首页> 外文会议>ASME Fluids Engineering Division summer meeting >PARAMETER STUDY OF A BRAYTON CYCLE WASTE HEAT RECOVERY SYSTEM FOR TURBOCHARGED DIESEL ENGINES
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PARAMETER STUDY OF A BRAYTON CYCLE WASTE HEAT RECOVERY SYSTEM FOR TURBOCHARGED DIESEL ENGINES

机译:涡轮增压柴油机布雷顿循环废热回收系统的参数研究

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A Brayton cycle waste heat recovery (WHR) system for turbocharged diesel engines was described and the performance of a diesel engine integrated with this system was investigated. The waste heat recovery system is integrated with the turbocharging system of the diesel engine, with the turbocharger compressor working as the Brayton cycle compressor simultaneously. The combined cycle of diesel cycle and Brayton cycle was simulated using the engine cycle simulation code GT-Suite 7.0, and the performance of the Brayton cycle WHR engine was investigated. The turbocharging turbine and the Brayton cycle turbine were designed and their performances were simulated with turbine through-flow model. The mass-flow rates of the diesel cycle and the Brayton cycle have a great influence on their power outputs, which are determined by the turbocharger performance greatly. The influence of the charging turbine geometric parameters on the performance of the Brayton cycle WHR system was discussed. Results show that there is a tradeoff in performance between high and low engine-speed operating conditions with the investigated parameters variation, and different geometric dimensions should be selected when different common operating conditions are considered.
机译:描述了用于涡轮增压柴油发动机的Brayton循环余热恢复(WHR)系统,并研究了与该系统集成的柴油机的性能进行了研究。废热回收系统与柴油发动机的涡轮增压系统集成,涡轮增压器压缩机同时使用Brayton循环压缩机。使用发动机循环仿真码GT-Suite 7.0模拟柴油周期和布雷顿循环的组合周期,并研究了布雷顿循环的性能WHR发动机。设计了涡轮增压涡轮机和布雷顿循环涡轮机,并用涡轮机通流模型模拟它们的性能。柴油循环的质量流量和布雷顿循环对其功率输出产生了很大影响,这通过涡轮增压器性能大大确定。讨论了充电涡轮机几何参数对布雷顿循环WHR系统性能的影响。结果表明,在高低发动机速度运行条件下具有调查参数变化的性能之间存在折衷,并且当考虑不同的常用操作条件时,应选择不同的几何尺寸。

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