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Influence of evaporating rate on two-phase expansion in the piston expander with cyclone separator

机译:旋风分离器在活塞膨胀机中两相膨胀对蒸发速率的影响

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The trilateral flash cycle shows a greater potentiality in moderate to low grade heat utilization systems due to its potentiality of obtaining high exergy efficiency, compared to the conventional thermodynamic cycles such as the organic Rankine cycles and the Kalina cycle. The main difference between the trilateral flash cycle and the conventional thermodynamic cycles is that the superheated vapor expansion process is replaced by the two-phase expansion process. The two-phase expansion process actually consists of a flashing of the inlet stream into a vapor and a liquid phase. Most simulations assume an equilibrium model with an instantaneous flashing. Yet, the experiments of pool flashing indicate that there is a flash evaporating rate. The mechanism of this process still remains unclear. In this paper, the flash evaporating rate is introduced into the model of the two-phase expansion process in the reciprocating expander with a cyclone separator. As such, the obtained results reveal the influence of evaporating rate on the efficiency of the two-phase expander.
机译:与常规热力学循环相比,三边闪光周期由于其获得高漏洞效率而导致的潜力较低,闪光循环显示出更高的低等级热利用系统。诸如有机朗肯循环和Kalina循环。三边闪光循环和传统热力学循环之间的主要区别在于,通过两相膨胀过程取代过热的蒸汽膨胀过程。两相膨胀过程实际上由入口流闪烁成蒸气和液相。大多数仿真假设瞬时闪烁的平衡模型。然而,池闪烁的实验表明存在闪蒸蒸发速率。这个过程的机制仍然尚不清楚。本文用旋风分离器将闪蒸蒸发速率引入往复膨胀器中的两相膨胀过程的模型。因此,所获得的结果揭示了蒸发速率对两相膨胀机效率的影响。

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