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Investigation of improvement of desorption efficiency using engine cooling water in natural gas vehicle tank

机译:天然气汽车箱中发动机冷却水改进解吸效率的研究

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In natural gas driven vehicles, the endothermic effect during the desorption process in the gas tank not only poses a great impact on the quantity and efficiency of desorption but also affects the vehicle speed and the maximal mileage seriously. To investigate the influence of the thermal effect, this paper firstly establishes a mathematical model for the desorption process based on the conservation equations of mass, momentum and energy, as well as the gas state equation and the adsorption isotherm equation. The solution results of the model show that the average adsorbents temperature in the tank reduces from 293.15 K to 250.46 K due to the endothermic effect. The desorption efficiency decreases by 24.29% compared with that of the isothermal desorption. To mitigate this effect, a heating jacket, which uses the engine cooling water to heat the gas storage tank, is proposed in this paper. The modeling result shows that when the tank is heated by engine cooling water, the average temperature of adsorbents is 273.44 K, which is 26.88 K higher than that in a natural process. When the vehicle speed is 100 km/h, the natural gas mass released by the vehicle storage tank is 3.182 kg, which is 1.163 times of that in the natural desorption.
机译:在天然气驱动车辆中,气体箱中解吸过程中的吸热效果不仅对解吸的数量和效率构成了很大影响,而且严重影响了车辆速度和最大里程。为了研究热效应的影响,本文首先建立了基于质量,动量和能量的保护方程的解吸过程的数学模型,以及气体状态方程和吸附等温线等式。该模型的溶液结果表明,由于吸热效果,罐中的平均吸附剂温度降低了293.15k至250.46k。与等温解吸相比,解吸效率降低了24.29%。为了减轻这种效果,本文提出了一种使用发动机冷却水加热气体储罐的加热夹套。建模结果表明,当罐通过发动机冷却水加热时,吸附剂的平均温度为273.44k,比自然过程中的26.88k高。当车速为100公里/小时时,车辆储罐释放的天然气质量为3.182千克,这是自然解吸中的1.163倍。

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