Transactions on Transport Sciences 2021, 12(3):67-77 | DOI: 10.5507/tots.2021.007

Correlates of Pedestrian and Cyclist Falls in Snowy and Icy Conditions

Martin Bärwolffa, Angelika Reinartzb, Regine Gerikea
a. TU Dresden, Professur für Integrierte Verkehrsplanung und Straßenverkehrstechnik, Dresden, 01069, Germany
b. BSV Büro für Stadt- und Verkehrsplanung Dr.-Ing. Reinhold Baier GmbH, Hanbrucher Str. 9, Aachen, 52064, Germany

Existing international studies consistently report increased numbers of pedestrian and cyclist falls in the winter months, particularly in icy/snowy conditions. Until now, reliable information on the factors contributing to these falls has been rare.

This study investigates possible correlates of pedestrian and cyclist falls in icy/snowy conditions in Germany and takes into consideration factors such as behavior and surface conditions with the aim to develop recommendations for improving safety for vulnerable road users.

As part of this study, 3,300 people in online surveys and 2,100 in field surveys were asked about their experiences and opinions in relation to icy/snowy conditions and winter maintenance. Of those surveyed, 1,100 pedestrians and 2,200 cyclists also reported details about their most recent fall within the last five years. Furthermore, the behavior of 7,000 pedestrians and 4,500 cyclists was observed with cameras in both snowy and other weather conditions.

The presence of snow/ice itself was indicated as a reason for three quarters of pedestrian and two thirds of cyclist falls in snowy/icy conditions. For nearly all of the falls in snowy/icy conditions, surfaces were reported as poorly cleared or not cleared at all. Compared to other weather more pedestrians fell on sidewalks and less while crossing the street during snowy and icy conditions.

Cyclists increased their speed on downhill sidewalks in dry conditions and reduced their speed in snowy conditions compared to flat or uphill sidewalks. Most cyclists chose to cycle on sidewalks instead of their own dedicated, but not maintained, facilities (even though they are obliged by law to cycle on the carriageway in such cases). In snowy/icy conditions, 5 % of pedestrians varied their pace or step sequence and 8 % of cyclists drove "wavy lines" or made obvious corrective steering movements, particularly on poorly maintained facilities (compared to very few of such observations in other weather conditions).

Half of the respondents rated the winter maintenance at pedestrian facilities to be good and three quarters rated the maintenance at public transport stops as good. In contrast, only 12 % rated winter maintenance on cycling facilities as good. Reasons for not being satisfied included poor quality, delay and insufficient frequency of cleaning as well as the type of grit used. The lack of seamless reliably-cleaned cycle routes was listed as a major problem by most respondents. More than 50 % claimed that previously cleaned pedestrian or cyclist facilities were re-covered with snow from clearing the carriageway.

Keywords: Pedestrian Falls, Cyclist Falls, Cycling Speed, Snow, Winter Maintenance

Received: January 16, 2021; Revised: March 27, 2021; Accepted: April 22, 2021; Prepublished online: April 29, 2021; Published: March 9, 2022  Show citation

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Bärwolff, M., Reinartz, A., & Gerike, R. (2021). Correlates of Pedestrian and Cyclist Falls in Snowy and Icy Conditions. Transactions on Transport Sciences12(3), 67-77. doi: 10.5507/tots.2021.007
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References

