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Multicriteria-oriented preliminary design of a flash evaporation process for cooling in the wine-making process

机译:面向多准则的闪蒸工艺的初步设计,用于酿酒过程中的冷却

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The flash evaporation process uses pressure differences to cause instantaneous fluid cooling and concentration. It is thus used for shortened cooling time in the wine-making process. Although promising since it allows grape cooling and concentration in addition to improving wine quality with one single device, the development of this process remains limited because of the poor efficiency of the thermal exchanges and the important size of the installations. The preliminary design stage is one of the first steps of the design process. Often neglected, this stage is nevertheless important since decisions taken at this point, like gauging and choosing components, are of major importance in relation to global development costs. In order to improve the system compactness and thermal efficiency and, to support the decision-making process, a multicriteria and multiphysics-oriented preliminary design of an innovative two-stage flash evaporation process for cooling in wine-making process was performed. Using a specific formalisation methodology that uses Constraint Satisfaction Problem techniques to enable taking into consideration different types of data, constraints related to the physical behaviour of the system and to manufacturing, encumbrance, eco-design and cost criteria are simultaneously included in the design model. The entire physical model, considering multiple coupled phenomena, was validated through an experimental analysis carried out on an instrumented pilot unit. Results are presented and discussed. Global results, considering physics, gauging, mass, costs and eco-design constraints are also presented and discussed. A detailed design flash evaporator specifically for industrial use is briefly described.
机译:闪蒸过程利用压力差引起瞬时液体冷却和浓缩。因此,它可用于缩短酿酒过程中的冷却时间。尽管它有希望,因为它除了可以用一个装置提高葡萄酒质量外,还可以使葡萄冷却和浓缩,但由于热交换效率低和装置的重要尺寸,该方法的发展仍然受到限制。初步设计阶段是设计过程的第一步。通常,这一阶段仍然很重要,因为在这一点上做出的决定(如评估和选择组件)对于全球开发成本而言至关重要。为了提高系统的紧凑性和热效率,并支持决策过程,进行了多标准和多物理场导向的初步设计,该创新的两阶段闪蒸工艺用于葡萄酒酿造过程中的冷却。使用使用约束满足问题技术的特定形式化方法来考虑不同类型的数据时,与系统的物理行为以及制造,负担,生态设计和成本标准相关的约束将同时包含在设计模型中。考虑到多种耦合现象的整个物理模型,是通过在仪器仪表驾驶员单元上进行的实验分析进行验证的。结果介绍和讨论。还介绍并讨论了考虑到物理,测量,质量,成本和生态设计约束条件的总体结果。简要描述了专门用于工业用途的详细设计的闪蒸器。

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