留言板

尊敬的读者、作者、审稿人, 关于本刊的投稿、审稿、编辑和出版的任何问题, 您可以本页添加留言。我们将尽快给您答复。谢谢您的支持!

姓名
邮箱
手机号码
标题
留言内容
验证码

基于Python的弹性膜约束力与仪器综合变形率定优化算法研究

刘彦华

刘彦华. 基于Python的弹性膜约束力与仪器综合变形率定优化算法研究[J]. 岩土工程技术, 2026, 40(4): 481-487. doi: 10.20265/j.cnki.issn.1007-2993.2025-0157
引用本文: 刘彦华. 基于Python的弹性膜约束力与仪器综合变形率定优化算法研究[J]. 岩土工程技术, 2026, 40(4): 481-487. doi: 10.20265/j.cnki.issn.1007-2993.2025-0157
LIU Yanhua. Optimization algorithm for calibration of elastic membrane binding force and instrument comprehensive deformation based on Python[J]. GEOTECHNICAL ENGINEERING TECHNIQUE, 2026, 40(4): 481-487. doi: 10.20265/j.cnki.issn.1007-2993.2025-0157
Citation: LIU Yanhua. Optimization algorithm for calibration of elastic membrane binding force and instrument comprehensive deformation based on Python[J]. GEOTECHNICAL ENGINEERING TECHNIQUE, 2026, 40(4): 481-487. doi: 10.20265/j.cnki.issn.1007-2993.2025-0157

基于Python的弹性膜约束力与仪器综合变形率定优化算法研究

doi: 10.20265/j.cnki.issn.1007-2993.2025-0157
详细信息
    作者简介:

    刘彦华,男,1982年生,硕士,高级工程师,主要从事工程物探与岩土工程勘察研究。E-mail:23744106@qq.com

  • 中图分类号: TU413

Optimization algorithm for calibration of elastic membrane binding force and instrument comprehensive deformation based on Python

  • 摘要: 旁压试验是岩土工程勘察中重要的原位测试方法,其中弹性膜约束力和仪器综合变形两个率定试验十分重要。然而,传统的率定方法依赖人工操作,并借助一些猜测模型,存在诸多局限性。基于Python语言对旁压试验两个率定算法优化,构建了仪器综合变形率定的最小二乘法线性模型和弹性膜约束力率定的三次多项式最小二乘法非线性模型。通过分析认为,仪器综合变形率定模型斜率计算合理,残差分布良好;三次多项式模型对弹性膜约束力率定拟合效果好,且引入正则化避免过拟合。研究表明,Python语言在旁压试验数据处理中优势明显,能通过优化算法来提高旁压试验结果的准确性。

     

  • 图  1  仪器综合变形率定曲线和残差分布图

    Figure  1.  Calibration curve and residual distribution diagram of instrument comprehensive deformation

    图  2  不同函数拟合弹性膜约束力率定曲线

    Figure  2.  Calibration curves of elastic membrane binding force fitted by different functions

    图  3  不同拟合曲线方程计算的Pi值对比

    Figure  3.  Comparison of Pi values calculated by different fitting curve equations

    图  4  不同拟合曲线方程与目测Pi数值绝对误差分析

    Figure  4.  Absolute error analysis of Pi values between different fitting curve equations and visual measurements

    图  5  不同拟合曲线方程与目测Pi数值相对误差分析

    Figure  5.  Relative error analysis of Pi values between different fitting curve equations and visual measurements

    图  6  三次多项式模型正则化参数与平均均方误差的关系

    Figure  6.  Relationship between regularization parameters and mean squared error of cubic polynomial model

    表  1  测管水位位移值sm(cm)与对应的弹性膜约束力Pi(kPa)

    Table  1.   Measured pipe water level displacement values sm (cm) and corresponding elastic membrane binding force Pi (kPa)

    点号 sm Pi Pia Pib Pic Pid
    1 2.9 27.8 34.8 34.5 26.5 27.7
    2 7.0 45.2 46.4 46.6 45.7 45.3
    3 10.1 52.8 52.4 52.3 53.1 52.8
    4 11.7 56 54.9 54.7 56 55.8
    5 12.7 57.6 56.4 56.2 57.5 57.5
    6 13.7 59 57.9 57.6 59 59
    7 14.7 60.3 59.2 58.9 60.4 60.4
    8 15.7 61.5 60.5 60.2 61.7 61.7
    9 16.8 62.9 61.9 61.5 63 63.1
    10 18.2 64.5 63.5 63.1 64.6 64.7
    11 20.5 67 66 65.7 67 67.2
    12 23.8 70.1 69.3 69.1 70 70.2
    13 28.2 73.4 73.3 73.2 73.6 73.7
    14 33.7 77.3 77.7 77.9 77.5 77.5
    下载: 导出CSV
  • [1] 李峰飞, 严 延, 吴国军. 旁压试验监测系统研究[J]. 工程勘察, 2009, 37(11): 20-22,27. (LI F F, YAN Y, WU G J. Research on monitoring system of the pressuremeter test[J]. Geotechnical Investigation & Surveying, 2009, 37(11): 20-22,27. (in Chinese)

