首页> 外文期刊>Journal of marine systems: journal of the European Association of Marine Sciences and Techniques >Assessing the quality of bottom water temperatures from the Finite-Volume Community Ocean Model (FVCOM) in the Northwest Atlantic Shelf region
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Assessing the quality of bottom water temperatures from the Finite-Volume Community Ocean Model (FVCOM) in the Northwest Atlantic Shelf region

机译:评估西北大西洋货架区的有限卷社区海洋模型(FVCOM)底水温度的质量

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The Finite-Volume Community Ocean Model (FVCOM) is an advanced coastal circulation model widely utilized for its ability to simulate spatially and temporally evolving three-dimensional geophysical conditions of complex and dynamic coastal regions. While a body of literature evaluates model skill in surface fields, independent studies validating model skill in bottom fields over large spatial and temporal scales are scarce because these fields cannot be remotely sensed. In this study, an evaluation of FVCOM skill in modeling bottom water temperature was conducted by comparison to hourly in situ observed bottom temperatures recorded by the Environmental Monitors on Lobster Traps (eMOLT), a program that attached thermistors to commercial lobster traps from 2001 to 2013. Over 2 x 10(6) pairs of FVCOM-eMOLT records were evaluated by a series of statistical measures to quantify accuracy and precision of the modeled data across the Northwest Atlantic Shelf region. The overall comparison between modeled and observed data indicates reliable skill of FVCOM (r(2) = 0.72; root mean squared error = 2.28 degrees C). Seasonally, the average absolute errors show higher model skill in spring, fall and winter than summer. We speculate that this is due to the increased difficulty of modeling high frequency variability in the exact position of the thermocline and frontal zones. The spatial patterns of the residuals suggest that there is improved similarity between modeled and observed data at higher latitudes. We speculate that this is due to increased tidal mixing at higher latitudes in our study area that reduces stratification in winter, allowing improved model accuracy. Modeled bottom water temperatures around Cape Cod, the continental shelf edges, and at one location at the entrance to Penobscot Bay were characterized by relatively high errors. Constraints for future uses of FVCOM bottom water temperature are provided based on the uncertainties in temporal-spatial patterns. This study is novel as it is the first skill assessment of a regional ocean circulation model in bottom fields at high spatial and temporal scales in the Northwest Atlantic Shelf region. (C) 2017 Elsevier B.V. All rights reserved.
机译:有限批量社区海洋模型(FVCOM)是一种先进的沿海循环模型,广泛用于其模拟空间和时间上的三维地球物理条件的复杂和动态沿海地区的三维地球物理条件。虽然文学体系在表面领域的模型技能评估了模型技能,但在大型空间和时间尺度上验证底部字段模型技能的独立研究是稀缺的,因为这些字段不能远程感测。在该研究中,通过与龙虾陷阱(反对)上的环境监测器(EMOLT)上的环境监测器的每小时观察到的底部温度进行了对模型底水温度的评估,这是从2001年到2013年附加到商业龙虾陷阱的一个程序。通过一系列统计措施,评估了超过2×10(6)对的FVCom-ePolt记录,以量化西北大西洋货架区中建模数据的准确性和精度。建模和观察数据之间的整体比较表明FVCOM的可靠技能(R(2)= 0.72;根均方误差= 2.28c)。季节性地,平均绝对错误显示春季,秋季和冬季更高的模型技能。我们推测这是由于在热控和额区域的确切位置建模高频变异性的难度增加。残差的空间模式表明,在更高纬度地区的建模和观察数据之间存在改善的相似性。我们推测,这是由于我们的研究区域在冬季降低分层的较高纬度下增加了潮汐混合,允许改善的模型精度。在Penobscot Bay入口处的Cape Cod,大陆架边缘和一个位置的建模底水温度以相对较高的误差为特征。基于时间空间模式的不确定性提供了FVCM底部水温的未来使用的约束。本研究是新颖的,因为它是西北大西洋货架区的高空间和时间尺度下底部区域区域海洋循环模型的第一技能评估。 (c)2017 Elsevier B.v.保留所有权利。

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