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Enhancing highway Loop Safety Level through proactive risk-based assessment of geometric configuration using lateral
Omid Rahmani1, Hosein Ghasemzadeh Tehrani1, Iman Aghayan1
1Faculty of Civil Engineering, Shahrood University of Technology, Shahrood, Iran.
Traffic Injury Prevention
|September 26, 2024
Summary
This study introduces the Loop Safety Level (LSL) to assess loop ramp safety using lateral acceleration and crash data. Findings help designers improve geometric configurations for safer driving conditions.
Area of Science:
- Traffic Engineering
- Road Safety Analysis
- Geometric Design
Background:
- Loop ramps present complex geometric challenges due to combined horizontal curves and vertical alignments.
- Understanding driving behavior on loop ramps is crucial for aligning design assumptions with real-world performance.
Purpose of the Study:
- To investigate the safety, performance, and geometric configuration of free-flow loop ramps.
- To analyze driving behavior and safety levels for design improvements.
Main Methods:
- Utilized Unmanned Aerial Vehicle (UAV) data to analyze vehicle behavior.
- Employed maximum lateral acceleration (a_y,i) as a Surrogate Safety Measure (SSM).
- Introduced the a/b ratio and Loop Safety Level (LSL) for shape determination and risk analysis, incorporating threshold lateral acceleration (a_t) and 85th percentile maximum lateral acceleration (a_y,max,85%).
Main Results:
- A prediction model for maximum lateral acceleration based on loop geometry showed a strong fit (R²=0.88).
- Higher LSL values indicate greater safety concerns related to loop shape and lateral acceleration.
- Crash statistics correlated with lateral acceleration data to provide safety ratings and diagnose segment safety.
Conclusions:
- The study enhances the understanding of safety considerations in loop ramp geometric configuration.
- It provides insights for improving the general shape of loops during the design process.
- The developed LSL aids in proactive risk analysis and ranking of loop ramps.
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