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A Comparison of Organic and Steam Rankine Cycle Power Systems for Waste Heat Recovery on Large Ships

机译:大型船舶余热回收有机和蒸汽朗肯循环动力系统的比较

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摘要

This paper presents a comparison of the conventional dual pressure steam Rankine cycle process and the organic Rankine cycle process for marine engine waste heat recovery. The comparison was based on a container vessel, and results are presented for a high-sulfur (3 wt %) and low-sulfur (0.5 wt %) fuel case. The processes were compared based on their off-design performance for diesel engine loads in the range between 25% and 100%. The fluids considered in the organic Rankine cycle process were MM(hexamethyldisiloxane), toluene, n-pentane, i-pentane and c-pentane. The results of the comparison indicate that the net power output of the steam Rankine cycle process is higher at high engine loads, while the performance of the organic Rankine cycle units is higher at lower loads. Preliminary turbine design considerations suggest that higher turbine efficiencies can be obtained for the ORC unit turbines compared to the steam turbines. When the efficiency of the c-pentane turbine was allowed to be 10% points larger than the steam turbine efficiency, the organic Rankine cycle unit reaches higher net power outputs than the steam Rankine cycle unit at all engine loads for the low-sulfur fuel case. The net power production from the waste heat recovery units is generally higher for the low-sulfur fuel case. The steam Rankine cycle unit produces 18% more power at design compared to the high-sulfur fuel case, while the organic Rankine cycle unit using MM produces 33% more power.
机译:本文介绍了常规双压力蒸汽朗肯循环工艺与有机朗肯循环工艺对船用发动机余热回收的比较。比较是基于集装箱船的,并且给出了高硫(3 wt%)和低硫(0.5 wt%)燃料箱的结果。根据这些过程的非设计性能对柴油机负载(介于25%和100%之间)进行比较。在有机朗肯循环过程中考虑的流体是MM(六甲基二硅氧烷),甲苯,正戊烷,异戊烷和正戊烷。比较结果表明,蒸汽朗肯循环过程的净功率输出在较高的发动机负荷下较高,而有机朗肯循环装置的性能在较低负荷下较高。初步的涡轮机设计考虑因素表明,与蒸汽涡轮机相比,ORC单元涡轮机可获得更高的涡轮机效率。当使低碳戊烷涡轮机的效率比蒸汽涡轮机效率高10%点时,对于低硫燃料箱,在所有发动机负载下,有机朗肯循环装置的净功率输出均高于蒸汽朗肯循环装置。 。对于低硫燃料箱,废热回收单元的净发电量通常更高。与高硫燃料箱相比,蒸汽朗肯循环装置在设计时可提高18%的功率,而使用MM的有机朗肯循环装置可提高33%的功率。

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