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Using optical porosity to evaluate the shelter effectiveness of windbreaks in southern Ontario.

机译:使用光学孔隙率评估安大略省南部防风林的掩护效果。

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This thesis is an investigation of the relationship between the optical porosity of a windbreak and the shelter effect found behind it. Relative windspeed reduction was measured behind nine relatively narrow, homogeneous windbreaks to assess whether any characteristics of the windspeed reduction curve generated could be predicted from optical porosity. The latter was determined for each of the windbreaks by digitizing high contrast black and white photographic silhouettes using the Oculus digitizing system. Various structural and environmental parameters were also measured.; The results suggest that optical porosity can be used to predict minimum relative windspeeds and may therefore be useful as a guide in the field evaluation of windbreaks. The regression results suggest that greater predictive accuracy could be achieved if enough data were obtained to develop species-specific predictive equations. The relationship derived in this study should be applied only to those windbreaks with characteristics similar to those described above. (Abstract shortened by UMI.)
机译:本论文是对防风林光学孔隙率与在其后面发现的掩体效应之间关系的研究。在九个相对狭窄,均匀的防风林之后测量了相对风速降低,以评估是否可以根据光学孔隙率预测所产生的风速降低曲线的任何特征。通过使用Oculus数字化系统对高反差的黑白摄影轮廓进行数字化,为每个防风林确定了后者。还测量了各种结构和环境参数。结果表明,光学孔隙率可用于预测最小相对风速,因此可作为防风林野外评估的指南。回归结果表明,如果获得足够的数据来开发针对特定物种的预测方程,则可以实现更高的预测准确性。本研究中得出的关系应仅适用于具有与上述特征相似的防风林。 (摘要由UMI缩短。)

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