利用潜水器对中部萨利希海边缘有价值的脆弱沙波场饲料鱼栖息地进行危害评价

IF 2.6 3区 地球科学 Q2 OCEANOGRAPHY
H. Gary Greene , Matthew R. Baker , John Aschoff , Robert Pacunski
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引用次数: 6

摘要

萨利希海是东北太平洋(北美西北部)的一个边缘内海,包括加拿大不列颠哥伦比亚省的乔治亚海峡-海湾群岛群岛和圣胡安群岛,胡安德富卡海峡,以及美国华盛顿州的普吉特峡湾。这一边缘海底已被广泛地绘制出来,并根据GeoHab会议上提出和讨论的标准确定了关键的海洋底栖生物栖息地类型。其中一个栖息地是太平洋沙枪(PSL)的深水潮下栖息地,是本文的重点。PSL (Ammodytes personatus)是多种哺乳动物、鸟类和鱼类(包括小须鲸和鲑鱼)的重要饲料鱼,因为它捕食浮游动物,并作为从较低营养水平到较高营养水平的能量转移物种。太平洋沙枪在由动态河床组成的沙浪场中寻找避难所和越冬。该物种喜欢松散包装,通风良好,分类良好,中至粗粒(~ 1 φ [φ], 500µm)的沙子,它可以很容易地挖洞。活跃的动态河床等地貌特征为PSL提供了良好的栖息地,并依赖于能够维持栖息地形态和粒度的特定和独特的海洋过程。了解这些过程对于预测这些特征的变化或破坏至关重要,包括海平面上升可能带来的变化。使用五人潜水器Cyclops 1,我们最近在美国华盛顿州的圣胡安群岛检查了一个经过充分研究的沙波场,据报道,该沙波场容纳了多达1200万个PSL。观测、录像和摄影使我们能够评估萨利希海中部的现代海底过程,这些过程可以与鱼类和沉积物样本数据一起使用,以确定这种鱼类维持其种群所需的生理偏好。海底水流状态、沉积物来源和人为干扰的变化可以严重改变这些动态河床。这项研究提供了深入了解这些床型的结构,它们的组成,它们的持久性,它们对扰动的恢复力,以及作为冲击和成为冲击的易感性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Hazards evaluation of a valuable vulnerable sand-wave field forage fish habitat in the marginal Central Salish Sea using a submersible

The Salish Sea is a marginal inland sea of the NE Pacific (NW North America) that includes the Georgia Strait-Gulf Islands Archipelago of British Columbia, Canada and the San Juan Archipelago, Strait of Juan de Fuca, and the Lower Puget Sound of Washington State, USA. This marginal seafloor has been extensively mapped and according to criteria presented and discussed at GeoHab conferences critical marine benthic habitat types are identified. One such habitat that is the focus of this paper is the deep-water sub-tidal habitat of Pacific sand lance (PSL). The PSL (Ammodytes personatus) is a critical forage fish for a variety of mammals, birds and fish including minke whales and salmon as it preys upon zooplankton and acts as an energy transfer species from the lower to higher trophic levels. Pacific sand lance seeks refuge and overwinters in sand-wave fields consisting of dynamic bedforms. The species prefers loosely packed, well-aerated, well-sorted, medium- to coarse-grain (∼1 phi [φ], 500 µm) sand that it can burrow into easily. Such geomorphic features as active dynamic bedforms provide preferable habitats for PSL and depends on specific and unique oceanographic processes that can maintain the habitat's morphology and grain sizes. Understanding these processes is essential in forecasting alteration or destruction of such features, including changes that may be brought about by sea level rise. Using the five-person submersible Cyclops 1, we recently examined a well-studied sand-wave field in the San Juan Archipelago of Washington State, USA, which has been reported to harbor up to 12 million PSL. Observations, video recordings, and photography from this vehicle allowed us to assess modern seafloor processes of the central Salish Sea that can be used along with fish and sediment sample data to determine physical preferences this fish needs to sustain its population. Changes in the seafloor current regime, sediment source, and anthropogenic disturbances can critically alter these dynamic bedforms. This research provides insight into the structure of these bedforms, their composition, their persistence, their resilience to disturbance, and the susceptibility as an impact and becoming impacted.

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来源期刊
Oceanologia
Oceanologia 地学-海洋学
CiteScore
5.30
自引率
6.90%
发文量
63
审稿时长
146 days
期刊介绍: Oceanologia is an international journal that publishes results of original research in the field of marine sciences with emphasis on the European seas.
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