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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Thermal performance analysis of Brayton cycle with waste heat recovery boiler for diesel engines of offshore oil production facilities
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Thermal performance analysis of Brayton cycle with waste heat recovery boiler for diesel engines of offshore oil production facilities

机译:海上采油设施柴油机余热回收锅炉布雷顿循环的热性能分析

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摘要

This paper presents the theoretical analysis and on-site testing on the thermal performance of the waste heat recovery system for offshore oil production facilities, including the components of diesel engines, thermal boilers and waste heat boilers. We use the ideal air standard Brayton cycle to analyse the thermal performance. In comparison with the traditional design, the fans at the engine outlet of the waste heat recovery boiler is removed due to the limited space of the offshore platform. The cases with fan and without fan are compared in terms of thermal dynamics performance, energy efficiency and thermo-economic index of the system. The results show that the application of the WHRB increases the energy efficiency of the whole system, but increases the flow resistance in the duct. It is proved that as the waste heat recovery boiler takes the place of the thermal boiler, the energy efficiency of whole system without fan is slightly reduced but heat recovery efficiency is improved. This research provides an important guidance to improve the waste heat recovery for offshore oil production facilities. (C) 2016 Published by Elsevier Ltd.
机译:本文对海上采油设施废热回收系统的热性能进行了理论分析和现场测试,包括柴油机,热锅炉和废热锅炉的组件。我们使用理想的空气标准布雷顿循环来分析热性能。与传统设计相比,由于海上平台的空间有限,废热回收锅炉发动机出口处的风扇被拆除。比较了有风扇和无风扇的情况,包括系统的热力学性能,能效和热经济指标。结果表明,WHRB的应用提高了整个系统的能效,但增加了管道中的流阻。实践证明,用废热回收锅炉代替热锅炉可以使无风扇整个系统的能效略有降低,但提高了热回收效率。该研究为提高海上采油设施的余热回收提供了重要指导。 (C)2016由Elsevier Ltd.出版

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