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首页> 外文期刊>Coral reefs: journal of the International Society for Reef Studies >Rapid fluctuations in flow and water-column properties in Asan Bay, Guam: implications for selective resilience of coral reefs in warming seas
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Rapid fluctuations in flow and water-column properties in Asan Bay, Guam: implications for selective resilience of coral reefs in warming seas

机译:关岛牙山湾流量和水柱特性的快速波动:对变暖海洋中珊瑚礁选择性复原力的影响

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Hydrodynamics and water-column properties were investigated off west-central Guam from July 2007 through January 2008. Rapid fluctuations, on time scales of 10s of min, in currents, temperature, salinity, and acoustic backscatter were observed to occur on sub-diurnal frequencies along more than 2 km of the fore reef but not at the reef crest. During periods characterized by higher seasurface temperatures (SSTs), weaker wind forcing, smaller ocean surface waves, and greater thermal stratification, rapid decreases in temperature and concurrent rapid increases in salinity and acoustic backscatter coincided with onshore-directed near-bed currents and offshoredirected near-surface currents. During the study, these cool-water events, on average, lasted 2.3 h and decreased the water temperature 0.57 oC, increased the salinity 0.25 PSU, and were two orders of magnitude more prevalent during the summer season than the winter. During the summer season when the average satellite-derived SST anomaly was ?0.63 oC, these cooling events, on average, lowered the temperature 1.14 oC along the fore reef but only 0.11 oC along the reef crest. The rapid shifts appear to be the result of internal tidal bores pumping cooler, more saline, higher-backscatter oceanic water from depths [50 m over cross-shore distances of 100 s of m into the warmer, less saline waters at depths of 20 m and shallower. Such internal bores appear to have the potential to buffer shallow coral reefs from predicted increases in SSTs by bringing cool, offshore water to shallow coral environments. These cooling internal bores may also provide additional benefits to offset stress such as supplying food to thermally stressed corals, reducing stress due to ultraviolet radiation and/or low salinity, and delivering coral larvae from deeper reefs not impacted by surface thermal stress. Thus, the presence of internal bores might be an important factor locally in the resilience of select coral reefs facing increased thermal stress.
机译:从2007年7月至2008年1月在关岛中西部进行了流体动力学和水柱特性研究。在10s min的时间尺度上,在次日频率上出现了电流,温度,盐度和声学反向散射的快速波动。沿着前礁2公里以上,但不在礁顶。在以海表温度(SSTs)较高,强迫风力更弱,海面波浪较小和热分层更大为特征的时期,温度快速下降,盐度和声反向散射同时迅速增加,这与陆上定向近海流和近海定向近海相吻合。 -表面电流。在研究过程中,这些冷水事件平均持续了2.3小时,使水温降低了0.57 oC,盐度提高了0.25 PSU,并且在夏季比冬天流行两个数量级。在夏季,当平均由卫星引起的海温异常约为0.63 oC时,这些降温事件平均使沿前礁的温度降低了1.14 oC,但沿礁顶仅降低了0.11 oC。这种快速变化似乎是由于内部潮汐井将更冷,更多盐分,高反向散射的海水从深度[50 m(跨岸距离100 s m的水)泵入温暖,更少盐分的水在20 m的深度)和更浅。通过将凉爽的近海水带入浅层珊瑚环境,这种内孔似乎具有缓冲浅层珊瑚礁的潜力,防止浅层珊瑚礁的海盐增加。这些冷却的内孔还可为抵消压力提供额外的好处,例如为受热应力的珊瑚提供食物,减少紫外线辐射和/或低盐度引起的应力,以及从不受表面热应力影响的更深的礁石中运送珊瑚幼虫。因此,内孔的存在可能是局部面临热应力增加的某些珊瑚礁复原力的重要因素。

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