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Optimization of waste heat recovery from the exhaust gas of marine diesel engines

机译:优化船用柴油机废气余热回收

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摘要

In this article, some configurations of waste heat recovery systems are described, analysed and compared, in order to find the optimal plant layout. Starting from the availability of performance data of a two-stroke diesel engine, adopted for the propulsion plant of a crude oil tanker ship, the authors examined different solutions for the waste heat recovery from the diesel engine exhaust gas ensuring the best fulfilment of the vessel needs in terms of mechanical, electric and thermal energies. The considered waste heat recovery systems can adopt either steam turbine and gas turbine or simply steam turbine for power generation. As regards the steam plant, two basic layouts are considered, optimized and compared: the first plant scheme is a typical steam plant currently adopted for waste heat recovery purposes and the second one is a solution proposed by the authors. Considering the different options, in this article, four different system layouts, applied to the mentioned diesel engine, are singly optimized and compared between them in order to find the most suitable plant and the steam cycle parameters that provide its best operation at the engine normal continuous rating. The performance of the optimized waste heat recovery systems is evaluated also by comparing them under off-design engine load conditions, in the engine power range between 50% and 100% of its maximum continuous rating.
机译:在本文中,对废热回收系统的一些配置进行了描述,分析和比较,以找到最佳的工厂布局。从获得用于原油轮船推进装置的二冲程柴油发动机的性能数据开始,作者研究了从柴油发动机废气中回收余热的不同解决方案,以确保船舶的最佳性能在机械,电能和热能方面的需求。考虑的废热回收系统可以采用蒸汽轮机和燃气轮机,也可以采用简单的蒸汽轮机发电。关于蒸汽设备,考虑,优化和比较了两个基本布局:第一个设备方案是当前用于废热回收目的的典型蒸汽设备,第二个是作者提出的解决方案。考虑到不同的选择,在本文中,单独优化了应用于上述柴油发动机的四种不同的系统布局,并在它们之间进行比较,以找到最合适的设备和蒸汽循环参数,从而在发动机正常运行时提供最佳运行状态。连续评分。还可以通过在非设计发动机负载条件下(在其最大连续额定值的50%和100%之间)的发动机功率范围内对优化的废热回收系统进行比较来评估其性能。

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