Essential Readings in Light Metals 2016
DOI: 10.1007/978-3-319-48156-2_44
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A Modelling Approach to Estimate Bath and Metal Heat Transfer Coefficients

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Cited by 6 publications
(5 citation statements)
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“…A three-dimensional model is developed to investigate the effect by mapping a steady state electrolyte velocity profile on the discretized domain. As the local heat transfer coefficient is a result of the electrolyte flow, this approach does not require computation of the coefficient unlike existing literature (Severo and Gusberti, 2009). Instead, a rough estimation of the coefficient can be used for computation, as local variation caused by the flow is already taken into account.…”
Section: Resultsmentioning
confidence: 99%
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“…A three-dimensional model is developed to investigate the effect by mapping a steady state electrolyte velocity profile on the discretized domain. As the local heat transfer coefficient is a result of the electrolyte flow, this approach does not require computation of the coefficient unlike existing literature (Severo and Gusberti, 2009). Instead, a rough estimation of the coefficient can be used for computation, as local variation caused by the flow is already taken into account.…”
Section: Resultsmentioning
confidence: 99%
“…Thermal conductivity of the materials applied in the model is listed in Table 3. They are either provided by the Industrial Collaborator, or found in literature (Jessen, 2008;Bruggeman and Danka, 1990;Severo and Gusberti, 2009;Giordanengo et al, 1999).…”
Section: Three-dimensional Modelmentioning
confidence: 99%
“…Since, k−ε approach has several applications in heat transfer because of several reasons such as it is clearly solved by CFD for planar shear layers as well as recirculating flows [22], therefor it has been considered in this study. Many researchers have stated that this model is widely employed and validate turbulence model with applications ranging from industrial to environmental flows [23,24]. The k−ε approach represents in the follow equations.…”
Section: Governing Equationsmentioning
confidence: 99%
“…Она влияет на гидродинамические процессы в алюминиевом электролизере: природу циркуляции электролита, скорость растворения глинозема, седиментацию его частиц, перенос растворенного и нерастворенного глинозема в объеме электролита, перенос и выделение анодного газа [10][11][12]. Кроме того, формирование рабочего пространства электролизера, в том числе образование гарнисажа, определяется тепловым потоком, зависящим от режима движения и вязкости расплавленного электролита [13][14][15][16][17].…”
Section: Introductionunclassified