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The full simulation of rapid refueling of a Natural Gas Vehicle on-board cylinder

机译:天然气汽车车载气缸快速加油的完整模拟

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The full simulation of the rapid refueling of a Natural Gas Vehicle (NGV) on-board cylinder is presented. The cylinder is fueled with Compressed Natural Gas (CNG). A concurrent simulation of the heat transfer and flow inside the cylinder and its wall is a troublesome work. It has not been investigated in antecedent researches. Rapid refueling may cause a surprising temperature rise, which has a significant effect on final conditions and may breach the safety standards. In this research, Firstly, based on a numerical simulation, an equation has been developed for foretelling heat transfer rate between in-cylinder flow and inner surface cylinder wall. Afterwards, a thermodynamic method has been developed for foretelling pressure and temperature variations inside the cylinder and transient wall temperature during the refueling. The method has been applied to types I and III on-board storage cylinders. The numerical results compare well with prior related experimented values. The results showed that a major portion of heat dissipation from the in-cylinder flow is reserved in the cylinder wall. It was also found that ambient temperature during refueling process has sizeable outcomes on refueling behavior in general and in particular on the final in-cylinder temperature and filled mass. The results are also presented and compared for adiabatic cylinders. (C) 2014 Elsevier B.V. All rights reserved.
机译:提出了天然气汽车(NGV)车载汽缸快速加油的完整模拟。气缸中装有压缩天然气(CNG)。同时模拟气缸及其壁内部的传热和流动是一项麻烦的工作。以前的研究尚未对此进行研究。快速加油可能会导致温度意外升高,这会对最终条件产生重大影响,并可能违反安全标准。在这项研究中,首先,在数值模拟的基础上,建立了一个预测缸内流动与内表面缸壁之间传热速率的方程。此后,已经开发出一种热力学方法来预测加油期间气缸内的压力和温度变化以及瞬态壁温。该方法已应用于I型和III型车载储气瓶。数值结果与先前的相关实验值进行了比较。结果表明,缸内流动的大部分热量保留在缸壁中。还发现,加油过程中的环境温度通常对加油行为具有可观的结果,特别是在最终缸内温度和填充质量方面。还给出了绝热圆柱体的结果并进行了比较。 (C)2014 Elsevier B.V.保留所有权利。

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