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首页> 外文期刊>Journal of Chemical Engineering of Japan >A Novel Dynamic Modeling Methodology for Boil-Off Gas Recondensers in Liquefied Natural Gas Terminals
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A Novel Dynamic Modeling Methodology for Boil-Off Gas Recondensers in Liquefied Natural Gas Terminals

机译:液化天然气终端中蒸发气体冷凝器的新型动态建模方法

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摘要

In a liquefied natural gas (LNG) terminal operation, the reduction of boil-off gas (BOG) is critical for economy and safety. The BOG recondenser, which is a key piece of equipment for dealing with BOG, is commonly used in receiving terminals. The dynamic behavior of a BOG recondenser is complex and difficult to stabilize. Therefore, an exact dynamic model of the equipment needs to be developed that will help improve the operation. In this research, we propose an advanced dynamic modeling methodology for BOG recondensers using HYSYS dynamics to achieve better accuracy than previous studies. The main feature of the proposed methodology is that variable flash efficiency depending on the LNG input rate is allowed, enabling the description of non-equilibrium phenomena inside the recondenser. The proposed methodology was verified by using the operating data from the BOG recondenser in a real terminal, and it showed less than 2% errors in the measurements of the liquid level, temperature, and pressure.
机译:在液化天然气(LNG)终端操作中,减少蒸发气体(BOG)对于经济和安全至关重要。 BOG冷凝器是处理BOG的关键设备,通常用于接收终端。 BOG冷凝器的动态行为复杂且难以稳定。因此,需要开发设备的精确动态模型,这将有助于改善操作。在这项研究中,我们提出了一种使用HYSYS动力学的BOG冷凝器高级动态建模方法,以实现比以前的研究更好的精度。所提出方法的主要特征是允许根据LNG输入速率的可变闪蒸效率,从而能够描述再冷凝器内部的非平衡现象。通过使用真实终端中BOG冷凝器的操作数据验证了所提出的方法,并且该方法在液位,温度和压力的测量中显示不到2%的误差。

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