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模拟葡萄园土壤水平衡的季节动态。

Modelling the seasonal dynamics of the soil water balance of vineyards.

作者信息

Lebon Eric, Dumas Vincent, Pieri Philippe, Schultz Hans R

机构信息

UMR Écophysiologie des plantes sous stress environmentaux, LEPSE, INRA-ENSAM, 2 place Viala, F-34060 Montpellier cedex 1, France.

UMR Vigne et Vin d'Alsace, INRA-Université Louis Pasteur Strasbourg, 28 rue de Herrlisheim BP 507, F-68021 Colmar cedex, France.

出版信息

Funct Plant Biol. 2003 Jul;30(6):699-710. doi: 10.1071/FP02222.

Abstract

A geometrical canopy model describing radiation absorption (Riou et al. 1989, Agronomie 9, 441-450) and partitioning between grapevines (Vitis vinifera L.) and soil was coupled to a soil water balance routine describing a bilinear change in relative transpiration rate as a function of the fraction of soil transpirable water (FTSW). The model was amended to account for changes in soil evaporation after precipitation events and subsequent dry-down of the top soil layer. It was tested on two experimental vineyards in the Alsace region, France, varying in soil type, water-holding capacity and rooting depth. Simulations were run over four seasons (1992-1993, 1995-1996) and compared with measurements of FTSW conducted with a neutron probe. For three out of four years, the model simulated the dynamics in seasonal soil water balance adequately. For the 1996 season soil water content was overestimated for one vineyard and underestimated for the other. Sensitivity analyses revealed that the model responded strongly to changes in canopy parameters, and that soil evaporation was particularly sensitive to water storage of the top soil layer after rainfall. We found a close relationship between field-average soil water storage and pre-dawn water potential, a relationship which could be used to couple physiological models of growth and / or photosynthesis to the soil water dynamics.

摘要

一个描述辐射吸收的几何冠层模型(Riou等人,1989年,《农业学》9,441 - 450)以及葡萄藤(葡萄属葡萄)与土壤之间的分配,与一个土壤水分平衡程序相耦合,该程序描述了相对蒸腾速率随土壤可蒸腾水分比例(FTSW)的双线性变化。该模型经过修正,以考虑降雨事件后土壤蒸发的变化以及表层土壤随后的干涸情况。在法国阿尔萨斯地区的两个试验葡萄园进行了测试,这两个葡萄园在土壤类型、持水量和根系深度方面存在差异。模拟运行了四个季节(1992 - 1993年,1995 - 1996年),并与用中子探针进行的FTSW测量结果进行了比较。在四年中的三年里,该模型充分模拟了季节性土壤水分平衡的动态变化。对于1996年的季节,一个葡萄园的土壤含水量被高估,另一个葡萄园则被低估。敏感性分析表明,该模型对冠层参数的变化反应强烈,并且土壤蒸发对降雨后表层土壤的储水量特别敏感。我们发现田间平均土壤储水量与黎明前水势之间存在密切关系,这种关系可用于将生长和/或光合作用的生理模型与土壤水分动态耦合起来。

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