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A comprehensive stress indicator for evaluating plant water status in almond trees

机译:一种评价杏仁树木植物水位的综合应力指标

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摘要

This study evaluated a comprehensive plant water stress indicator that integrates the leaf temperature and the environmental conditions that can provide feedback on the plant response to irrigation scheduling. This quantity Comprehensive Stress Indicator (CSI)-is based on the reformulation of the leaf energy balance equation. Specifically, CSI is the ratio of the temperature difference between a dry leaf (i.e., a leaf with a broken stem) and a live leaf (on the same tree) [i.e., T-dry-T-leaf and the difference between the vapor pressure inside the stomatal cavity at saturation and the vapor pressure of the air at ambient temperature [i.e., e(s)(T-L)-e(T-A)]. The required measurements to compute CSI include dry leaf temperature, live leaf temperature, relative humidity, and air temperature at the tree being monitored. In this study, all measurements were obtained using a sensor suite called the leaf monitor. Leaf monitors were connected to a wireless mesh network to communicate the data to a website. The leaf monitor included two thermal infrared sensors, one for the dry leaf and one for the live leaf, both of which were housed in the same unit with almost identical environmental conditions due to a diffusing hemispherical dome that enclosed these sensors. The CSI is a dynamic indicator with a value for every data sample collected. For a single indicator representing each day, the CSI was evaluated in two ways. First, the CSI was integrated with respect to time from 10 A.M. to 6 P.M. to obtain the Integrated Comprehensive Stress Indicator (ICSI). Second, the CSI was averaged from 1 P.M. to 3 P.M. to obtain the Average Comprehensive Stress Indicator (ACSI). Both ICSI and ACSI were compared to other stress indicators, including the existing Crop Water Stress Index (CWSI) and Integrated Degrees Above Non-Stressed (IDANS). Results show that ICSI and ACSI are satisfactorily correlated with midday stem water potential (SWP). The ICSI and ACSI indicators may be more convenient than other stress indicators because they require measurements only at the tree being monitored.
机译:本研究评估了综合植物水应力指示器,其集成了叶温和环境条件,可以提供有关植物响应的反馈的灌溉调度。该数量综合应力指标(CSI) - 基于叶能平衡方程的重构。具体地,CSI是干叶(即,叶片有断裂茎)和活叶(在同一树上)之间的温差比率[即T-DRY-T-叶和蒸汽之间的差异气孔腔内的压力在环境温度下空气的蒸汽压力[即,E(s)(tl)-e(ta)]。计算CSI所需的测量包括在被监测的树上的干燥叶温,活叶温度,相对湿度和空气温度。在这项研究中,使用称为叶片监视器的传感器套件获得所有测量。叶片监视器已连接到无线网状网络,以将数据传送到网站。叶片显示器包括两个热红外传感器,一个用于干燥的叶片,一个用于活叶,其两者都被容纳在同一单元中,其具有几乎相同的环境条件,由于封闭这些传感器的漫射半球形圆顶。 CSI是一个动态指示器,具有收集的每个数据样本的值。对于每天代表的单个指示器,CSI以两种方式评估。首先,CSI与上午10点的时间融为一体。到下午6点。获得综合综合应力指标(ICSI)。其次,CSI平均为下午1点。到下午3点。获得平均综合应力指标(ACSI)。将ICSI和ACSI两者与其他应力指标进行比较,包括现有的作物水分应激指数(CWSI)和综合度(IDANS)。结果表明,ICSI和ACSI与午间干水潜力(SWP)令人满意地相关。 ICSI和ACSI指示器可能比其他压力指示器更方便,因为它们只需要在被监视的树上进行测量。

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