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首页> 外文期刊>Rural and Environmental Engineering >Trickle Irrigation of Okra Based on Small Pan Evaporation Schedule under Glasshouse Condition
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Trickle Irrigation of Okra Based on Small Pan Evaporation Schedule under Glasshouse Condition

机译:温室条件下基于小盘蒸发量的黄秋葵ckle灌。

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A small pan evaporation-based schedule for microirrigated okra (Hibiscus esculentus) was carried out using an experimentally derived evapotranspiration (ET_c) equation ET_c=a K_(pan)K_cE_(sp)~b, where a and b were 0.58 and 1.3 respectively for the data used, K_(pan) is coefficient for class A pan evaporation, E_(sp) is evaporation from a small pan evaporation, and K_c is crop coefficient. For suitably selected K_(pan) and K_c values, daily crop water needs were computed as irrigation requirements forthree microirrigation treatments: porous cylindrical pot [subsurface cylindrical (SSC) source], porous rubber tube [subsurface line (SSL) source], and surface dripper [surface point (SP) source]. Fresh fruit yields of 2.30, 3.53, and 3.47 t ha~(-1) wererealized for thfe pot, rubber, and drip treatments respectively, compared with commercially reported yields of 2-31 ha~(-1). Water use efficiency (WUE) values were 2.35, 3.60, and 3.54 kg m~3 for the pot, rubber, and drip treatments respectively. The yield differences are purely incidental and do not necessarily reflect the true potentials of the systems under investigation. Whereas the rubber and drip treatments were standard systems, the pot system was newly designed and hence suffered some technical hitches. Also, the equation used over-predicted irrigation requirements up to mid-season but under-predicted requirements beyond mid-season.
机译:使用实验得出的蒸发蒸腾量(ET_c)方程ET_c = a K_(pan)K_cE_(sp)〜b进行基于小锅蒸发的微灌溉秋葵(Hibiscus esculentus)计划,其中a和b分别为0.58和1.3使用的数据,K_(pan)是A类锅蒸发的系数,E_(sp)是小锅蒸发的蒸发,K_c是作物系数。对于适当选择的K_(pan)和K_c值,将每日作物需水量作为三种微灌溉处理的灌溉要求进行计算:多孔圆柱盆[地下圆柱(SSC)源],多孔橡胶管[地下线(SSL)源]和表面滴头[表面点(SP)源]。盆栽,橡胶和滴灌处理的新鲜水果产量分别为2.30、3.53和3.47 t ha〜(-1),而商业报道的单产为2-31 ha〜(-1)。盆栽,橡胶和滴水处理的水分利用效率(WUE)值分别为2.35、3.60和3.54 kg m〜3。产量差异纯粹是偶然的,不一定反映所研究系统的真实潜力。橡胶和滴灌处理是标准系统,盆式系统是新设计的,因此遇到了一些技术难题。此外,该公式使用了直到季节中期的高估灌溉需求,但使用了季节中期以后的低估灌溉需求。

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