首页> 外文会议>ASME Turbo Expo: Turbomachinery Technical Conference and Exposition >WORKING FLUID SELECTION FOR A WASTE HEAT RECOVERY ORGANIC RANKINE CYCLE (ORC) APPLIED TO A PETROLEUM DISTILLATION PROCESS
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WORKING FLUID SELECTION FOR A WASTE HEAT RECOVERY ORGANIC RANKINE CYCLE (ORC) APPLIED TO A PETROLEUM DISTILLATION PROCESS

机译:应用于石油蒸馏过程的废热回收有机兰循环(ORC)的工作流体选择

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This work describes a working fluid selection process for an ORC based power plant that uses as heat source waste heat from a petroleum distillation furnace. Sixteen (16) organic fluids previously considered for similar applications are analyzed based on environmental, safety and physical properties. Two different power plants layouts, a basic one and another featuring an internal heat exchanger (IHE), are analyzed. The combinations between working fluids and plant layouts seek to maximize the ORC-based power plant thermal efficiency. ORC exergy destruction and exergy efficiency are also accounted for. In this work, the close interrelation between working fluids thermo-physical properties and expander dimensionless characteristics is also assessed. The main results indicate that R245ca and R245fa are the working fluid leading to both the highest thermal (~16%) and exergy efficiencies (~23%), and the lowest exergy destructions (~703 kW). Based on required properties of the selected working fluid, an axial turbine design seems to be the most appropriate ORC expander technology for the particular application discussed in this paper. The outcomes from this work will be used as the basis for the detailed design of the components of an ORC-based power plant focused on increasing the overall efficiency of petroleum distillation processes.
机译:这项工作描述了基于ORC的发电厂的工作流体选择过程,该发电厂使用来自石油蒸馏炉的余热作为热源。根据环境,安全性和物理特性,分析了以前考虑用于类似应用的十六(16)种有机流体。分析了两种不同的发电厂布局,一种是基本布局,另一种是内部热交换器(IHE)。工作流体和工厂布局之间的组合旨在最大程度地提高基于ORC的电厂热效率。还考虑了ORC的本能破坏和本能效率。在这项工作中,还评估了工作流体的热物理特性与膨胀机的无量纲特性之间的密切关系。主要结果表明,R245ca和R245fa是导致最高热效率(〜16%)和火用效率(〜23%)以及最低火种破坏(〜703 kW)的工作流体。根据所选工作流体的所需特性,轴向涡轮机设计似乎是针对本文所讨论的特定应用的最合适的ORC膨胀器技术。这项工作的结果将用作基于ORC的电厂组件的详细设计的基础,该电厂的重点是提高石油蒸馏过程的整体效率。

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