = 54.7 years, p < 0.00 ➢ quite (43) = 46.9, p < 0.00 vs. somewhat (41) = 59 years, p < 0.00 |
Annoyance from noise at night (NNI) | no significant differences | ➢ quite (24) = 40.2 years, p < 0.00 vs. not at all (72) = 58.5 years, p < 0.00 ➢ somewhat (66) = 46.7 years, p < 0.00 vs. not at all (72) = 58.5 years, p < 0.00 |
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Von Szombathely, M.; Albrecht, M.; Augustin, J.; Bechtel, B.; Dwinger, I.; Gaffron, P.; Krefis, A.C.; Oßenbrügge, J.; Strüver, A. Relation between Observed and Perceived Traffic Noise and Socio-Economic Status in Urban Blocks of Different Characteristics. Urban Sci. 2018, 2, 20. https://doi.org/10.3390/urbansci2010020
Von Szombathely M, Albrecht M, Augustin J, Bechtel B, Dwinger I, Gaffron P, Krefis AC, Oßenbrügge J, Strüver A. Relation between Observed and Perceived Traffic Noise and Socio-Economic Status in Urban Blocks of Different Characteristics. Urban Science. 2018; 2(1):20. https://doi.org/10.3390/urbansci2010020
Chicago/Turabian StyleVon Szombathely, Malte, Myriam Albrecht, Jobst Augustin, Benjamin Bechtel, Isabel Dwinger, Philine Gaffron, Anne Caroline Krefis, Jürgen Oßenbrügge, and Anke Strüver. 2018. "Relation between Observed and Perceived Traffic Noise and Socio-Economic Status in Urban Blocks of Different Characteristics" Urban Science 2, no. 1: 20. https://doi.org/10.3390/urbansci2010020
APA StyleVon Szombathely, M., Albrecht, M., Augustin, J., Bechtel, B., Dwinger, I., Gaffron, P., Krefis, A. C., Oßenbrügge, J., & Strüver, A. (2018). Relation between Observed and Perceived Traffic Noise and Socio-Economic Status in Urban Blocks of Different Characteristics. Urban Science, 2(1), 20. https://doi.org/10.3390/urbansci2010020