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Physical limnology of Italian lakes. 2. Relationships between morphometric parameters, stability and Birgean work

机译:意大利湖泊的物理林学。 2.形态参数,稳定性与Birgean功之间的关系

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The relations of morphometric parameters with maximum stability (S) and maximum Birgean work (B) are analysed for 31 Italian lakes. Results show that in deep lakes the depths are more correlated with S, while fetch is more correlated with B. In contrast, in shallow lakes the depths are correlated both with S and B, while the correlation with fetch is insignificant. Power regressions are used to define the relation between maximum depth, S and B, and an analysis is made of lakes showing a marked deviation from the curves, whether on account of their environmental features or their internal hydrodynamic state. In meromictic lakes total stability is subdivided into chemical and thermal stability; major inferences are made as to the depth of their winter mixing. The relationship between B and maximum depth is less significant than that between zmax and S, as lakes with depth >100 metres and therefore with a very thick hypolimnion do not fully satisfy the regression function. Lastly, heating efficiency (E) is evaluated and related to depth and surface area of the lakes; the conclusion is that shallow lakes are more efficiently heated than deep ones.
机译:分析了31个意大利湖泊的形态参数与最大稳定性(S)和最大Birgean功(B)的关系。结果表明,在深水湖泊中深度与S相关,而取水与B相关性更大。相反,在浅水湖泊中,深度与S和B相关,而与取水相关则无关紧要。使用幂回归来定义最大深度S和B之间的关系,并对湖泊进行分析,无论其环境特征还是内部水动力状态,湖泊均显示出明显偏离曲线的趋势。在铁质湖泊中,总稳定性可分为化学稳定性和热稳定性。关于冬季混合的深度做出了主要推断。 B和最大深度之间的关系不如zmax和S之间的关系显着,因为深度> 100米并因此具有非常厚的俯冲的湖泊不能完全满足回归函数。最后,评估加热效率(E),并与湖泊的深度和表面积有关。结论是,浅水湖泊比深水湖泊加热效率更高。

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