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      교통사고 가해자의 연령에 따른 여름철 일조시간과 교통사고의 연관성 분석 = Analysis of the Association between Sunshine Duration and Traffic Accidents by Age of Traffic Accident Offender in the Summer Season

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      https://www.riss.kr/link?id=A107987301

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      다국어 초록 (Multilingual Abstract) kakao i 다국어 번역

      This study first analyzed the association between sunshine duration and traffic accidents, and then investigated whether the association between the two variables differs by ages(≤59 and 60≤). We only used traffic accident data of the perpetrator driver during the summer (June-August) of 2018-2020 in five research areas (SeoulIncheon, Busan, Daegu, Daejeon, and Gwangju). We separately employed generalized additive models for each city, and then we derived comprehensive results using the meta-analysis. In the statistical analysis, seasonal and annual changes of traffic accident, maximum daily temperature, precipitation, maximum daily wind speed, duration of heat waves, duration of tropical nights, and days of the week were used as confounding variables. As a result, the relative risk (RR) of traffic accidents increased with increases in the duration of sunshine in all cities and ages. It was not clear who is the more vulnerable group, however, the RRs of young drivers in Seoul and Busan were significantly higher than that of the elderly. The RRs of young drivers were 1.07 (1.09 to 1.05) and 1.06 (1.10 to 1.02) at the 95% percentile of sunshine hours, respectively. The results of the study showed that it is necessary to warn drivers of the risk of traffic accidents when daylight hours increase.
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      This study first analyzed the association between sunshine duration and traffic accidents, and then investigated whether the association between the two variables differs by ages(≤59 and 60≤). We only used traffic accident data of the perpetrator ...

      This study first analyzed the association between sunshine duration and traffic accidents, and then investigated whether the association between the two variables differs by ages(≤59 and 60≤). We only used traffic accident data of the perpetrator driver during the summer (June-August) of 2018-2020 in five research areas (SeoulIncheon, Busan, Daegu, Daejeon, and Gwangju). We separately employed generalized additive models for each city, and then we derived comprehensive results using the meta-analysis. In the statistical analysis, seasonal and annual changes of traffic accident, maximum daily temperature, precipitation, maximum daily wind speed, duration of heat waves, duration of tropical nights, and days of the week were used as confounding variables. As a result, the relative risk (RR) of traffic accidents increased with increases in the duration of sunshine in all cities and ages. It was not clear who is the more vulnerable group, however, the RRs of young drivers in Seoul and Busan were significantly higher than that of the elderly. The RRs of young drivers were 1.07 (1.09 to 1.05) and 1.06 (1.10 to 1.02) at the 95% percentile of sunshine hours, respectively. The results of the study showed that it is necessary to warn drivers of the risk of traffic accidents when daylight hours increase.

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      참고문헌 (Reference)

      1 김영록, "직광에 의한 눈부심 현상이 터널 출구부 안전성에 미치는 영향 연구" 한국도로학회 14 (14): 103-110, 2012

      2 최서형, "여름철 낮 시간대 교통사고에 대한 고온의 영향" 기후연구소 14 (14): 171-181, 2019

      3 김홍주, "대도시광역권의 지역 간 네트워크 구조 변화: 대전, 광주, 대구, 부산·울산광역시를 중심으로" 국토연구원 59 : 263-280, 2008

      4 최연우, "겨울철 저온이 교통사고 발생에 미치는 영향에 관한 시계열적 연구" 기후연구소 15 (15): 213-227, 2020

      5 KoROAD, "‘17. Estimation and Evaluation of Road Traffic Accident Costs"

      6 Curry, A. E., "Young driver crash rates by licensing age, driving experience, and license phase" 80 : 243-250, 2015

      7 Leard, B., "Weather, Traffic Accidents, and Climate Change" Resources For the Future 2015

      8 Kim, J., "Trend of outbreak of thermal illness patients based on temperature 2002-2013 in Korea" 5 (5): 64-, 2017

      9 Lee, J., "Traffic accident severity analysis with rain-related factors using structural equation modeling : a case study of Seoul City" 112 : 1-10, 2018