    LI F F, YAN Y, WU G J. Research on monitoring system of the pressuremeter test[J]. Geotechnical Investigation & Surveying, 2009, 37(11): 20-22,27. (in Chinese)
    [2] 徐 良, 柴寿喜, 魏厚振, 等. 玄武岩残积土综合原位测试与分析研究[J]. 工程勘察, 2012, 40(10): 5-9,15. (XU L, CHAI S X, WEI H Z, et al. Study on in-situ comprehensive testing for the residual soil of basalt[J]. Geotechnical Investigation & Surveying, 2012, 40(10): 5-9,15. (in Chinese)

    XU L, CHAI S X, WEI H Z, et al. Study on in-situ comprehensive testing for the residual soil of basalt[J]. Geotechnical Investigation & Surveying, 2012, 40(10): 5-9,15. (in Chinese)
    [3] 游思琴, 孙海伦, 曾建纲. 旁压试验在广州地铁勘察中的应用[J]. 人民珠江, 2020, 41(S1): 67-71. (YOU S Q, SUN H L, ZENG J G. Application of pressure meter test in Guangzhou metro survey[J]. Pearl River, 2020, 41(S1): 67-71. (in Chinese)

    YOU S Q, SUN H L, ZENG J G. Application of pressure meter test in Guangzhou metro survey[J]. Pearl River, 2020, 41(S1): 67-71. (in Chinese)
    [4] 罗 晶. 利用旁压试验参数确定地基土承载力和模量[J]. 水文地质工程地质, 2001, 28(3): 38-40. (LUO J. Deducing foundation’s bearing capacity and modulus using pressurementer test’s data[J]. Hydrogeology & Engineering Geology, 2001, 28(3): 38-40. (in Chinese) doi: 10.3969/j.issn.1000-3665.2001.03.010

    LUO J. Deducing foundation’s bearing capacity and modulus using pressurementer test’s data[J]. Hydrogeology & Engineering Geology, 2001, 28(3): 38-40. (in Chinese) doi: 10.3969/j.issn.1000-3665.2001.03.010
    [5] 吴 文, 徐松林. 旁压仪在岩土工程深部原位测试中的应用[J]. 岩石力学与工程学报, 1999, 18(1): 100-103. (WU W, XU S L. The application of elastmeter to the deep in-situ measurement of geotechnical engineering[J]. Chinese Journal of Rock Mechanics and Engineering, 1999, 18(1): 100-103. (in Chinese)

    WU W, XU S L. The application of elastmeter to the deep in-situ measurement of geotechnical engineering[J]. Chinese Journal of Rock Mechanics and Engineering, 1999, 18(1): 100-103. (in Chinese)
    [6] 苏 辉, 杨石飞, 顾国荣. 基于旁压试验土体弹塑性本构模型初探[J]. 岩土力学, 2015, 36(S1): 131-136. (SU H, YANG S F, GU G R. Analysis of an elastoplastic constitutive model of soil based on pressure meter test[J]. Rock and Soil Mechanics, 2015, 36(S1): 131-136. (in Chinese) doi: 10.16285/j.rsm.2015.S1.022

    SU H, YANG S F, GU G R. Analysis of an elastoplastic constitutive model of soil based on pressure meter test[J]. Rock and Soil Mechanics, 2015, 36(S1): 131-136. (in Chinese) doi: 10.16285/j.rsm.2015.S1.022
    [7] 舒怀珠, 胡胜刚. 某水电站地基承载力和变形参数测试与分析[J]. 人民长江, 2007, 38(1): 54-56. (SHU H Z, HU S G. Measuring and testing of ground bearing capacity and deformation parameter for a water power station[J]. Yangtze River, 2007, 38(1): 54-56. (in Chinese) doi: 10.3969/j.issn.1001-4179.2007.01.021

    SHU H Z, HU S G. Measuring and testing of ground bearing capacity and deformation parameter for a water power station[J]. Yangtze River, 2007, 38(1): 54-56. (in Chinese) doi: 10.3969/j.issn.1001-4179.2007.01.021
    [8] 石祥锋, 汪 稔, 张家铭, 等. 旁压试验在岩土工程中的应用[J]. 岩石力学与工程学报, 2004, 23(S1): 4442-4445. (SHI X F, WANG R, ZHANG J M, et al. Application of pressuremeter tests in geotechnical engineering[J]. Chinese Journal of Rock Mechanics and Engineering, 2004, 23(S1): 4442-4445. (in Chinese) doi: 10.3969/j.issn.1006-2106.2013.11.018

