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Experimental and numerical investigation of direct liquid injection into an ORC twin-screw expander

机译:直接将液体注入ORC双螺杆膨胀机的实验和数值研究

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The Organic Rankine Cycle (ORC) is a thermal engine, which is used to convert low temperature heat to electrical power using organic working fluids. It is an established technique for waste heat recovery and for the utilization of renewable heat. This study presents a novel operational strategy of an ORC, which allows for reliable control of process parameters while simultaneously ensuring high power output. Preheated liquid working fluid is injected directly into a volumetric screw expander at an intermediate pressure level. The injected mass flow bypasses the evaporator and can be controlled by a valve. Thus, direct liquid injection into the expander reduces the exhaust temperature, leading to a lower risk of thermal damages in case of a hermetic or semi-hermetic expander. This strategy is analyzed experimentally and compared with a system simulation. The experimental and simulation results show that the exhaust vapor temperature can be reduced by approx. 40 K for the investigated operational conditions. This enables the expander to run at higher live vapor conditions by simultaneously ensuring sufficient cooling of the generator and thus allows for up to 40% higher power production depending on the operational conditions. (C) 2019 Elsevier Ltd. All rights reserved.
机译:有机朗肯循环(ORC)是一种热力发动机,用于使用有机工作流体将低温热转化为电能。这是用于废热回收和利用可再生热的成熟技术。这项研究提出了一种新型的ORC操作策略,该策略可以可靠地控制过程参数,同时确保高功率输出。预热的液态工作流体在中等压力水平下直接注入容积式螺杆膨胀机。注入的质量流绕过蒸发器,可以通过阀门控制。因此,将液体直接喷射到膨胀机中会降低排气温度,从而在密封或半密封膨胀机的情况下降低热损坏的风险。通过实验分析了该策略,并将其与系统仿真进行了比较。实验和模拟结果表明,废气温度可降低约5%。对于调查的运行条件为40K。通过同时确保发电机充分冷却,这可使膨胀机在较高的活蒸气条件下运行,从而根据运行条件将发电量提高多达40%。 (C)2019 Elsevier Ltd.保留所有权利。

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