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Rail height effects on safety performance of Midwest Guardrail System

机译:铁路高度对中西部护卫系统安全性能的影响

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Objective: Guardrail heights play a crucial role in the way that errant vehicles interact with roadside barriers. Low rail heights increase the propensity of vehicle rollover and override, whereas excessively tall rails promote underride. Further, rail mounting heights and post embedment depths may be altered by variations in roadside terrain. An increased guardrail height may be desirable to accommodate construction tolerances, soil erosion, frost heave, and future roadway overlays. This study aimed to investigate and identify a maximum safe installation height for the Midwest Guardrail System that would be robust and remain crashworthy before and after pavement overlays.Methods: A research investigation was performed to evaluate the safety performance of increased mounting heights for the standard 787-mm (31-in.)-tall Midwest Guardrail System (MGS) through crash testing and computer simulation. Two full-scale crash tests with small passenger cars were performed on the MGS with top-rail mounting heights of 864 and 914mm (34 and 36 in.). Test results were then used to calibrate computer simulation models.Results: In the first test, a small car impacted the MGS with 864-mm (34-in.) rail height at 102km/h (63.6mph) and 25.0 degrees and was successfully redirected. In the second test, another small car impacted the MGS with a 914-mm (36-in.) rail height at 103km/h (64.1mph) and 25.6 degrees and was successful. Both system heights satisfied the Manual for Assessing Safety Hardware (MASH) Test Level 3 (TL-3) evaluation criteria. Test results were then used to calibrate computer simulation models. A mounting height of 36 in. was determined to be the maximum guardrail height that would safely contain and redirect small car vehicles. Simulations confirmed that taller guardrail heights (i.e., 37 in.) would likely result in small car underride. In addition, simulation results indicated that passenger vehicle models were successfully contained by the 34- and 36-in.-tall MGS installed on approach slopes as steep as 6:1.Conclusions: A mounting height of 914mm (36 in.) was determined to be the maximum guardrail height that would safely contain and redirect 1100C vehicles and not allow underride or excessive vehicle snag on support posts. Recommendations were also provided regarding the safety performance of the MGS with increased height.
机译:目标:护栏高度在错误车辆与路边护栏相互作用的方式中起着至关重要的作用。较低的轨道高度会增加车辆侧翻和超驰的倾向,而过高的轨道则会导致行驶不足。此外,路侧地形的变化可能会改变轨道安装高度和嵌入深度。为了适应施工公差、土壤侵蚀、冻胀和未来的道路覆盖层,可能需要增加护栏高度。本研究的目的是调查和确定中西部护栏系统的最大安全安装高度,该系统在路面覆盖之前和之后将保持坚固和耐撞性。方法:进行研究调查,以评估标准787 mm(31 in.)增加安装高度的安全性能-高中西部护栏系统(MGS)通过碰撞测试和计算机模拟。在顶轨安装高度分别为864和914mm(34和36英寸)的MGS上进行了两次小型客车的全尺寸碰撞试验。测试结果用于校准计算机模拟模型。结果:在第一次测试中,一辆小车以864毫米(34英寸)的速度撞击MGS轨道高度为102km/h(63.6mph)和25.0度,并成功重定向。在第二次测试中,另一辆小车以914毫米(36英寸)的速度撞击MGS轨道高度为103公里/小时(64.1英里/小时)和25.6度,并取得了成功。两个系统高度均满足《安全硬件评估手册》(MASH)测试3级(TL-3)评估标准。测试结果用于校准计算机模拟模型。安装高度为36英寸。被确定为安全容纳和重定向小型汽车的最大护栏高度。模拟证实护栏高度较高(即37英寸)可能会导致小型车行驶不足。此外,仿真结果表明,乘用车模型成功地包含在34英寸和36英寸-安装在坡度为6:1的引道斜坡上的高MGS。结论:安装高度为914mm(36英寸)被确定为最大护栏高度,该高度将安全地容纳和重定向1100C车辆,且不允许车辆在支撑柱上减速或过度堵塞。此外,还就MGS的安全性能提出了建议。

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