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首页> 外文期刊>Trees. Structure and Function >Short-term growth responses and associated wood density fluctuations in variously irrigated Eucalyptus globulus
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Short-term growth responses and associated wood density fluctuations in variously irrigated Eucalyptus globulus

机译:各种灌溉桉树的短期生长响应及相关的木材密度波动

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Cambial growth and wood properties respond to fluctuating environmental conditions. Understanding the nature of these responses is crucial to understanding their cumulative effect on the wood quality characteristics of a forest stand. This paper reports on a study conducted over a period of 3pu years in continuously irrigated, alternately irrigated and non-irrigated Eucalyptus globulus, in which changes in wood density occurring in response to short-term growth responses were examined. The study showed that continuous irrigation led to the production of wood with significantly more homogenous density than was the case in situations, where trees experienced large fluctuations in temporal water availability. Although the trees which were not irrigated had the highest wood density overall, trees in which growth was relatively continuous tended to produce the largest volumes of wood with relatively high density, compared to trees in which periodic growth responses were caused by intermittent irrigation, in which wood density was actually reduced. This was largely due to more growth days in summer under the conditions of higher radiation, and a reduction in the number of growth events leading to the production of disproportionately large amounts of low density wood. Soil water deficits contributed to density variation in all treatments, but the effect of energy limitations became more important in continuously irrigated trees.
机译:冈比亚的生长和木材特性应对不断变化的环境条件。了解这些响应的性质对于了解它们对林分木材质量特征的累积影响至关重要。本文报告了一项在3pu年内对连续灌溉,交替灌溉和非灌溉桉树球茎进行的研究,研究了响应短期生长响应而发生的木材密度变化。该研究表明,与树木在时间上可获得的水量波动较大的情况下相比,连续灌溉导致木材的均匀密度显着提高。尽管未灌溉的树木总体上具有最高的木材密度,但与间歇灌溉导致周期性生长响应的树木相比,生长相对连续的树木往往会产生最大体积的较高密度的木材。木材密度实际上降低了。这主要是由于在较高辐射条件下夏季的生长天数增加,并且生长事件数量减少,导致大量低密度木材的生产。在所有处理中,土壤缺水都会导致密度变化,但是能量限制的影响在连续灌溉的树木中变得更加重要。

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