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Framework for evaluating external and internal parameters associated with Sea Based Container Culture (SBCC): Towards understanding rearing success in European lobsters (Homarus gammarus)

机译:评估与海基容器养殖(SBCC)相关的外部和内部参数的框架:旨在了解欧洲龙虾(Homarus gammarus)的饲养成功

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摘要

Sea Based Container Culture (SBCC) is a mariculture technique that relies on the natural maintenance of environmental conditions, such as Dissolved Oxygen (DO) concentration and feed availability. This paper discusses a framework to evaluate the rearing success of European Lobsters (Homarus gammarus) in SBCC based on temporal and spatial variations of external parameters, including current velocity, wave velocity, turbulent fluctuations and dissolved oxygen concentrations. The temporal variations considered annual changes to the environment and the effect of biofouling growth, and the spatial variations considered the geographical location (case study of Falmouth bay, Cornwall) and vertical position in the water column. The internal parameters of the containers were modelled using transfer functions derived from previous experimental data. The internal parameters were compared to rearing limitations selected from available literature, which included foraging and mobility behaviours, and DO consumption. The time that internal parameters exceeded the rearing limitations was quantified, allowing rearing success to be predicted.This paper uses a case study of external parameters measured in Cornish waters, UK, to demonstrate the framework methodology. The framework showed that in situ measurements of current, wave and turbulence could be used to predict the internal parameters of SBCC containers, which can be used to predict theoretical rearing success based on rearing limitations. The framework indicated that DO concentrations within the containers should not affect rearing success; however, the foraging and mobility limits were exceeded by 0 to 30% of the time (depending on vertical position in the water column and assessment method). The paper aims to demonstrate the generic framework methodology and understands its limitations in predicting rearing success. The framework provides a tool to optimise the SBCC design for spatial and temporal varying conditions related to a geographical location or (vice versa) identify suitable mariculture sites based on SBCC design and environmental conditions. Additionally, the framework can optimise the vertical position of the SBCC in the water column and identify, from parameters considered, those that are most likely to affect rearing success.
机译:海基容器养殖(SBCC)是一种海水养殖技术,其依赖于环境条件的自然维持,例如溶解氧(DO)浓度和饲料利用率。本文讨论了基于外部参数(包括电流速度,波速,湍流涨落和溶解氧浓度)的时空变化来评估SBCC中欧洲龙虾(Homarus gammarus)饲养成功的框架。时间变化考虑了环境的年度变化和生物污垢增长的影响,而空间变化考虑了地理位置(水域法尔茅斯湾,康沃尔郡的案例研究)和垂直位置。使用从以前的实验数据得出的传递函数对容器的内部参数进行建模。将内部参数与从可用文献中选择的饲养限制进行了比较,包括觅食和活动行为以及DO消耗。量化内部参数超过饲养限制的时间,可以预测饲养成功。本文以在英国康沃尔水域测量的外部参数为例,论证了框架方法。该框架表明,可以利用电流,波浪和湍流的原位测量来预测SBCC容器的内部参数,这些参数可以根据饲养限制来预测理论饲养成功。该框架表明,容器内的溶解氧浓度不应影响饲养成功;但是,觅食和活动性限制的时间超过了0%到30%(取决于水柱中的垂直位置和评估方法)。本文旨在演示通用框架方法,并了解其在预测饲养成功方面的局限性。该框架提供了一种工具,可针对与地理位置相关的时空变化条件优化SBCC设计,或者反之亦然,根据SBCC设计和环境条件确定合适的海水养殖场所。此外,该框架可以优化SBCC在水柱中的垂直位置,并从考虑的参数中识别最有可能影响饲养成功的参数。

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