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The relationship between leaf area index and microclimate in tropical forest and oil palm plantation: Forest disturbance drives changes in microclimate

机译:热带森林和油棕人工林叶面积指数与小气候之间的关系:森林干扰驱动小气候的变化

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Land use change is a major threat to biodiversity. One mechanism by which land use change influences biodiversity and ecological processes is through changes in the local climate. Here, the relationships between leaf area index and five climate variables air temperature, relative humidity, vapour pressure deficit, specific humidity and soil temperature are investigated across a range of land use types in Borneo, including primary tropical forest, logged forest and oil palm plantation. Strong correlations with the leaf area index are found for the mean daily maximum air and soil temperatures, the mean daily maximum vapour pressure deficit and the mean daily minimum relative humidity. Air beneath canopies with high leaf area index is cooler and has higher relative humidity during the day. Forest microclimate is also found to be less variable for sites with higher leaf area indices. Primary forest is found to be up to 2.5 degrees C cooler than logged forest and up to 6.5 degrees C cooler than oil palm plantations. Our results indicate that leaf area index is a useful parameter for predicting the effects of vegetation upon microclimate, which could be used to make small scale climate predictions based on remotely sensed data. (C) 2014 The Authors. Published by Elsevier B.V. This is an open access article under the CC BY license.
机译:土地使用变化是对生物多样性的主要威胁。土地利用变化影响生物多样性和生态过程的一种机制是通过当地气候的变化。在此,我们研究了婆罗洲各种土地利用类型(包括热带原始森林,砍伐森林和油棕人工林)的叶子面积指数与五个气候变量之间的关系:气温,相对湿度,蒸气压赤字,比湿度和土壤温度。在平均日最高空气和土壤温度,平均日最大蒸气压赤字和平均日最低相对湿度中发现与叶面积指数有很强的相关性。叶面积指数高的树冠下的空气较凉,并且白天的相对湿度较高。对于叶面积指数较高的地区,森林小气候变化也较小。发现原始森林的温度比伐木森林的温度低2.5摄氏度,比油棕人工林的温度低6.5摄氏度。我们的结果表明,叶面积指数是预测植被对小气候影响的有用参数,可用于基于遥感数据进行小规模气候预测。 (C)2014作者。由Elsevier B.V.发布。这是CC BY许可下的开放获取文章。

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