      10 Edwards, J. B., "The temporal distribution of road accidents in adverse weather" 6 (6): 59-68, 1999

      1 김영록, "직광에 의한 눈부심 현상이 터널 출구부 안전성에 미치는 영향 연구" 한국도로학회 14 (14): 103-110, 2012

      2 최서형, "여름철 낮 시간대 교통사고에 대한 고온의 영향" 기후연구소 14 (14): 171-181, 2019

      3 김홍주, "대도시광역권의 지역 간 네트워크 구조 변화: 대전, 광주, 대구, 부산·울산광역시를 중심으로" 국토연구원 59 : 263-280, 2008

      4 최연우, "겨울철 저온이 교통사고 발생에 미치는 영향에 관한 시계열적 연구" 기후연구소 15 (15): 213-227, 2020

      5 KoROAD, "‘17. Estimation and Evaluation of Road Traffic Accident Costs"

      6 Curry, A. E., "Young driver crash rates by licensing age, driving experience, and license phase" 80 : 243-250, 2015

      7 Leard, B., "Weather, Traffic Accidents, and Climate Change" Resources For the Future 2015

      8 Kim, J., "Trend of outbreak of thermal illness patients based on temperature 2002-2013 in Korea" 5 (5): 64-, 2017

      9 Lee, J., "Traffic accident severity analysis with rain-related factors using structural equation modeling : a case study of Seoul City" 112 : 1-10, 2018

      10 Edwards, J. B., "The temporal distribution of road accidents in adverse weather" 6 (6): 59-68, 1999

      11 Bromberg, S., "The perception of pedestrians from the perspective of elderly experienced and experienced drivers" 44 (44): 48-55, 2012

      12 Jaroszweski, D., "The influence of rainfall on road accidents in urban areas : a weather radar approach" 1 (1): 15-21, 2014

      13 Lu, H., "The impacts of abnormal weather and natural disasters on transport and strategies for enhancing ability for disaster prevention and mitigation" 98 : 2-9, 2020

      14 Rodrigue, J. P., "The Geography of Transport Systems" Routledge 2020

      15 Brijs, T., "Studying the effect of weather conditions on daily crash counts using a discrete time-series model" 40 (40): 1180-1190, 2008

      16 Keay, K., "Road accidents and rainfall in a large Australian city" 38 (38): 445-454, 2006

      17 Constantinou, E., "Risky and aggressive driving in young adults : Personality matters" 43 (43): 1323-1331, 2011

      18 김지현, "RADIANCE 프로그램을 이용한 태양광 경면반사에 의한 눈부심 영향 분석방안 연구" 한국생활환경학회 20 (20): 64-71, 2013

      19 Hambly, D., "Projected implications of climate change for road safety in Greater Vancouver, Canada" 116 (116): 613-629, 2012

      20 Wood, S., "Package ‘mgcv’: Mixed GAM Computation Vehicle with Automatic Smoothness Estimation" 2021

      21 Casanueva, A., "Overview of existing heat-health warning systems in Europe" 16 (16): 2657-, 2019

      22 Sullivan, K. A., "Older adults’ safety perceptions of driving situations : towards a new driving self-regulation scale" 43 (43): 1003-1009, 2011

      23 Gasparrini, A., "Mortality risk attributable to high and low ambient temperature : a multicountry observational study" 386 (386): 369-375, 2015

      24 Schwarzer, G, "Meta-Analysis with R" Springer 2015

      25 "KoROAD"

      26 Ahn, K., "How to Improve the Efficiency of Logistics and Distribution between Seoul and Incheon?, SD Policy Report" Seoul Development Institute 2010

      27 Basagaña, X., "High ambient temperatures and risk of motor vehicle crashes in Catalonia, Spain(2000-2011) : a timeseries analysis" 123 (123): 1309-1316, 2015

