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In-service Performance Evaluation and Installation Recommendations for Cable Median Barriers on Non-continuously Shielded, Divided-median Kansas Freeways

In-service Performance Evaluation and Installation Recommendations for Cable Median Barriers on Non-continuously Shielded, Divided-median Kansas Freeways
Author: Nathan Dowler
Publisher:
Total Pages: 342
Release: 2021
Genre:
ISBN:

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The Kansas Department of Transportation (KDOT) installed 7.95 miles of cable median barrier (CMB) along K-10, K-96, and US-75 freeways in 2011 and 2012. In January 2020, KDOT funded a study to determine the in-service performance of its CMBs. In addition, KDOT sought to determine if it was cost-effective to modify guidelines for installing median barriers, which were based on annual daily traffic and median width. Researchers reviewed every crash within approximately 1⁄4 mile of a CMB installation and extracted crashes which involved a CMB impact. Researchers analyzed the critical details of each CMB crash, with particular emphasis on penetrations, in which a vehicle passed from the impact side to the opposite side of the barrier. In two penetration crashes, the vehicle completely traversed the median and encroached into the opposing lanes (CME), and one impacted an oncoming vehicle (CMC). Although the dataset was small, penetration and rollover rates were lower than other state DOT averages. Overall, the performance of the KDOT CMB was deemed acceptable and comparable to other states. Researchers investigated the cost-effectiveness of installing CMBs based on the frequency of critical crash events. A detailed examination of 16,721 crashes on non-continuously shielded, divided-median Kansas freeways from 2014 to 2018 was undertaken, which focused on median departures, crashes which reached the median centerline, CMEs, and CMCs. Benefit-to-cost ratios were calculated for various median widths, roadways, and traffic volume conditions. Previous median barrier warrant guidelines were determined to still be cost-effective and changes to KDOT policy were not recommended. A review of all off-road crashes which did not enter the median was conducted to examine any trends or characteristics between contributing factors or fixed objects struck. The relationship between crash cause and traffic volume was explored, identifying the traffic volume range at which each contributing factor was most prevalent. A disproportionate number of severe crashes following contact with bridge piers was observed, and recommendations were made for further analysis.


Pilot In-service Performance Evaluation of Cable Barrier in Washington State

Pilot In-service Performance Evaluation of Cable Barrier in Washington State
Author: Paul Abbott (Of the Washington State Department of Transportation)
Publisher:
Total Pages: 0
Release: 2022
Genre: Roads
ISBN:

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A pilot routine in-service performance evaluation (ISPE) was undertaken for cable barrier following the process outlined in NCHRP 22-33. Barrier breach, rollover, vehicle mix, and secondary impacts on the roadside and roadway were evaluated as performance measures using data sourced from the Crash Location & Analysis System (CLAS) database and the WSDOT Engineering Crash Data Mart for years 2016 through 2020. Four Performance Assessment Levels, ranging from no exclusions of crash data to exclusions of crash data limited to vehicle type and speed limit were assessed. For all five performance measures, the study found no measurable difference between the performance of the four major types of cable barrier in use on state highways within WSDOT jurisdiction, including three-strand versus fourstrand.


High Tension Cable Median Barrier Safety Effectiveness Evaluation

High Tension Cable Median Barrier Safety Effectiveness Evaluation
Author: Richard Storm
Publisher:
Total Pages: 0
Release: 2022
Genre: Roads
ISBN:

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The objective of this study was to evaluate the change in crash frequency or severity of varying lateral offset distances of high-tension cable median barriers in Minnesota. Crash and traffic data from 2016 to present were conjoined with roadway cross-sectional data and high-tension cable barrier locations to perform cross-sectional analyses for interstate segments equal to or greater than 0.05-miles long. Negative binomial regression models were estimated and used to develop crash modification factors (CMFs) for the following crash types: total crashes, target crashes, and barrier crashes. In addition to evaluating the impact of lateral offset, a naïve before-after evaluation was completed to quantify the impact of installing high-tension cable barrier.