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首页> 外文期刊>Open Journal of Civil Engineering >Degradation of Retro-Reflectivity of Thermoplastic Pavement Markings: A Review
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Degradation of Retro-Reflectivity of Thermoplastic Pavement Markings: A Review

机译:热塑性路面标记回射率的降低:综述

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For an effective thermoplastic pavement marking replacement strategy, the rate at which the marking's retro-reflectivity deteriorates in service must be well established in order to avoid re-stripping that is too soon or too late. Against this background, this paper undertook a review of models that deal with degradation of thermoplastic pavement markings under different traffic and environmental conditions in order to establish service life and the terminal retro-reflectivity levels that have informed re-striping. Service life in the context of this paper is the time taken for a newly-installed marking to degrade to some minimum retro-reflectivity level below which motorists would find it difficult to navigate on the carriageway under night-time and poor visibility conditions. It was established that the minimum retro-reflectivity requiring re-stripping intervention reported varied, although commonly-adopted values tended to range from 50 mcd/m~2/lx to 150 mcd/m~2/lx. A number of empirical models, based on site specific conditions, have been developed by researchers using field data, to estimate marking retro-reflectivity at any time since placement. Whereas some of the models used time as the only independent variable, others used a combination of time, traffic level and a few other parameters to estimate retro-reflectivity. Even though degradation of marking retro-reflectivity is a reflection, among other things of material degeneration impacted by environmental and service conditions, almost all the models reviewed failed to consider environmental factors. Additionally, for some of the models, non-inclusion of the initial retro-reflectivity level and their generally low coefficient of determination statistic erode the confidence in their reliability.
机译:对于有效的热塑性路面标记更换策略,必须很好地确定标记在使用中的回射率下降的速率,以避免过早或过晚的重新剥离。在这种背景下,本文对处理不同交通和环境条件下热塑性路面标记降解的模型进行了回顾,以建立使用寿命和终端回射率水平,从而重新条纹化。在本文中,使用寿命是指新安装的标记降级到最低最低反射率所需的时间,在该最低反射率以下,驾驶员会发现在夜间和能见度差的情况下,很难在车道上行驶。已经确定,报告的需要重新剥离干预的最小后向反射率有所不同,尽管通常采用的值往往在50 mcd / m〜2 / lx到150 mcd / m〜2 / lx的范围内。研究人员使用现场数据开发了许多基于特定地点条件的经验模型,以估计自放置以来的任何时候标记的逆向反射率。有些模型使用时间作为唯一的独立变量,而另一些模型则使用时间,交通量和其他一些参数的组合来估计回射率。尽管标记后向反射率的下降反映了这一点,但除其他因素外,材料退化还受到环境和使用条件的影响,但几乎所有审查过的模型都没有考虑环境因素。另外,对于某些模型,不包括初始回射率水平和它们通常较低的确定系数统计量会削弱对其可靠性的信心。

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