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首页> 外文期刊>River Research and Applications >RESPONSES OF BENTHIC INVERTEBRATES TO ABRUPT CHANGES OF TEMPERATURE IN FLUME SIMULATIONS
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RESPONSES OF BENTHIC INVERTEBRATES TO ABRUPT CHANGES OF TEMPERATURE IN FLUME SIMULATIONS

机译:底质无脊椎动物对烟气模拟中温度急剧变化的响应

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摘要

Sudden instream releases of hypolimnetic water from hydropower plants (i.e. hydropeaking) can cause abrupt temperature variations (i.e. thermopeaking), typically on a daily basis. We investigated the thermopeaking effects on benthic invertebrate drift by simulating abrupt thermal shifts in experimental flumes. We conducted two cold thermopeaking and two warm thermopeaking simulations by quickly cooling the water by 3-4℃ during the warm season and by warming the water by 2-3℃ during the cold season at a rate of about 2.4×10~(-1)℃ min~(-1). This rate is very similar to those associated with hydropeaking waves in rivers in the same watershed as the experimental flumes. Although the achieved changes in temperature were within a tolerability range for benthic invertebrates, their drift increased threefold and fivefold, and twofold and fourfold in the two cold and two warm thermopeaking experiments, respectively. Assemblage composition of drift before and during the experiment differed, indicating that some taxa respond to abrupt thermal alterations. Larvae of Chironomidae, Simuliidae and Baetidae were the most abundant drifting taxa in all experiments during temperature alterations. The drift induced was probably behavioural, given the immediate responses of invertebrates that begun to drift within 2 min from the start of the simulations. This type of drift differs from catastrophic drift that usually occurs as a response to hydropeaking. The two types of drift can occur as distinct events in streams impacted by hydropower plants with high-elevation reservoirs and hypolimnetic releases because the propagation of the discharge and thermal waves are asynchronous, causing the benthic community to undergo two distinct but consecutive impacts. Our results suggest that the long-term effects of thermopeaking are mixed and synergical with those caused by hydropeaking and, on the long term, may alter the longitudinal distribution of benthic communities.
机译:从水力发电厂突然向下游释放低铁水的现象(即水峰)可能会导致突然的温度变化(即热峰),通常是每天。我们通过模拟实验水槽中的突然热位移,研究了热峰对底栖无脊椎动物漂移的影响。我们进行了两个冷热峰和两个热热峰模拟,在温暖季节将水快速冷却至3-4℃,在寒冷季节将水加热至2-3℃,速度约为2.4×10〜(-1 )℃min〜(-1)。这个速率与在与实验水渠相同的分水岭中的河流中的水峰值波相关的速率非常相似。尽管对于底栖无脊椎动物,温度的变化在可承受的范围内,但在两次冷和两次温热峰实验中,它们的漂移分别增加了三倍和五倍,以及两倍和四倍。实验之前和过程中漂移的组合物成分不同,表明某些分类单元对突然的热变化有反应。在温度变化的所有实验中,Chironomidae,Simuliidae和Baetidae的幼虫是最丰富的漂移类群。鉴于从模拟开始2分钟内开始漂移的无脊椎动物的即时响应,所引起的漂移可能是行为上的。这种类型的漂移不同于通常作为对水峰的响应而发生的灾难性漂移。这两种类型的漂移可能会作为不同事件发生在受高海拔水库和水力发电不足影响的水力发电厂影响的河流中,因为排放和热波的传播是异步的,从而导致底栖生物群落遭受两种不同但连续的影响。我们的研究结果表明,热峰的长期影响与水峰引起的影响是混合的和协同的,从长远来看,可能改变底栖群落的纵向分布。

著录项

  • 来源
    《River Research and Applications》 |2012年第6期|p.678-691|共14页
  • 作者单位

    Fondazione Edmund Mach, Research and Innovation Centre, 1-38010, San Michele all'Adige, Italy;

    Fondazione Edmund Mach, Research and Innovation Centre, Via E. Mach, 1,1-38010, San Michele all1 Adige, Italy;

    Department of Civil and Environmental Engineering, University of Trento, 1-38100, Trento, Italy;

    Fondazione Edmund Mach, Research and Innovation Centre, 1-38010, San Michele all'Adige, Italy;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    thermopeaking; drift; hydropeaking; stream temperature; artificial flumes;

    机译:热峰漂移;水峰流温度;人造水槽;

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