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Analysis of temperature and pressure changes in liquefied natural gas (LNG) cryogenic tanks

机译:液化天然气低温罐的温度和压力变化分析

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Liquefied natural gas (LNG) is being developed as a transportation fuel for heavy vehicles such as trucks and transit buses, to lessen the dependency on oil and to reduce greenhouse gas emissions. The LNG stations are properly designed to prevent the venting of natural gas (NG) from LNG tanks, which can cause evaporative greenhouse gas emissions and result in fluctuations of fuel flow and changes of fuel composition. Boil-off is caused by the heat added into the LNG fuel during the storage and fueling. