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Using light integrals and vapor pressure deficit to simulate irrigation scheduling for container nursery production

机译:利用光线积分和蒸气压赤字来模拟集装箱苗圃生产的灌溉调度

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In container nursery production, managing irrigation is critical for reducing agrichemical runoff. Boxwood (Buxus) and deutzia (Deutzia) plants grown in 1-gal and 3-gal containers respectively were conservatively irrigated by one of two substrate moisture sensor (SMS)-based regimes: 1) a daily water use (DWU) system that delivered the exact amount of water that had been lost in the previous 24 h and 2) an on-demand (OD) irrigation system based on a specific substrate moisture content derived from therelationship between substrate moisture and photosynthetic rate. Unfortunately, commercial nurseries have not readily adopted SMS-based irrigation systems partly due to expense and reliability of the sensors. The objective of the present study was to evaluate easily accessible weather variables [light integrals (LI) and vapor pressure deficit (VPD)] as a substitute for substrate moisture sensors to determine water volume applied for the DWU system and to predict timing of irrigation based on OD. Dailyirrigation water volume was correlated with daily LI (correlation coefficient, R = 0.68 and 0.63 for boxwood and deutzia, respectively) and less so with accumulated vapor pressure deficit (R= 0.36 and 0.19 for boxwood and deutzia, respectively). The analysis suggested that irrigation should be scheduled following 6,227 Wm~(-2) for boxwood and 5,880 Wm~(-2) for deutzia plants.
机译:在集装箱苗圃生产中,管理灌溉对于减少农业径流至关重要。在1-GAL和3-GAL容器中生长的Buckwood(Buxus)和Deutzia(Deutzia)植物分别由两个基板湿度传感器(SMS)的一个制度中的一种保守灌溉:1)每日供水(DWU)系统在前面24小时和2)之前丢失的确切水量为基于源自基质水分和光合速率之间的特定底物水分含量的按需(OD)灌溉系统。遗憾的是,由于传感器的费用和可靠性,商业托儿所没有容易采用基于SMS的灌溉系统。本研究的目的是评估易于触及的天气变量[光积分(Li)和蒸气压赤字(VPD)]作为基板湿度传感器的替代品,以确定施加DWU系统的水量并预测灌溉时机OD。日常测量水体积与日常LI(相关系数,r = 0.68和0.63分别用于双层和氘),较少的蒸气压力缺损(分别用于黄杨和德国的r = 0.36和0.19)。该分析表明,对于德杜兹植物,Buckwood和5,880 Wm〜(-2)的6,227 Wm〜(-2)次应安排灌溉。

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