首页> 外文期刊>Canadian Journal of Forest Research >The effect of variable-retention riparian buffer zones on water temperatures in small headwater streams in sub-boreal forest ecosystems of British Columbia
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The effect of variable-retention riparian buffer zones on water temperatures in small headwater streams in sub-boreal forest ecosystems of British Columbia

机译:可变保留河岸缓冲区对不列颠哥伦比亚省亚北方森林生态系统中小源流中水温的影响

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Stream temperature impacts resulting from forest harvesting in riparian areas have been documented in a number of locations in North America. As part of the Stuart-Takla Fisheries-Forestry Interaction Project, we have investigated the influence of three variable-retention riparian harvesting prescriptions on temperatures in first-order streams in the interior sub-boreal forests of northern British Columbia. Prescriptions were designed to represent a range of possible harvesting options outlined by the Forest Practices Code of B.C., or associated best management practice guidelines. Five years after the completion of harvesting treatments, temperatures remained four to six degrees warmer, and diurnal temperature variation remained higher than in the control streams regardless of treatment. Initially, the high-retention treatment acted to mitigate the temperature effects of the harvesting, but 3 successive years of windthrow was antecedent to reduced canopy density and equivalent temperature impacts. We speculate that late autumn reversals in the impacts of forest harvesting also occur. Temperature impacts in this study remained within the tolerance limits of local biota. However, even modest temperature changes could alter insect production, egg incubation, fish rearing, migration timing, and susceptibility to disease, and the effects of large changes to daily temperature range are not well understood.
机译:北美许多地方都记录了河岸地区森林采伐对溪流温度的影响。作为Stuart-Takla渔业与林业互动项目的一部分,我们调查了三种不可变保留河岸采伐处方对不列颠哥伦比亚省北部内陆北方森林初级流中温度的影响。处方的设计代表了卑诗省《森林操作规范》或相关最佳管理规范所概述的一系列可能的采伐方案。完成收割处理后的五年,温度保持在四到六度,无论处理如何,昼夜温度变化均高于对照流。最初,高保留处理的作用是减轻收获温度对温度的影响,但是连续3年的抛风是降低冠层密度和等效温度影响的前提。我们推测,深秋森林采伐的影响也会发生逆转。这项研究中的温度影响仍在当地生物群的容许限度内。然而,即使是适度的温度变化也可能会改变昆虫的产量,卵的孵化,鱼类的饲养,迁移时间以及对疾病的易感性,而且人们对每日温度范围的较大变化所产生的影响尚不十分了解。

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