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Sensors and instrumentation to measure Sap flow in small stem plants

机译:传感器和仪器来测量小茎植物中的汁液流量

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Heat-based sap flow sensors are widely used in research to analyse plant-water relationships and to study water flow dynamics of plants to determine the water requirements for optimum growth. To date, the majority of field studies of sap flow have been conducted in large plants, with only a few methods being suitable for small stems of less than 10 mm in diameter. This paper discusses the suitability of sensors and electronic designs for a heat-based method to monitor sap flows over the velocity range 2-150 cm/hr, in a small plant stems of 5 to 10 mm in diameter. Three heat-pulse methods (Compensated Heat Pulse, Heat Ratio and Tmax) were tested using both internal and external sensor designs. Based on preliminary findings, two alternative methods of analysis were developed and tested in the laboratory. A short field experiment was carried out to compare heat pulse velocity and global solar radiation. We found the external sensor was not suitable for small stems ( 3mm) bark. A small internal sensor showed more promising results for resolving a wider range of sap flows and tracking the influence of global solar radiation.
机译:基于热的汁液流量传感器广泛用于研究,以分析植物与水的关系,并研究植物的水流动力学,以确定最佳生长所需的水量。迄今为止,大多数关于树液流动的田间研究都是在大型植物中进行的,只有少数几种方法适用于直径小于10毫米的小茎。本文讨论了传感器和电子设计是否适合以热为基础的方法来监测直径5至10 mm的小植物茎中2-150 cm / hr速度范围内的液流。使用内部和外部传感器设计测试了三种热脉冲方法(补偿热脉冲,热比和Tmax)。根据初步发现,开发了两种可供选择的分析方法,并在实验室中进行了测试。进行了短场实验以比较热脉冲速度和整体太阳辐射。我们发现外部传感器不适用于小茎(3毫米)树皮。小型内部传感器在解决更广泛的树液流动和跟踪全球太阳辐射的影响方面显示出更可观的结果。

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