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Investigating plant transpiration-induced soil suction affected by root morphology and root depth

机译:研究植物蒸腾作用引起的根系形态和根深对土壤吸力的影响

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This study evaluates the effects of root morphology and depth on the enhancement of induced suctions in soil grounds due to transpiration. Root morphology is idealized as uniform, triangular, parabolic and exponential distributions based on observations and the transpiration process is governed by the modified Richards equation. The study reveals that the exponential and triangular root networks enhance soil suctions more remarkably than the uniform and parabolic patterns. With the same total root amount, a root network with most of root amount concentrated in the superficial zone can induce significantly higher suction values than a root system distributed deeply.
机译:这项研究评估了根系形态和深度对土壤蒸腾作用引起的吸力增强的影响。根据观察结果,根形态被理想化为均匀,三角形,抛物线形和指数分布,并且蒸腾过程由修改后的Richards方程控制。该研究表明,指数和三角形根网络比均匀和抛物线模式显着提高了土壤吸力。在总根数相同的情况下,大部分根数集中在表层区域的根网比深分布的根系可诱导更高的吸力值。

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