基于粒子群优化算法-支持向量机的原状黄土Van Genuchten模型参数土壤传输函数Pedo-transfer functions of undisturbed loess Van Genuchten model based on particle swarm optimization algorithm and support vector machine
秦文静,樊贵盛
摘要(Abstract):
为了快速、省力、省时的获取原状黄土土壤水分特征曲线,以241个原状黄土土样为研究对象,通过测定其基本理化参数(质地、容重、有机质含量、电导率和pH)以及低吸力阶段的土壤水分特征曲线,构建了原状黄土土壤水分特征曲线土壤传输函数大样本。采用基于粒子群优化算法-支持向量机的方法实现了原状黄土土壤水分特征曲线土壤传输函数的构建。研究结果表明:(1)基于Spearman相关性分析,以土壤常规理化参数为自变量,运用基于粒子群优化算法-支持向量机方法获取原状黄土土壤Van Genuchten模型参数是可行的;(2)通过模型分析,认为文中所提出的基于粒子群优化算法-支持向量机土壤传输函数预测精度高、泛化能力强。
关键词(KeyWords): 原状黄土;低吸力阶段;土壤水分特征曲线;Spearman相关性分析;粒子群优化算法;支持向量机
基金项目(Foundation):
作者(Author): 秦文静,樊贵盛
DOI: 10.13448/j.cnki.jalre.2020.309
参考文献(References):
- [1] 于沉香,张虎元,等.盐渍土土水特征曲线测试及预报[J].水文与工程地质,2013,40 (2) :113-118.
- [2] BOUMA J.Using soil survey data for quantitative land evaluation[J].Advances in Soil Science,1989,9:177-233.
- [3] WOSTEN J H M,PACHEPSKY Y A,RAWLS W J.Pedotransfer functions:bridging the gap between available basic soil data and missing soil hydraulic characteristics[J].Journal of Hydrology,2001,251:123-150.
- [4] 姚娇转,刘廷玺,等.科尔沁沙地土壤水分特征曲线传递函数的构建与评估[J].农业工程学报,2014,30(20):98-108.
- [5] PETERS A,DURNER W.Simplified evaporation method for determining soil hydraulic properties[J].Journal of Hydrology,2008,356:147-162.
- [6] VAN GENUCHTEN M T.A closed-form equation for predicting the hydraulic conductivity of unsaturated porous media[J].Water Resource Research,1976,12:593-622.
- [7] BROOKS R H,COREY A T.Hydraulic properties of porous media[J].Hydrology,1964,3:27-40.
- [8] FREDLUND D G,XING A Q.A equation for the soil-water characteristic curve[J].Canadian Geotechnical Journal,1994,31:521-532.
- [9] KHALIL A ,ALMASRI M N,MCKEE M,et al.Applicability of statistical learning algorithms in groundwater quality modeling[J].Water Resources Research,2005,410(5).W05010.1-W05010.16.
- [10] ALEX J S,BERNHARD S.A tutorial on support vector regression[J].Statistics and Computing,2004,14(3):199-222.
- [11] 郭李娜,樊贵盛.基于网格搜索和交叉验证支持向量机的地表土壤容重预测[J].土壤通报,2018,49(3):512-518.
- [12] 牛海清,郑文坚,雷超平,等.基于有限元和粒子群算法的电缆周围土壤热特性参数估算方法[J].高电压技术,2018,44(5):1557-1563.