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加热炉与输油泵系统效率低原因分析及治理技术分析
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作者 洪旭 《中国石油和化工标准与质量》 2022年第15期16-18,共3页
随着现代化技术以及信息化技术的高速发展,社会已经进入到了全新的发展阶段中,这也为各大企业的发展起到了良好的促进作用,然而,站在目前油田生产企业发展的角度上来看,能源问题越来越紧张,为了更好地实现节能降耗,就必须要进一步探究... 随着现代化技术以及信息化技术的高速发展,社会已经进入到了全新的发展阶段中,这也为各大企业的发展起到了良好的促进作用,然而,站在目前油田生产企业发展的角度上来看,能源问题越来越紧张,为了更好地实现节能降耗,就必须要进一步探究加热炉与输油泵系统工作效率低的主要原因,根据实际情况采用针对性的治理技术,以此来确保加热炉与输油泵的工作效率可以稳步提升,节约整体能源消耗。因此,文章首先对加热炉的发展现状加以明确;其次,对加热炉与输油泵系统效率低的主要原因展开深入分析;在此基础上,提出加热炉与输油泵系统效率低的治理技术。 展开更多
关键词 加热炉与输油泵 系统效率低 主要原因 治理技术
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Efficiency analysis of trilateral-cycle power systems for waste heat recovery-to-power generation
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作者 Habeeb A.AJIMOTOKAN 《Journal of Central South University》 SCIE EI CAS CSCD 2016年第12期3160-3170,共11页
Numerous innovative heat recovery-to-power technologies have been resourcefully and technologically exploited to bridge the growing gap between energy needs and its sustainable and affordable supply.Among them,the pro... Numerous innovative heat recovery-to-power technologies have been resourcefully and technologically exploited to bridge the growing gap between energy needs and its sustainable and affordable supply.Among them,the proposed trilateral-cycle(TLC) power system exhibits high thermodynamic efficiency during heat recovery-to-power from low-to-medium temperature heat sources.The TLCs are proposed and analysed using n-pentane as working fluid for waste heat recovery-to-power generation from low-grade heat source to evaluate the thermodynamic efficiency of the cycles.Four different single stage TLC configurations with distinct working principles are modelled thermodynamically using engineering equation solver.Based on the thermodynamic framework,thermodynamic performance simulation and efficiency analysis of the cycles as well as the exergy efficiencies of the heating and condensing processes are carried out and compared in their efficiency.The results show that the simple TLC,recuperated TLC,reheat TLC and regenerative TLC operating at subcritical conditions with cycle high temperature of 473 K can attain thermal efficiencies of 21.97%,23.91%,22.07% and 22.9%,respectively.The recuperated TLC attains the highest thermodynamic efficiency at the cycle high temperature because of its lowest exergy destruction rates in the heat exchanger and condenser.The efficiency analysis carried out would assist in guiding thermodynamic process development and thermal integration of the proposed cycles. 展开更多
关键词 trilateral cycle waste heat recovery-to-power generation thermodynamic performance simulation efficiency analysis process development and integration
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