首页> 外文期刊>Geoderma: An International Journal of Soil Science >Marked differences between van Genuchten soil water-retention parameters for temperate and tropical soils: a new water-retention pedo-transfer functions developed for tropical soils
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Marked differences between van Genuchten soil water-retention parameters for temperate and tropical soils: a new water-retention pedo-transfer functions developed for tropical soils

机译:van Genuchten温带和热带土壤保水参数之间的显着差异:为热带土壤开发的一种新型保水pedo传递函数

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摘要

All of the physical, chemical and soil water-retention data suitable for the derivation of a Pedo-Transfer Functions (PTF) for water retention for tropical soils (771 suitable horizons) were extracted from the IGBP-DIS soil database. The parameters theta(s), theta(r), alpha and n of the van Genuchten (vG) [Soil Sci. Soc. Am. J. 44 (1980) 892] equation were derived and compared with parameter values from two published data sets of temperate region soils. Thirty-five percent of the soils in the tropical (IGBP/T) database were classified as clays, compared with only 4% and 7% in the temperate databases. The IGBP/T soil bulk densities were significantly lower (p<0.001) for nine textural classes. For the more clayey textural classes, the value of α was higher for the IGBP/T soils, implying more large pores and more structure. For kaolinitic soils in the IGBP/T database, α was typically around 0.4 kPa(-1) compared with 0.04 kPa(-1) for montmorillonitic soils. Mineralogy is clearly important and should be included in PTFs (if available). The value of n for clay soils in the IGBP/T data set was significantly higher than for temperate soils, and θ(s) was significantly higher for nine textural classes (p < 0.001) reflecting their lower bulk density. theta(r) was also significantly higher for all textural classes except sand. For clay, the mean value of theta(r) was 0.27 m(3) m(-3), compared to only 0.11 m(3) m(-3) for temperate soils. For 17% of the IGBP/T data, theta(r) exceeded 0.3 m(3) m(-3), a value often used as a fitting constraint. A tropical soil PTF was developed using multiple regression techniques. This predicted water-retention curves more reliably than either class PTFs or "soil class" PTFs, but was not reliable for low-density soils such as Andosols. The IGBP/T data set includes some groups of soils, e.g., Andosols and Ferralsols, whose properties are extremely different from those of most temperate soils. These differences emphasise the need to develop separate PTFs for tropical soils, or perhaps for specific groups of soils. There were few water-retention data from below 1.5-m depth and a complete lack of hydraulic conductivity data in the IGBP/T database. This is a major impediment to the modelling of water movement and uptake in deep-rooted ecosystems, for example, tropical forest and savannah.
机译:从IGBP-DIS土壤数据库中提取了适合推导Pedo-Transfer函数(PTF)来保持热带土壤保水的所有物理,化学和土壤保水数据(771个合适的视野)。 van Genuchten(vG)的参数theta(s),theta(r),alpha和n [Soil Sci。 Soc。上午。 J. 44(1980)892]方程被导出,并与来自两个温带地区土壤数据集的参数值进行比较。在热带(IGBP / T)数据库中,有35%的土壤被归类为黏土,而在温带数据库中只有4%和7%。九种质地类别的IGBP / T土壤容重显着降低(p <0.001)。对于更多的粘土质构类,IGBP / T土的α值较高,这意味着更大的孔隙和更多的结构。对于IGBP / T数据库中的高岭土,α通常约为0.4 kPa(-1),而蒙脱土为0.04 kPa(-1)。矿物学显然很重要,应包括在PTF中(如果有)。在IGBP / T数据集中,粘土的n值显着高于温带土壤,并且九种质地类别的θ(s)显着更高(p <0.001),反映出较低的堆积密度。除沙子外,所有质地类别的theta(r)也均显着较高。对于粘土,theta(r)的平均值为0.27 m(3)m(-3),而温带土壤的平均值仅为0.11 m(3)m(-3)。对于17%的IGBP / T数据,theta(r)超过0.3 m(3)m(-3),该值通常用作拟合约束。使用多种回归技术开发了热带土壤PTF。该预测的保水曲线比PTF类或“土壤类” PTF更为可靠,但对于低密度土壤(如Andosols)则不可靠。 IGBP / T数据集包括一些土壤组,例如Andosols和Ferralsols,其性质与大多数温带土壤的性质截然不同。这些差异强调需要为热带土壤或特定土壤类​​别开发单独的PTF。在IGBP / T数据库中,深度小于1.5米的保水数据很少,并且完全没有水力传导率数据。这是对根深蒂固的生态系统(例如热带森林和热带稀树草原)中的水运动和吸收进行建模的主要障碍。

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