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MEASUREMENTS OF DENSITY AND SOUND SPEED IN MIXTURES RELEVANT TO SCO_2 POWER CYCLES

机译:与SCO_2电源循环相关的混合物中密度和声速的测量

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The objective of this research is to validate properties of mixtures relevant to supercritical carbon dioxide (sCO_2) power cycles. Direct fired sCO_2 cycles are promising technology for the future power generation systems. The working fluid of sCO_2 cycles will be near and above critical point of CO_2. One of the challenges is that the simulation of mixtures should consider real gas behavior. Expected operating conditions of Allam cycles reach up to 300 bar and 1000 °C. Characterizing the mixtures at the extreme conditions is an important issue in current researches and industrial applications. Thermophysical properties of mixtures may be beyond the valid range of the widely used database such as NIST REFPROP. Experimental data of mixtures properties in the literature is limited which is necessary to develop high-fidelity design tools for sCO_2 power cycles. We measured density and sound speed of several multi-component mixtures. A temperature-controlled high-pressure test cell was used for the density measurements. Sound speed was measured bv resonant frequency detection using an external speaker and a piezoelectric pressure sensor. Mixtures studied in this work includes carbon dioxide, methane, oxygen and water vapor. Properties of pure CO_2 were measured to show the validity of our technique. Compositions were selected to be close to frozen mixtures at the inlet, mid-progress and exhaust conditions of a model sCO_2 combustor in the previous numerical simulation work. Corresponding reaction progress variables (RPV) were RPV=0, 0.5, and 1. Temperature and pressure conditions of experiments are 310-450 K, and 0-150 bar. In our study, density and sound speed from NIST REFPROP database agree with experimental measurements within the range of our measurement uncertainties.
机译:本研究的目的是验证与超临界二氧化碳(SCO_2)功率循环相关的混合物的性质。直接触发的SCO_2周期是未来发电系统的有希望的技术。 SCO_2循环的工作流体将在CO_2的临界点附近。其中一个挑战是,混合物的仿真应该考虑真正的气体行为。 Allam循环的预期运行条件可达300巴,1000°C。特征在极端条件下的混合物是当前研究和工业应用中的重要问题。混合物的热物理性质可能超出了广泛使用的数据库的有效范围,例如NIST REFPROP。文献中的混合物特性的实验数据受到限制,这对于开发用于SCO_2电源循环的高保真设计工具是必要的。我们测得几种多组分混合物的密度和声速。使用温度控制的高压测试电池用于密度测量。使用外部扬声器和压电压力传感器测量BV谐振频率检测声速。在这项工作中研究的混合物包括二氧化碳,甲烷,氧气和水蒸气。测量纯CO_2的性质以显示我们技术的有效性。选择组合物在先前的数值模拟工作中,在模型SCO_2燃烧器的入口,中间进展和排气条件下接近冷冻混合物。相应的反应进度变量(RPV)是RPV = 0,0.5和1.实验的温度和压力条件为310-450 k和0-150巴。在我们的研究中,NIST REFPROP数据库的密度和声速在于我们测量不确定性范围内的实验测量。

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