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SHIP’S CENTRAL COOLING SYSTEM LIVE PERFORMANCE OPTIMISATION AND MODELING

机译:船舶的中央冷却系统实时性能优化和建模

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Central cooling systems play an essential role in ship operations, since guarantee the correct operating mode of vital users such as the main engine and generators. These systems are normally sized according to the design point so that they can deliver the cooling demand even in extreme conditions, while these conditions are very rare events in the ship’s life. In order to improve the overall cooling efficiency, a variable frequency drive can be adopted [1-3]. In this work, a physical model of a real Ro/Con (i.e. Roll on roll off Cargo ship) central cooling system is presented with an integrated process control scheme. An experimental campaign has been carried out for six months to collect the overall cooling demand (e.g. seawater and fresh water temperatures, flows and valve position) before and after the introduction of variable speed drive on the seawater pump. An algorithm for the control of the cooling water system is proposed and implemented in the model in order to improve the performances and guarantee the basic features of each component. The estimated annual saving coming from the recoded data and the model are around 40 to 60 percent obtained with a reduction between 10 to 27 percent for the pump speed. The methodology and model are proposed and developed in order to better exploit the data gathered during the on-board measuring period.
机译:中央冷却系统在船舶操作中起重要作用,因为保证了诸如主发动机和发电机等重要用户的正确操作模式。这些系统通常根据设计点大小,使得即使在极端条件下也可以提供冷却需求,而这些条件在船舶的生命中是非常罕见的事件。为了提高整体冷却效率,可以采用可变频率驱动[1-3]。在这项工作中,具有综合过程控制方案的Real Ro / Con(即滚动货物船上的滚动船上)的物理模型。在海水泵上引入可变速度驱动之前和之后,已经进行了六个月的实验活动六个月,以收集整体冷却需求(例如海水和淡水和淡水温度,流动和阀门位置)。提出了一种控制冷却水系统的算法,并在模型中实现,以改善性能并保证每个组件的基本特征。估计来自核编号数据和模型的估计年度节省量约为40%至60%,泵速减少10%至27%。提出和制定方法和模型,以便更好地利用在板载测量期间收集的数据。

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