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An econometric viability model for ongrowing sole (Solea senegalensis) in tanks using pumped well sea water

机译:抽水井海水在罐中生长的鞋底(Solea senegalensis)的计量经济可行性模型

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Sole (Solea senegalensis) is of great interest to marine aquaculture in the Mediterranean because of its relatively fast growth and good commercial prospects (high price). However, the wide mean annual variation in the temperature of Mediterranean sea water (14-26 deg C) is a limiting factor for the ongrowing of this species; the optimum for this process is 19-20 deg C. One of the possible mid-term solutions for ensuring a constant year-round temperature is to ongrow these fish in tanks containing pumped well water. The present work describes a mathematical model for estimating the values of economic variables associated with sole production (which to date have not been defined at the commercial level) for an onshore ongrowing plant using pumped well water at 19-20 deg C. The economic variables studied include optimum load, the sale price of the final product, the cost of juveniles and feed (these last two are influenced by mortality which is still highly variable in this species), and finally the cost of electricity and oxygen (of great importance in onshore plants). The model allows different possible situations to be analysed on the basis of still undefined variables for ongrowing (juvenile cost, feeding, survival, etc.), and establishes under which conditions sole ongrowing would be profitable.
机译:由于其相对较快的增长和良好的商业前景(高价),所以对地中海海洋水产养殖具有极大的兴趣(Solea senegalensis)。但是,地中海海水温度(14-26摄氏度)的年均变化很大,是该物种生长的一个限制因素。此过程的最佳温度是19-20℃。为确保全年恒定温度,可能的中期解决方案之一是将这些鱼放回装有抽井水的水箱中。本工作描述了一种数学模型,用于估算使用19-20摄氏度的井水在陆上生长的植物与唯一生产相关的经济变量(迄今为止尚未在商业水平上定义)的经济值。经济变量研究的内容包括最佳负载,最终产品的销售价格,幼鱼和饲料的成本(后两者受死亡率的影响,死亡率在该物种中仍然变化很大),最后是电和氧气的成本(在这方面非常重要)陆上植物)。该模型允许根据仍未定义的生长变量(幼稚成本,进食,生存等)分析不同的可能情况,并确定在什么条件下单独生长才可获利。

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