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Using a Simple Apparatus to Measure Direct and Diffuse Photosynthetically Active Radiation at Remote Locations

机译:使用简单的仪器测量偏远地区的直接和漫射光合有效辐射

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摘要

Plant canopy interception of photosynthetically active radiation (PAR) drives carbon dioxide (CO2), water and energy cycling in the soil-plant-atmosphere system. Quantifying intercepted PAR requires accurate measurements of total incident PAR above canopies and direct beam and diffuse PAR components. While some regional data sets include these data, e.g. from Atmospheric Radiation Measurement (ARM) Program sites, they are not often applicable to local research sites because of the variable nature (spatial and temporal) of environmental variables that influence incoming PAR. Currently available instrumentation that measures diffuse and direct beam radiation separately can be cost prohibitive and require frequent adjustments. Alternatively, generalized empirical relationships that relate atmospheric variables and radiation components can be used but require assumptions that increase the potential for error. Our goal here was to construct and test a cheaper, highly portable instrument alternative that could be used at remote field sites to measure total, diffuse and direct beam PAR for extended time periods without supervision. The apparatus tested here uses a fabricated, solar powered rotating shadowband and other commercially available parts to collect continuous hourly PAR data. Measurements of total incident PAR had nearly a one-to-one relationship with total incident radiation measurements taken at the same research site by an unobstructed point quantum sensor. Additionally, measurements of diffuse PAR compared favorably with modeled estimates from previously published data, but displayed significant differences that were attributed to the important influence of rapidly changing local environmental conditions. The cost of the system is about 50% less than comparable commercially available systems that require periodic, but not continual adjustments. Overall, the data produced using this apparatus indicates that this instrumentation has the potential to support ecological research via a relatively inexpensive method to collect continuous measurements of total, direct beam and diffuse PAR in remote locations.
机译:植物冠层对光合有效辐射(PAR)的拦截驱动了土壤-植物-大气系统中的二氧化碳(CO2),水和能量循环。要量化截获的PAR,需要对顶盖上方的总入射PAR进行精确测量,并需要直接测量光束和漫射PAR分量。虽然某些区域数据集包含这些数据,例如由于来自大气辐射测量(ARM)计划站点,因此它们通常不适用于本地研究站点,因为环境变量的可变性质(时空)会影响进入的PAR。当前可用的分别测量漫射和直接束辐射的仪器价格昂贵,并且需要经常调整。可替代地,可以使用与大气变量和辐射分量相关的广义经验关系,但是需要增加误差可能性的假设。我们的目标是构建和测试一种更便宜,高度便携的仪器替代品,该替代品可以在偏远地区现场使用,以在无监督的情况下长时间测量总光束,散射光束和直接光束PAR。此处测试的设备使用人造的太阳能旋转阴影带和其他可商购的零件来收集连续的每小时PAR数据。总入射PAR的测量与通畅的点量子传感器在同一研究地点进行的总入射辐射的测量几乎是一对一的关系。此外,漫射PAR的测量值与先前发布的数据的建模估计值相比具有优势,但显示出明显的差异,这归因于快速变化的本地环境条件的重要影响。该系统的成本比需要定期但不连续调整的可比较的商用系统低约50%。总体而言,使用该仪器产生的数据表明该仪器具有通过相对廉价的方法来支持生态研究的潜力,该方法可收集偏远地区的总直射光束和散射PAR的连续测量值。

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