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Determining the Transpiration Rate of Peach Trees Under Two Trickle Irrigation Regimes

机译:确定两种滴灌条件下桃树的蒸腾速率

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摘要

The scientific design and management of a modern irrigation system requires that the designer or manager have knowledge of site and plant criteria such as infiltration, drainage, soil fertility, plant water needs, and plant production under varying conditions. With modern trickle systems water control is very precise and thus precise information on irrigation needs of a crop allow for the optimal use of water supplies.Work has been conducted on the effects of trickle irrigation on peach trees in North Central Texas. Initial data relating trickle irrigation amounts to total production, peach size, and plant growth have indicated that trickle irrigation may provide benefits that would offset costs of the irrigation system and water. Previous work however has related these benefits only to the amount of water applied through irrigation and did not consider the total water use of the tree.Research was undertaken to determine the transpiration rate of peach trees under two trickle irrigation regimes. To determine the transpiration rate a volume of soil around the test trees was instrumented with neutron access tubes. Soil moisture depletion was measured weekly. A soil water balance was conducted equating evapotranspiration to the sum of the change in the soil moisture content (a decrease being positive) plus irrigation applied, plus any rainfall that occurred in the period.For this work runoff and flux across the measurement zone boundaries was assumed zero. Estimates of evaporation from the soil surface were made using a two-stage evaporation process along with values of potential evapotranspiration made with the Penman (1956) equation. The estimates of evaporation from the soil surface were subtracted from total evapotranspiration to give estimates of the transpiration of the peach trees.Estimates of transpiration were not consistent from one measurement period to the next. Errors in the estimation of evaporation from the soil surface directly affect the estimate of transpiration. During latter stages of a rain-free period an estimate of transpiration was made which should not have been influences by the low values of evaporation from the soil surface that existed. This method of estimating transpiration has many errors and can be much improved upon by using a method such as a lysimeter to estimate transpiration more accurately.
机译:现代灌溉系统的科学设计和管理要求设计者或管理者了解场所和植物的标准,例如渗透,排水,土壤肥力,植物需水量以及不同条件下的植物产量。使用现代滴灌系统,水的控制非常精确,因此,有关农作物灌溉需求的精确信息可以最佳地利用水源。在德克萨斯中北部的peach树上,进行了滴灌的影响研究。有关trick灌与总产量,桃子大小和植物生长有关的初步数据表明,trick灌可能会带来抵消灌溉系统和水成本的收益。然而,先前的工作仅将这些益处与灌溉用水量相关,而没有考虑树木的总用水量。进行了研究以确定两种滴灌条件下桃树的蒸腾速率。为了确定蒸腾速率,用中子进入管对测试树周围的土壤进行测量。每周测量土壤水分消耗。进行土壤水平衡,使蒸散量等于土壤水分含量的变化(减少为正)加上所施加的灌溉量加上该期间内发生的任何降雨的总和。假定为零。使用两阶段蒸发过程以及通过Penman(1956)方程得出的潜在蒸散量来估算土壤表面的蒸发量。从总蒸散量中减去土壤表层蒸发量的估算值,得出桃树的蒸腾量。在一个测量时期至下一个测量时期,蒸腾量的估算值不一致。土壤表层蒸发量估算中的误差直接影响蒸腾量的估算。在无雨期的后期,对蒸腾作用进行了估算,这应该不受土壤表层蒸发量低的影响。该估计蒸腾量的方法具有许多误差,并且可以通过使用溶渗仪等方法更准确地估计蒸腾量,从而大大改进。

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