  1. Abeysekera, J., & Gao, C. (2001). The identification of factors in the systematic evaluation of slip prevention on icy surfaces. International Journal of Industrial Ergonomics, 28(5), 303-313. https://doi.org/10.1016/S0169-8141(01)00027-0 Go to original source...
  2. ADFC (2021). ADFC-Fahrradklima-Test: Zufriedenheits-Index der Radfahrenden in Deutschland. Retrieved from https://fahrradklima-test.adfc.de/
  3. Alrutz, D., Bohle, W., Müller, H., & Prahlow, H. (2009). Unfallrisiko und Regelakzeptanz von Fahrradfahrern: Accident risk and rule acceptance of cyclists. Bergisch Gladbach, Germany: Research report of the German Federal Highway Research Institute.
  4. Amiri, M., & Sadeghpour, F. (2014). Cycling characteristics in cities with cold weather. Sustainable Cities and Society, 14, 397-403. https://doi.org/10.1016/j.scs.2013.11.009 Go to original source...
  5. Bach, V., & Böhm, P. M. (1994). Umfang und Durchführung des Winterdienstes auf Fußgänger-Querungen. Forschung Straßenbau Und Straßenverkehrstechnik. (706).
  6. Bärwolff, M., Schmotz, M., Gerike, R., Baier, R., Reinartz, A., & Cekin, O. C. (2019). Bewertung des Sturzrisikos und des Verhaltens von Fußgängern und Radfahrern bei winterlichen Bedingungen. Retrieved from https://bast.opus.hbz-nrw.de/frontdoor/index/index/docId/2339
  7. Bergström, A. (2002). Winter maintenance and cycleways (PhD Thesis). Royal Institute of Technology, Stockholm. Retrieved from http://www.diva-portal.org/smash/record.jsf?pid=diva2:9136
  8. Bergström, A. (2003). More Effective Winter Maintenance Method for Cycleways. Transportation Research Record: Journal of the Transportation Research Board, 1824, 115-122. https://doi.org/10.3141/1824-13 Go to original source...
  9. Bergström, A., & Magnusson, R. (2003). Potential of transferring car trips to bicycle during winter. Transportation Research Part a: Policy and Practice, 37(8), 649-666. https://doi.org/10.1016/S0965-8564(03)00012-0 Go to original source...
  10. Bonander, C., & Holmberg, R. (2019). Estimating the effects of a studded footwear subsidy program on pedestrian falls among older adults in Gothenburg, Sweden. Accident; Analysis and Prevention, 132, 105282. https://doi.org/10.1016/j.aap.2019.105282 Go to original source...
  11. Durth, W., Hiersche, E.-U., & Lamm, R. (1995). Winterdienst auf Radwegen: Winter service on cycle paths. Karslruhe: Karlsruher Institut für Technologie - Institut für Straßen- und Eisenbahnwesen (ISE).
  12. Elvik, R. (2000). Konsekvensanalyser av bedre vintervedlikehold for gående og syklende: Via Nordica.
  13. FGSV (2010). Merkblatt für den Winterdienst auf Straßen (FGSV R2 - Regelwerke No. FGSV 416). Köln.
  14. Fossum, M., & Ryeng, E. (2019). Pedestrians' route choice during winter conditions. ICTCT. 32nd ICTCT Conference, Warsaw.
  15. Furian, G., Kühnelt-Leddhin, A., & Bauer, R. (2011). Unfallrisiko auf Fußwegen in Österreich. Wien: Forschungsarbeiten des österreichischen Verkehrssicherheitsfonds.
  16. Gao, C., & Abeysekera, J. (2004). A systems perspective of slip and fall accidents on icy and snowy surfaces. Ergonomics, 47(5), 573-598. https://doi.org/10.1080/00140130410081658718 Go to original source...
  17. Gard, G., & Lundborg, G. (2000). Pedestrians on slippery surfaces during winter--methods to describe the problems and practical tests of anti-skid devices. Accident; Analysis and Prevention, 32(3). https://doi.org/10.1016/s0001-4575(99)00070-6 Go to original source...
  18. Gupta, A., Li, Y., & Fernie, G. (2008). Effects Of Temperature And Time Of Day On Pedestrian Walking Speed. Proceedings of ICADI 2008: International Conference on Aging, Disability and Independence.
  19. Helsingin kaupunki (2020). Winter street maintenance. Retrieved from https://www.hel.fi/helsinki/en/maps-and-transport/streets-traffic/maintenance/winter-street-maintenance/winter-street-maintenance
  20. Hsu, J., Shaw, R., Novak, A., Li, Y., Ormerod, M., Newton, R., . . . Fernie, G. (2016). Slip resistance of winter footwear on snow and ice measured using maximum achievable incline. Ergonomics, 59(5), 717-728. https://doi.org/10.1080/00140139.2015.1084051 Go to original source...
  21. Icebike (2015). This is Why You Are Cycling Slower in the Winter. Retrieved from http://www.icebike.org/this-is-why-you-are-cycling-slower-in-the-winter/
  22. Koszowski, C., Gerike, R., Hubrich, S., Götschi, T., Pohle, M., & Wittwer, R. (2019). Active Mobility: Bringing Together Transport Planning, Urban Planning, and Public Health. In B. Müller & G. Meyer (Eds.), Lecture Notes in Mobility. Towards User-Centric Transport in Europe (Vol. 26, pp. 149-171). Cham: Springer International Publishing. https://doi.org/10.1007/978-3-319-99756-8_11 Go to original source...
