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Charge-discharge characteristics of an adsorbed natural gas storage system under ambient conditions

机译:环境条件下吸附的天然气储存系统的充放电特性

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The performance of an adsorbed natural gas (ANG) storage system with natural convection heat transfer between the ANG bed and the ambient air is studied. Results are obtained for the bed without and with external fins on ambient air side. A one dimensional transient conduction model with suitable kinetic equation is formulated to simulate the performance of the bed filled with a homogeneous mixture of activated carbon and graphite. The model duly considers non-ideal behaviour of natural gas, variable specific heat of the adsorbed phase and heat of adsorption. Results are obtained for the case of constant pressure charging and constant flow discharging. The performance of the ANG bed is evaluated in terms of delivery capacity and discharge time. Results are obtained at an ambient temperature of 308 K and 35 bar for a charging time of 3.34 min. It is found that under this condition, the bed temperature increases by 70 and 45K and the storage capacity reduces by 75 and 60% without and with external fins, respectively. During discharge also, due to insufficient heat supply the bed temperature drops to very a low value thereby increasing the amount of adsorbate retained at the end of discharge process. This study clearly shows the need for improving the heat transfer rate from or to the ANG bed for higher delivery capacity.
机译:研究了充气床和环境空气之间具有自然对流热传递的吸附天然气(Ang)存储系统的性能。结果是为床而没有环境空气侧的外翅片获得。配制了具有合适动力学方程的一维瞬态传导模型,以模拟填充有活性炭和石墨的均匀混合物的床的性能。该模型适当考虑天然气的非理想行为,吸附相和吸附热的可​​变比热。获得恒压充电的情况和恒定流量放电的结果。在输送能力和放电时间方面评估Ang床的性能。结果在308K和35巴的环境温度下获得,充电时间为3.34分钟。发现在这种情况下,床温度升高70和45k,并且储存容量分别通过75%和60%减少,分别与外部鳍片。在放电期间,由于供热不足,床温下降到非常低的值,从而增加在放电过程结束时保持的吸附物量。该研究清楚地表明需要改善来自Ang床的传热速率以获得更高的输送能力。

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