      28 Park, J., "Heatwave impacts on traffic accidents by time-of-day and age of casualties in five urban areas in South Korea" 39 : 100917-, 2021

      29 PHE, "Heatwave Plan for England: Protecting Health and Reducing Harm from Severe Heat and Heatwaves" 2018

      30 WHO, "Global Status Report on Road Safety 2018: Summary" World Health Organization 2018

      31 김호용, "GIS Simulation을 이용한 태양광에 의한 교통사고 위험지역 분석" 한국지리정보학회 13 (13): 91-100, 2010

      32 Hermans, E., "Frequency and severity of Belgian road traffic accidents studied by state-space methods" 9 (9): 63-76, 2006

      33 Deschênes, O., "Extreme weather events, mortality, and migration" 91 (91): 659-681, 2009

      34 Bergel-Hayat, R., "Explaining the road accident risk : weather effects" 60 : 456-465, 2013

      35 Lee, J. Y., "Evaluating glare in due to solar specular reflection from a high-rise building skin" 3 (3): 23-30, 2009

      36 Parker, D., "Elderly drivers and their accidents : the aging driver questionnaire" 32 (32): 751-759, 2000

      37 Eisenberg, D., "Effects of snowfalls on motor vehicle collisions, injuries, and fatalities" 95 (95): 120-124, 2005

      38 Qiu, L., "Effects of adverse weather on traffic crashes : systematic review and meta-analysis" 2055 (2055): 139-146, 2008

      39 Isabelle, M. P., "Comparison between elderly and young drivers’ performances on a driving simulator and self-assessment of their driving attitudes and mastery" 135 : 105317-, 2020

      40 Susilowati, I. H., "Cognitive characteristics of older Japanese drivers" 31 (31): 2-, 2012

      41 Sahay, S., "Climatic variability and dengue risk in urban environment of Delhi(India)" 24 : 863-874, 2018

      42 El-Basyouny, K., "Assessing time and weather effects on collision frequency by severity in Edmonton using multivariate safety performance functions" 2012

      43 Cools, M., "Assessing the impact of weather on traffic intensity" 2 (2): 60-68, 2010

      44 Park, J., "Analysis on effectiveness of impact based heatwave warning considering severity and likelihood of health impacts in Seoul, Korea" 18 (18): 2380-, 2021

      45 Park, J., "Analysis of mortality change rate from temperature in summer by age, occupation, household type, and chronic diseases in 229 Korean municipalities from 2007-2016" 16 (16): 1561-, 2019

      46 Moore, R. L., "Ages of car drivers involved in accidents, with special reference to junctions" 14 (14): 488-489, 1982

      47 Malin, F., "Accident risk of road and weather conditions on different road types" 122 : 181-188, 2019

      48 Lee, W. K., "A time series study on the effects of cold temperature on road traffic injuries in Seoul, Korea" 132 : 290-296, 2014

      49 Theofilatos, A., "A review of the effect of traffic and weather characteristics on road safety" 72 : 244-256, 2014

      50 Park, K., "A Study on the Spatial Structure of the Seoul Metropolitan Area using O/D Trips" Gyeonggi Research Institute 2009

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      학술지 이력

      학술지 이력
      연월일 이력구분 이력상세 등재구분
      2022 평가예정 재인증평가 신청대상 (재인증)
      2019-01-01 평가 등재학술지 유지 (계속평가) KCI등재
      2016-01-01 평가 등재학술지 유지 (계속평가) KCI등재
      2012-01-01 평가 등재학술지 선정 (등재후보2차) KCI등재
      2011-01-01 평가 등재후보 1차 PASS (등재후보1차) KCI등재후보
      2009-01-01 평가 등재후보학술지 선정 (신규평가) KCI등재후보
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      학술지 인용정보

      학술지 인용정보
      기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
      2016 0.63 0.63 0.67
      KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
      0.71 0.67 0.962 0.3
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