  23. Larsson, A., Berggård, G., Rosander, P., & Gard, G. (2019). Gait Speed with Anti-Slip Devices on Icy Pedestrian Crossings Relate to Perceived Fall-Risk and Balance. International Journal of Environmental Research and Public Health, 16(14). https://doi.org/10.3390/ijerph16142451 Go to original source...
  24. Li, Y., & Fernie, G. (2010). Pedestrian behavior and safety on a two-stage crossing with a center refuge island and the effect of winter weather on pedestrian compliance rate. Accident; Analysis and Prevention, 42(4), 1156-1163. https://doi.org/10.1016/j.aap.2010.01.004 Go to original source...
  25. Liang, S., Leng, H., Yuan, Q., Wang, B., & Yuan, C. (2020). How does weather and climate affect pedestrian walking speed during cool and cold seasons in severely cold areas? Building and Environment, 175, 106811. https://doi.org/10.1016/j.buildenv.2020.106811 Go to original source...
  26. Methorst, R., Schepers, P., Christie, N., Dijst, M., Risser, R., Sauter, D., & van Wee, B. (2017). 'Pedestrian falls' as necessary addition to the current definition of traffic crashes for improved public health policies. Journal of Transport & Health, 6, 10-12. https://doi.org/10.1016/j.jth.2017.02.005 Go to original source...
  27. Möller, S., Wallman, C.-G., & Gregersen, N. P. (2013). Vinterväghållning i tätort : Trafiksäkerhet och framkomlighet. Bilaga. Retrieved from TFB & VTI forskning/research 2:1., Transportforskningsberedningen och Statens Väg-, och Trafikinstitut website: https://www.diva-portal.org/smash/record.jsf?pid=diva2%3A671979&dswid=4598
  28. Muraleetharan, T., Meguro, K., Adachi, T., Hagiwar, T., & Kagaya, S.'i. (2005). Influence of Winter Road Conditions and Signal Delay on Pedestrian Route Choice in Japan's Snowiest Metropolis. Transportation Research Record: Journal of the Transportation Research Board, 1939, 145-153. https://doi.org/10.3141/1939-17 Go to original source...
  29. Niska, A. (2011). Cykelvägars standard : en kunskapssammanställning med fokus på drift och underhåll: Service levels of cycleways -state-of-the-artreportfocusing on maintenance and operation. VTI Rapport 726.
  30. Niska, A., & Eriksson, J. (2013). Statistik över cyklisters olyckor: faktaunderlag till gemensam strategi för säker cykling: Cycling accident statistics. Background information to the common policy strategy for safe cycling. VTI Rapport 801.
  31. Nyberg, P., Björnstig, U., & Bygren, L. O. (1996). Road characteristics and bicycle accidents. Scandinavian Journal of Social Medicine, 24(4), 293-301. https://doi.org/10.1177/140349489602400410 Go to original source...
  32. Öberg, G., Nilsson, G., Velin, H., & Wretling, P. (1996). Single accidents amongpedestrians and cyclists: Fotgängares och cyklisters singelolyckor. Linköping: VTI meddelande.
  33. Parkin, L., Williams, S. M., & Priest, P. (2009). Preventing winter falls: A randomised controlled trial of a novel intervention. The New Zealand Medical Journal, 122(1298), 31-38.
  34. Phillips, D. (2010). Why Do We Bike Slower In The Cold Weather? Retrieved from http://fitwerx.com/why-do-we-bike-slower-in-the-cold-weather
  35. Ruotsalainen, J., Ruuhela, R., & Kanas, M. (2004). Preventing pedestrian slipping accidents with help of a weather and pavement condition model. Proceedings of Walk21-VCities for People, the Fifth International Conference on Walking in the 21st Century.
  36. Schepers, P.; Brinker, B. d.; Methorst, R.; Helbich, M. (2017): Pedestrian falls: A review of the literature and future research directions. Journal of Safety Research 62, DOI: 10.1016/j.jsr.2017.06.020 Go to original source...
  37. Shintani, Y., Hara, F., Fukumoto, A., & Akiyama, T. (2003). Empirical Study on Walking Behavior in Icy Conditions and Effect of Measures to Improve Winter Pedestrian Environment. Proceedings of TRB 82nd Annual Meeting.
  38. Shirgaokar, M., & Gillespie, D. (2016). Exploring User Perspectives to Increase Winter Bicycling Mode Share in Edmonton, Canada. Transportation Research Board 95th Annual MeetingTransportation Research Board. (16-2028UR - https://trid.trb.org/view/1392739).
  39. Wallqvist, V., Kjell, G., Cupina, E., Kraft, L., Deck, C., & Willinger, R. (2017). New functional pavements for pedestrians and cyclists. Accident; Analysis and Prevention, 105, 52-63. https://doi.org/10.1016/j.aap.2016.04.032 Go to original source...
  40. Weidmann, U. (1992). Transporttechnik der Fussgänger: Transporttechnische Eigenschaften des Fussgängerverkehrs, Literaturauswertung. https://doi.org/10.3929/ETHZ-A-000687810 Go to original source...

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