Correction of the determination for asphalt pavement surface texture depth by sand patch method

IF 5.2 2区 工程技术 Q1 ENGINEERING, MULTIDISCIPLINARY
Bo Zhou , Bochao Zhou , Zeyuan Han , Xinrui Xie
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Abstract

To enhance the accuracy of the sand patch method, this study proposes an improved sand patch method based on the original one through pre-test. The research has demonstrated that the mean texture depth (MTD) by the original sand patch method has a large fluctuation and low accuracy, measured supported by extensive on-site testing with a relative error ranging from 3.4 % to 55.0 %. In order to improve its precision, this study adopted a stepwise sand volume to determine the sand spreading diameter and proposed the steady-state range for both. The results showed that the steady-state range of sand volume and diameter varies under different texture depths. The recommended sand spreading volume for lower texture depth (MTD < 0.5 mm) is 25 ml, and for medium texture depth (0.5 mm < MTD < 1 mm) is 50 ml, and for higher texture depth (1 mm < MTD < 1.25 mm) is 75 ml. To facilitate on-site testing, a sand spreading diameter of 25 cm can be used as the criterion. Starting with a sand volume of 25 ml, the sand is spread incrementally bu step of 25 ml until the diameter reaches 25 cm, then the test data obtained is considered valid. The improved sand patch method has a relative error ranging from 3.3 % to 4.6 %, significantly enhancing the stability and accuracy of pavement texture depth test, successfully overcoming the limitations of the original sand patch method.
砂块法测定沥青路面表面纹理深度的修正
为了提高沙块法的精度,本研究在原沙块法的基础上,通过预试提出了一种改进的沙块法。研究表明,原始砂块法测得的平均纹理深度(MTD)波动大,精度低,在大量现场测试的支持下,相对误差在3.4% ~ 55.0%之间。为了提高其精度,本研究采用逐级砂粒体积来确定砂粒扩散直径,并提出了两者的稳态范围。结果表明:在不同的纹理深度下,砂体体积和直径的稳态范围是不同的;较低纹理深度的推荐撒砂量(MTD <;0.5 mm)为25 ml,对于中等质地深度(0.5 mm <;MTD & lt;1毫米)为50毫升,对于更高的纹理深度(1毫米<;MTD & lt;1.25 mm)为75ml。为便于现场测试,可采用25cm的撒砂直径作为标准。砂体体积为25ml,以25ml为步长,逐级递增,直至砂体直径达到25cm,则认为得到的试验数据有效。改进的铺沙法相对误差在3.3% ~ 4.6%之间,显著提高了路面纹理深度测试的稳定性和准确性,成功克服了原有铺沙法的局限性。
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来源期刊
Measurement
Measurement 工程技术-工程:综合
CiteScore
10.20
自引率
12.50%
发文量
1589
审稿时长
12.1 months
期刊介绍: Contributions are invited on novel achievements in all fields of measurement and instrumentation science and technology. Authors are encouraged to submit novel material, whose ultimate goal is an advancement in the state of the art of: measurement and metrology fundamentals, sensors, measurement instruments, measurement and estimation techniques, measurement data processing and fusion algorithms, evaluation procedures and methodologies for plants and industrial processes, performance analysis of systems, processes and algorithms, mathematical models for measurement-oriented purposes, distributed measurement systems in a connected world.
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