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Descriptors of natural thermal regimes in streams and their responsiveness to change in the Pacific Northwest of North America

机译:溪流中自然热态的描述子及其对北美西北太平洋地区变化的响应

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摘要

1. Temperature is a major driver of ecological processes in stream ecosystems, yet the dynamics of thermal regimes remain poorly described. Most work has focused on relatively simple descriptors that fail to capture the full range of conditions that characterise thermal regimes of streams across seasons or throughout the year. 2. To more completely describe thermal regimes, we developed several descriptors of magnitude, variability, frequency, duration and timing of thermal events throughout a year. We evaluated how these descriptors change over time using long-term (19792009), continuous temperature data from five relatively undisturbed cold-water streams in western Oregon, U.S.A. In addition to trends for each descriptor, we evaluated similarities among them, as well as patterns of spatial coherence, and temporal synchrony. 3. Using different groups of descriptors, we were able to more fully capture distinct aspects of the full range of variability in thermal regimes across space and time. A subset of descriptors showed both higher coherence and synchrony and, thus, an appropriate level of responsiveness to examine evidence of regional climatic influences on thermal regimes. Most notably, daily minimum values during winterspring were the most responsive descriptors to potential climatic influences. 4. Overall, thermal regimes in streams we studied showed high frequency and low variability of cold temperatures during the cold-water period in winter and spring, and high frequency and high variability of warm temperatures during the warm-water period in summer and autumn. The cold and warm periods differed in the distribution of events with a higher frequency and longer duration of warm events in summer than cold events in winter. The cold period exhibited lower variability in the duration of events, but showed more variability in timing. 5. In conclusion, our results highlight the importance of a year-round perspective in identifying the most responsive characteristics or descriptors of thermal regimes in streams. The descriptors we provide herein can be applied across hydro-ecological regions to evaluate spatial and temporal patterns in thermal regimes. Evaluation of coherence and synchrony of different components of thermal regimes can facilitate identification of impacts of regional climate variability or local human or natural influences.
机译:1.温度是河流生态系统中生态过程的主要驱动力,但对热态动力学的描述仍然很少。大多数工作集中在相对简单的描述子上,这些描述子无法捕获表征整个季节或全年溪流热力状况的全部条件。 2.为了更完整地描述热状况,我们开发了多个描述一年中热事件的大小,变异性,频率,持续时间和时间的描述符。我们使用美国俄勒冈州西部五个相对不受干扰的冷水流的长期(19792009)连续温度数据评估了这些描述符随时间的变化。除了每种描述符的趋势外,我们还评估了它们之间的相似性以及模式空间连贯性和时间同步性3.使用不同的描述符组,我们能够更全面地捕获整个空间和时间的热态变化范围的不同方面。描述符的子集显示出较高的连贯性和同步性,因此具有适当的响应度,可以检查区域气候对热力状况的影响。最值得注意的是,冬春期间的每日最小值是对潜在气候影响的最敏感描述。 4.总体而言,我们研究的河流热态表明,冬季和春季的冷水时期冷温度的高频和低变化,而夏季和秋季的暖水阶段的暖水温度的高频率和高变化。与冬季的寒冷事件相比,夏季的寒冷和温暖时期的事件分布有所不同,夏季温暖事件的发生频率更高,持续时间更长。寒冷时期的事件持续时间变化较小,但时间变化较大。 5.总而言之,我们的结果强调了从全年角度出发确定河流中热态最敏感的特征或描述因素的重要性。我们在此提供的描述符可以应用于水生态区域,以评估热态下的时空格局。对热态不同组成部分的连贯性和同步性进行评估,可以帮助确定区域气候变化的影响或当地人为或自然影响。

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