首页> 外文期刊>Energy Conversion & Management >Feasibility assessment of refinery waste heat-to-power conversion using an organic Rankine cycle
【24h】

Feasibility assessment of refinery waste heat-to-power conversion using an organic Rankine cycle

机译:使用有机朗肯循环的炼厂废料热电转换的可行性评估

获取原文
获取原文并翻译 | 示例
           

摘要

Industrial waste heat is a large potential resource for generation of carbon-free electricity. This study investigates the technical and economic feasibility of converting waste heat from a stream of liquid kerosene which must be cooled down to control the vacuum distillation temperature. The process conditions were determined for a simple 250 kW organic Rankine cycle (ORC) with a heat extraction loop. The pinch point technique was adopted to determine the optimum evaporation and condensation temperatures and assess the influence of the kerosene temperature at the evaporator exit on net power output. The operating conditions and performance of the ORC system were evaluated with eight potential refrigerants and refrigerant mixtures such as R123, R134a, R245fa, isobutane, butane, pentane, an equimolar mixture of butane and pentane, and a mixture of 40% isobutane and 50% butane on a mole basis. A financial model was established for the total plant cost. Results show that isobutane, of the pure fluids, yields the best plant efficiency of 6.8% with approximately half of the kerosene flow available, and the efficiency can be increased up to 7.6% using the butane/pentane mixture. The optimum kerosene temperature at the evaporator outlet is estimated to be 70 ℃ for all the fluid, except the butane/pentane mixture, which meets the design constraint not to disturb the existing distillation process. A capital cost target of $3000/kW could be achieved with a payback period of 6.8 years and the internal rate of return (IRR) of 21.8%. Therefore, if the detailed engineering, component fabrication and construction can be achieved within the cost target, the installation of a 250 kW ORC waste heat power converter on the kerosene cooling line would be technically feasible and economically viable.
机译:工业废热是产生无碳电力的巨大潜在资源。这项研究调查了从液态煤油流转化废热的技术和经济可行性,必须将其冷却以控制真空蒸馏温度。确定了带有热抽出回路的简单250 kW有机朗肯循环(ORC)的工艺条件。采用夹点技术确定最佳的蒸发和冷凝温度,并评估蒸发器出口处煤油温度对净功率输出的影响。使用八种潜在制冷剂和制冷剂混合物(例如R123,R134a,R245fa,异丁烷,丁烷,戊烷,丁烷和戊烷的等摩尔混合物以及40%异丁烷和50%的混合物)评估ORC系统的运行条件和性能丁烷的摩尔数。建立了总工厂成本的财务模型。结果表明,在纯流体中,异丁烷的最佳工厂效率为6.8%,其中约有一半的煤油可用,使用丁烷/戊烷混合物,效率可以提高到7.6%。除丁烷/戊烷混合物外,所有流体在蒸发器出口的最佳煤油温度估计为70℃,这符合设计约束,不会干扰现有的蒸馏过程。资本成本目标为$ 3000 / kW,投资回收期为6.8年,内部收益率(IRR)为21.8%。因此,如果可以在成本目标内完成详细的工程,组件制造和构造,则在煤油冷却线上安装250 kW ORC余热发电设备在技术上是可行的,并且在经济上可行。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号