    SHI X F, WANG R, ZHANG J M, et al. Application of pressuremeter tests in geotechnical engineering[J]. Chinese Journal of Rock Mechanics and Engineering, 2004, 23(S1): 4442-4445. (in Chinese) doi: 10.3969/j.issn.1006-2106.2013.11.018
    [9] 宋韩菲. 旁压试验估算地基侧向基床系数应用研究[J]. 山西建筑, 2014, 40(2): 99-100. (SONG H F. The application research on lateral loading test to estimate ground lateral reaction sub-grade coefficient[J]. Shanxi Architecture, 2014, 40(2): 99-100. (in Chinese) doi: 10.13719/j.cnki.cn14-1279/tu.2014.02.055

    SONG H F. The application research on lateral loading test to estimate ground lateral reaction sub-grade coefficient[J]. Shanxi Architecture, 2014, 40(2): 99-100. (in Chinese) doi: 10.13719/j.cnki.cn14-1279/tu.2014.02.055
    [10] 王吉利, 陈 盼, 刘金龙. 谈预钻式旁压试验[J]. 岩石力学与工程学报, 2020, 39(S1): 2911-2919. (WANG J L, CHEN P, LIU J L. Discussion on the pre-boring pressuremeter test[J]. Chinese Journal of Rock Mechanics and Engineering, 2020, 39(S1): 2911-2919. (in Chinese)

    WANG J L, CHEN P, LIU J L. Discussion on the pre-boring pressuremeter test[J]. Chinese Journal of Rock Mechanics and Engineering, 2020, 39(S1): 2911-2919. (in Chinese)
    [11] 黄佳铭, 郑先昌. 预钻式旁压试验现场实施与精度控制关键技术[J]. 工程勘察, 2013, 41(11): 27-31. (HUANG J M, ZHENG X C. Key techniques for field implement and precision control of pre-drilling pressuremeter tests[J]. Geotechnical Investigation & Surveying, 2013, 41(11): 27-31. (in Chinese)

    HUANG J M, ZHENG X C. Key techniques for field implement and precision control of pre-drilling pressuremeter tests[J]. Geotechnical Investigation & Surveying, 2013, 41(11): 27-31. (in Chinese)
    [12] 罗晓军. 旁压试验在缅甸土瓦码头地质勘察中的应用[J]. 中国水运, 2016, 16(6): 312-314. (LUO X J. Application of pressuremeter test in geotechnical investigation of Myanmar Thilawa Port[J]. China Water Transport, 2016, 16(6): 312-314. (in Chinese)

    LUO X J. Application of pressuremeter test in geotechnical investigation of Myanmar Thilawa Port[J]. China Water Transport, 2016, 16(6): 312-314. (in Chinese)
    [13] 朱彦琦, 赵祖禄. 旁压试验资料整理的PC-1500计算程序[J]. 勘察科学技术, 1986(3): 43-45. (ZHU Y Q, ZHAO Z L. PC-1500 calculation program for pressuremeter test data sorting[J]. Site Investigation Science and Technology, 1986(3): 43-45. (in Chinese)

    ZHU Y Q, ZHAO Z L. PC-1500 calculation program for pressuremeter test data sorting[J]. Site Investigation Science and Technology, 1986(3): 43-45. (in Chinese)
    [14] 徐 凯, 郑付涛. PM-1A型旁压仪弹性膜约束力校正曲线的幂函数模型及其应用实例[J]. 城市建设理论研究(电子版), 2012(26): 1-2. (XU K, ZHENG F T. Power function model of elastic membrane binding force calibration curve for PM-1A pressuremeter and its application example[J]. Theoretical Research in Urban Construction(electronic version), 2012(26): 1-2. (in Chinese)

    XU K, ZHENG F T. Power function model of elastic membrane binding force calibration curve for PM-1A pressuremeter and its application example[J]. Theoretical Research in Urban Construction(electronic version), 2012(26): 1-2. (in Chinese)
    [15] 艾旭波. Excel VBA及贝塞尔曲线在旁压试验数据处理中应用[J]. 山西建筑, 2012, 38(36): 287-288. (AI X B. On application of Excel VBA and Bezier curve in data treatment of lateral pressure test[J]. Shanxi Architecture, 2012, 38(36): 287-288. (in Chinese) doi: 10.3969/j.issn.1009-6825.2012.36.164

    AI X B. On application of Excel VBA and Bezier curve in data treatment of lateral pressure test[J]. Shanxi Architecture, 2012, 38(36): 287-288. (in Chinese) doi: 10.3969/j.issn.1009-6825.2012.36.164
  • 加载中
图(6) / 表(1)
计量
  • 文章访问数:  36
  • HTML全文浏览量:  13
  • PDF下载量:  1
  • 被引次数: 0
出版历程
  • 收稿日期:  2025-04-08
  • 修回日期:  2025-07-21
  • 录用日期:  2025-11-11
  • 刊出日期:  2026-08-08

目录

    /

    返回文章
    返回