Observed soil water retention and soil hydraulic conductivity data and fits to those data by RIAfitter and KRIAfitter
收藏资源简介:
Weber soils SWRC.7z: zipped file with the Windows folders that hold all input and output data related to fitting the RIA parameterization (de Rooij, 2022, 2024a) to soil water retention data of 13 soils. Weber soils UHCC.7z: the zipped folder structure with fits of several models (de Rooij, 2024b, c) for the unsaturated hydraulic conductivity for the same 13 soils as the other file. The fitting code (KRIAfitter) used the fitted parameters of the other file plus soil hydraulic conductivity data to produce the fits. Both files contain Excel files that process the input and output of all fits. The soils are taken from Weber et al. (2019). The support of T.K.D. Weber in providing the data is gratefully acknowledged, N.B. The output format may differ somewhat from that reported in the User Manual of de Rooij (2024c) because the fits were used to improve details of the code and the way information is provided in the output files. These variations do not affect the parameter fitting process. References de Rooij, G. H.: Technical note: A sigmoidal soil water retention curve without asymptote that is robust when dry-range data are unreliable, Hydrol. Earth Syst. Sci., 26, 5849–5858, doi: 10.5194/hess-26-5849-2022, 2022. de Rooij, G.: Fitting the parameters of the RIA parameterization of the soil water retention curve (2.0), Zenodo [code], doi: 10.5281/zenodo.6491978, 2024a. de Rooij, G. H.: Averaging or adding domain conductivities to calculate the unsaturated soil hydraulic conductivity, Vadose Zone J., e20329, doi: 10.1002/vzj2.20329, 2024b. de Rooij, G.: Fitting the junction model and other models for the unsaturated hydraulic conductivity curve: KRIAfitter, Zenodo [code], doi: 10.5281/zenodo.14047942, 2024c. Weber, T. K. D., Durner, W., Streck, T., and Diamantopoulos, E.: A modular framework for modeling unsaturated soil hydraulic properties over the full moisture range, Water Resour. Res., 55, 4994-5011, doi: 10.1029/2018WR024584, 2019.
Weber soils SWRC.7z:该压缩文件包含Windows文件夹结构,存储了将RIA参数化方法(de Rooij, 2022, 2024a)适配13种土壤的土壤持水曲线(Soil Water Retention Curve, SWRC)数据所需的全部输入与输出数据。 Weber soils UHCC.7z:该压缩文件夹结构包含针对与前述文件相同的13种土壤的非饱和导水率曲线(Unsaturated Hydraulic Conductivity Curve, UHCC)多款模型的拟合结果(de Rooij, 2024b, c)。所用拟合代码KRIAfitter基于前述文件得到的拟合参数,结合土壤导水率数据完成拟合。 两个压缩包均内含用于处理所有拟合任务输入与输出数据的Excel文件。 本数据集所用土壤样本源自Weber等(2019)的研究,在此衷心感谢T.K.D. Weber为数据提供所给予的支持。 注意:由于本数据集的拟合结果被用于优化代码细节及输出文件的信息呈现方式,其输出格式或与de Rooij(2024c)用户手册中描述的格式存在细微差异,但此类差异不会对参数拟合过程造成影响。 参考文献 de Rooij, G. H.: 技术简报:一种无渐近线的S型土壤持水曲线,适用于干燥区数据不可靠场景下的稳健计算,《水文与地球系统科学》,26卷,5849–5858页,doi: 10.5194/hess-26-5849-2022,2022年。 de Rooij, G.: 土壤持水曲线RIA参数化的参数拟合(2.0版),Zenodo [代码],doi: 10.5281/zenodo.6491978,2024a年。 de Rooij, G. H.: 通过平均或叠加区域导水率计算非饱和土壤导水率,《非饱和带杂志》,e20329,doi: 10.1002/vzj2.20329,2024b年。 de Rooij, G.: 非饱和导水率曲线的交界模型及其他模型拟合:KRIAfitter,Zenodo [代码],doi: 10.5281/zenodo.14047942,2024c年。 Weber, T. K. D., Durner, W., Streck, T., and Diamantopoulos, E.: 全湿度范围内非饱和土壤水力特性建模的模块化框架,《水资源研究》,55卷,4994-5011页,doi: 10.1029/2018WR024584,2019年。



