基于贯入阻力与含水率联测的黄土填方压实度检测方法

于永堂, 郑建国, 刘争宏, 张继文, 杜伟飞

长江科学院院报 ›› 2018, Vol. 35 ›› Issue (3) : 129-134.

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长江科学院院报 ›› 2018, Vol. 35 ›› Issue (3) : 129-134. DOI: 10.11988/ckyyb.20171073
岩土工程测试与监测

基于贯入阻力与含水率联测的黄土填方压实度检测方法

  • 于永堂1,2a,2b, 郑建国1,2a,2b, 刘争宏2a,2b, 张继文2a,2b,3, 杜伟飞2a,2b
作者信息 +

Method of Measuring Compaction Degree of Loess-filled Ground Based on Simultaneous Measurement of Soil Penetration Resistance and Water Content

  • YU Yong-tang1,2,3, ZHENG Jian-guo1,2,3, LIU Zheng-hong2,3, ZHANG Ji-wen2,3,4, DU Wei-fei2,3
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文章历史 +

摘要

利用普氏贯入仪检测填土压实度时,填土的含水率变化会使测量结果产生较大误差。为消除含水率对普氏贯入仪压实度检测结果的影响,提出了普氏贯入仪、土壤水分传感器联合测试、数据融合建模的压实度检测方法。建立测试土模型时,采用普氏贯入仪、土壤水分传感器分别测定试样的贯入阻力和土壤水分传感器输出电压,同时采用灌砂法、烘干法测定试样的干密度和含水率,根据试验结果分析了含水率、干密度对贯入阻力的影响规律,构建了干密度、贯入阻力、土壤水分传感器输出电压三者的数学模型。试验结果表明:采取双传感器联合测试、融合建模,可使测试结果受含水率的影响明显减小,精度显著提高。研究成果可为开发集贯入阻力、含水率测试功能为一体的压实度检测设备提供参考。

Abstract

When Proctor Penetrometer is used to measure the compaction degree of filled soil in field, the variation of soil water content would bring about large error to the measurement results. In this article, a new method for compaction measurement integrating Proctor Penetrometer and soil moisture sensor is proposed and the soil models are built based on dual-sensor data fusion to reduce the influence of water content on the compaction test. Compacted loess samples with different water content and dry density are prepared. The penetration resistance measured by Proctor Penetrometer and the output voltage measured by soil moisture sensor are compared with the dry density determined accurately by sand replacement method and the water content determined accurately by oven-drying method. Binary regression analysis method is applied to conduct data fusion and set up a mathematical model involving
dry density, penetration resistance and output voltage. Test result indicates that after fusing the penetration resistance with the output voltage, the dry density can be measured directly and less influenced by water content and closer to the true soil dry density value, thus the influence of water content on the measurement results is greatly reduced.

关键词

黄土填方地基 / 普氏贯入仪 / 含水率 / 土壤水分传感器 / 压实度检测

Key words

loess-filled ground / Proctor Penetrometer / water content / soil moisture sensor / compaction measurement

引用本文

导出引用
于永堂, 郑建国, 刘争宏, 张继文, 杜伟飞. 基于贯入阻力与含水率联测的黄土填方压实度检测方法[J]. 长江科学院院报. 2018, 35(3): 129-134 https://doi.org/10.11988/ckyyb.20171073
YU Yong-tang, ZHENG Jian-guo, LIU Zheng-hong, ZHANG Ji-wen, DU Wei-fei. Method of Measuring Compaction Degree of Loess-filled Ground Based on Simultaneous Measurement of Soil Penetration Resistance and Water Content[J]. Journal of Changjiang River Scientific Research Institute. 2018, 35(3): 129-134 https://doi.org/10.11988/ckyyb.20171073
中图分类号: TU43   

参考文献

[1] CHRISTOPHER L M, JASON S H. Using Electrical Density Gauges for Field Compaction Control[R].Newark:University of Delaware,2011.
[2] 郑建国,羊群芳,刘争宏,等.EDG无核密度仪标定模型与测试误差的试验研究[J].岩石力学与工程学报,2016,35(8):1697-1704.
[3] 顾欢达,薛国强,胡 舜,等.SDG密度仪路基压实度检测及效果评价[J].北京工业大学学报,2013,39(12):1835-1842.
[4] 季建兵,宋蓓蓓.MDI无核密度仪在试验检测中的应用初探[J]. 人民长江,2009,40(12):25-26.
[5] 陈 赟,陈 伟,陈仁朋,等.TDR联合监测土体含水量和干密度的传感器的设计及应用[J].岩石力学与工程学报,2011,30(2):418-426.
[6] 朱海江.普氏贯入仪在水利工程筑坝中的应用[J]. 地基处理,2002,13(3):50-52.
[7] 聂志坚,丁再涛,李 可.电子智能普氏贯入仪与环刀法对比检测在砂坝上的应用[J].中国水利,2002,(11):68.
[8] 范 云.填土压实质量检测技术的发展与评析[J].岩土力学,2002,23(4):524-529.
[9] 赵燕东,张一鸣.基于驻波率原理的土壤含水率测量方法[J]. 农业机械学报,2002,33(4):109-111,121.
[10]赵燕东,王一鸣.基于驻波率原理的土壤水分传感器的测量敏感度分析[J].农业工程学报,2002,18(2):5-8.
[11]张志勇.基于驻波率原理的土壤水分测量方法的研究[D]. 太原:山西农业大学,2005.
[12]张 益,马友华,江朝晖,等.土壤水分快速测量传感器研究及应用进展[J].中国农学通报,2014,30(5):170-174.
[13]GB/T 50123—1999,土工试验方法标准[S].北京:中国计划出版社,1999.

基金

陕西省科技统筹创新工程计划项目(2016KTZDSF04-05-01);国家科技支撑计划项目(2013BAJ06B00);国机集团重点研发项目(SINOMACH 2017科249号)

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