首页> 外文期刊>Australian Journal of Grape and Wine Research >Comparison of different protocols for indirect measurement of leaf area index with ceptometers in vertically trained vineyards
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Comparison of different protocols for indirect measurement of leaf area index with ceptometers in vertically trained vineyards

机译:在垂直培训的葡萄园中使用感知器间接测量叶面积指数的不同协议的比较

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Background and Aims: Most optical devices for indirect measurement of leaf area index (LAI) from canopy-transmitted light are tailored for homogeneous canopies, thus limiting their application to discontinuous canopies such as vertically trained vineyards. This study evaluates the influence of sun position on the reliability of LAI estimates provided by a ceptometer and proposes a measurement protocol for use of such instruments on vineyards under direct illumination.Methods and Results: Ceptometer readings at several sun elevation and azimuth angles were recorded in two fields. LAI estimated at different sun positions using several measurement protocols were then compared against destructive leaf area measurements. The best results when the sun position departs from the zenith (sun elevation < 40°) were achieved by reading the transmitted, photosynthetically active radiation in all the inter-row spaces, whereas measurements below the vines were suitable only when the sun illuminates close to the zenith. Conclusions: The homogeneity of the canopy fraction measured along the ceptometer at each individual reading is a major requirement in order to obtain non-biased LAI estimates. Therefore, the protocol followed to measure the transmitted photosynthetically active radiation at every sun position proved critical for the accuracy of LAI determination.Significance of Study: This study provides guidelines for reducing LAI uncertainties associated with vineyard canopy structure in LAI estimation with linear array optical devices such as ceptometers.
机译:背景与目的:大多数用于通过冠层透射光间接测量叶面积指数(LAI)的光学设备都是为均质冠层量身定制的,因此将其应用于不连续冠层,例如垂直培训的葡萄园。这项研究评估了太阳位置对由引力计提供的LAI估计值的可靠性的影响,并提出了在直射光照下在葡萄园中使用此类仪器的测量协议。方法和结果:两个领域。然后将使用几种测量方案在不同太阳位置估计的LAI与破坏性叶面积测量进行比较。通过读取所有行间空间中透射的,具有光合活性的辐射,可以实现最佳的结果,即太阳位置偏离天顶(太阳高度<40°),而藤蔓以下的测量仅在太阳照亮接近天顶。结论:为了获得无偏差的LAI估计值,在每个单独的读数上沿接受器测量的冠层分数的均匀性是主要要求。因此,遵循协议在每个太阳位置测量传输的光合有效辐射对LAI测定的准确性至关重要。例如电表。

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