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On the possible increasing of efficiency of ship power plant with the system combined of marine diesel engine, gas turbine and steam turbine in case of main engine cooperation with the gas turbine fed in parallel and the steam turbine

机译:在主机与并联进给的燃气轮机和蒸汽轮机配合使用的情况下,船舶柴油机,燃气轮机和蒸汽轮机相结合的系统可能提高船舶电厂的效率

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The article presents a concept of a combined large-power ship propulsion system, composed of the leading internal combustion main engine associated with a power gas turbine and the steam turbine system, both utilising the energy taken from the main engine exhaust gas. In the examined variant the power turbine, arranged in parallel with a turbocharger, is fed with the exhaust gas from the exhaust manifold. A calculation algorithm is presented, along with sample calculations for particular subsystems: supercharging, gas power turbine, and steam turbine system. Assumptions were formulated for the calculations, and were complemented by the adopted limits. Selected system parameters were confronted with the experimental investigations available in the literature. The performed power optimisation of the entire combined marine power plant took only into account the thermodynamic point of view, leaving aside technical and economic aspects. The numerical calculations were performed for the 52 MW low-speed marine diesel engine.
机译:本文介绍了一种组合式大功率船舶推进系统的概念,该系统由与动力燃气轮机和蒸汽轮机系统相关联的领先的内燃主机组成,两者均利用了从主机废气中获取的能量。在所研究的变型中,与涡轮增压器并联布置的动力涡轮被供给来自排气歧管的废气。提出了一种计算算法,以及针对特定子系统的示例计算:增压,燃气轮机和蒸汽轮机系统。为计算制定了假设,并通过了所采用的限制。选定的系统参数面临文献中提供的实验研究。整个组合式船舶电厂的功率优化只考虑了热力学观点,而没有考虑技术和经济方面的问题。对52兆瓦低速船用柴油机进行了数值计算。

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