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Deep percolation in greenhouse-cultivated celery using the technique of subsurface film strips placement

机译:使用地下膜条放置技术的温室栽培芹菜深渗滤

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摘要

To reduce the deep percolation during greenhouse vegetable cultivation, the technique of subsurface film strips placement was tested. Four treatments with two kinds of cross-sections (flat and U-shaped) and two different spacings (10 cm and 40 cm) of subsurface film strips were arranged in a greenhouse before planting celery. At the same time, a non-film treatment was arranged for comparison. Soil water content was measured and irrigation time was adjusted according to the soil water content. Evapotranspiration of celery during growth was calculated by the method of energy balance and the deep percolation was calculated by the equation of water balance. Deep percolation was reduced in all experimental treatments. Greater reduction in deep percolation was observed when using U-shaped cross-section strips compared with that using the flat cross-section strips. In addition, greater reduction in deep percolation was observed when the spacing between the film strips was smaller. The results of this test showed that the technique of subsurface film strips placement can reduce deep percolation and conserve irrigation water for greenhouse vegetables cultivation. However, the optimal layout variables for the use of the technique of subsurface film strips placement need further experimental and numerical analysis.
机译:减少温室蔬菜种植在深层渗透,地下薄膜条放置的技术进行了试验。四个处理二种横截面(扁平的U形)和两个不同的间距的(10厘米和40厘米)地下薄膜条的排列在种植之前芹菜温室。与此同时,非膜处理被安排用于比较。土壤水分含量根据所述土壤水分含量测量和灌溉时间调整。生长期间芹菜蒸散物通过能量平衡的方法计算和深层渗透物通过水平衡的方程计算。深层渗透在所有的实验性治疗减少。使用U形横截面时条带相比较,观察到在深层渗透更大的减少,使用扁平横截面的条带。此外,观察到深层渗透更大的减少当薄膜条带之间的间距较小。该试验的结果表明,地下膜的技术条放置可以减少温室栽培蔬菜深层渗漏和养护灌溉用水。然而,对于使用地下膜的技术的最佳布局变量条放置需要进一步的实验和数值分析。

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