首页> 外文期刊>HortTechnology >Use of Reduced Irrigation Operating Pressure in Irrigation Scheduling. II. Effect of Reduced Irrigation System Operating Pressure on Drip-tape Flow Rate, Water Application Uniformity, and Soil Wetting Pattern on a Sandy Soil
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Use of Reduced Irrigation Operating Pressure in Irrigation Scheduling. II. Effect of Reduced Irrigation System Operating Pressure on Drip-tape Flow Rate, Water Application Uniformity, and Soil Wetting Pattern on a Sandy Soil

机译:在灌溉调度中使用降低的灌溉操作压力。二。灌溉系统工作压力降低对砂质土壤上滴灌带流速,水分施用均匀性和土壤润湿模式的影响

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For shallow-rooted vegetables grown in sandy soils with low water-holding capacity (volumetric water content <10%), irrigation water application rate needs to provide sufficient water to meet plant needs, to avoid water movement below the root zone, and to reduce leaching risk. Because most current drip tapes have flow rates (FRs) greater than soil hydraulic conductivity, reducing irrigation operating pressure (OP) as a means to reduce drip emitter FR may allow management of irrigation water application rate. The objectives of this study were to determine the effect of using a reduced system OP (6 and 12 psi) on the FRs, uniformity, and soil wetted depth and width by using three commercially available drip tapes differing in emitter FR at 12 psi (Tape A = 0.19 gal/h, Tape B = 0.22 gal/h, and Tape C = 0.25 gal/h). Reducing OP reduced FRs (Tape A = 0.13 gal/h, Tape B = 0.17 gal/h, and Tape C = 0.16 gal/h) without affecting uniformity of irrigation at 100 and 300 ft lateral runs. Flow rate was also reduced at 300-ft lateral length compared with 100 ft for all three tapes. Uniformity was reduced ["moderate" to "unacceptable" emitter flow variation (q(var)) and "moderate" coefficient of variation (cv)] at 300 ft for Tape B and C compared with "good" q(var) and "moderate" to "excellent" cv at 100 ft. Using soluble dye as a tracer, depth (D) of the waterfront response to irrigated volume ( V) was quadratic, D = 4.42 + 0.21 V - 0.001 V-2. (P < 0.01, R-2 = 0.72), at 6 psi, with a similar response at 12 psi, suggesting that depth of the wetted zone was more affected by total volume applied rather than by OP itself. The depth of the wetted zone went below 12 inches when V was approximate to 45 gal/100 ft, which represented approximate to 3 h of irrigation at 6 psi and 1.8 h of irrigation at 12 psi for a typical drip tape with FR of 0.24 gal/h at 12 psi. These results show that, for the same volume of water applied, reduced OP allowed extended irrigation time without increasing the wetted depth. OP also did not affect the width (W) of the wetted front, which was quadratic, W = 6.97 + 0.25 V-0.002 V-2 (P < 0.01, R-2 = 0.70), at 6 psi. As the maximum wetted width at reduced OP was 53% of the 28-inch-wide bed, reduced OP should be used for two-row planting or drip-injected fumigation only if two drip tapes were used to ensure good coverage and uniform application. Reducing OP offers growers a simple method to reduce FR and apply water at rates that match more closely the hourly evapotranspiration, minimizing the risk of leaching losses.
机译:对于在低持水量(体积水含量<10%)的沙质土壤上种植的浅根蔬菜,灌溉水的施用量需要提供足够的水以满足植物的需求,避免水分流向根区以下,并减少浸出风险。因为大多数当前的滴灌带的流速(FRs)大于土壤的水力传导率,所以降低灌溉操作压力(OP)作为减少滴灌喷头FR的一种方法可以管理灌溉水的施用量。这项研究的目的是通过使用三种在12 psi(Tape)下发射器FR不同的滴灌胶带来确定使用降低的系统OP(6和12 psi)对FR,均匀性以及土壤润湿深度和宽度的影响A = 0.19 gal / h,胶带B = 0.22 gal / h,胶带C = 0.25 gal / h)。降低OP降低的FRs(胶带A = 0.13 gal / h,胶带B = 0.17 gal / h,胶带C = 0.16 gal / h),而不影响100英尺和300英尺侧向灌溉的均匀性。与所有三个胶带的100英尺相比,在300英尺的横向长度处的流速也降低了。磁带B和C在300 ft处的均匀度降低了[从“中等”到“不可接受”的发射器流量变化(q(var))和“中等”的变化系数(cv)],而与“良好”的q(var)和“在100英尺处,“中等”到“优秀”简历。使用可溶性染料作为示踪剂,对灌溉体积(V)的水边响应深度(D)是二次方的,D = 4.42 + 0.21 V-0.001 V-2。 (P <0.01,R-2 = 0.72),在6 psi下,在12 psi下具有相似的响应,表明润湿区域的深度受施加的总体积的影响更大,而不是受OP本身的影响。当V大约为45 gal / 100 ft时,润湿区域的深度低于12英寸,对于FR为0.24 gal的典型滴灌带来说,这相当于在6 psi下大约需要3 h灌溉,在12 psi下大约需要1.8 h灌溉。 / h在12 psi下。这些结果表明,对于相同量的水,减少的OP可以延长灌溉时间,而不会增加润湿深度。在6磅/平方英寸(psi)时,OP也不会影响润湿的前端的宽度(W),该宽度是二次方的,W = 6.97 + 0.25 V-0.002 V-2(P <0.01,R-2 = 0.70)。由于降低OP时的最大润湿宽度为28英寸宽床的53%,因此只有在使用两滴胶带确保良好覆盖和均匀涂抹的情况下,才应将降低的OP用于两行种植或滴灌熏蒸。减少OP为种植者提供了一种简单的方法来降低FR,并以与每小时的蒸散量更接近的速率浇水,从而将淋失损失的风险降至最低。

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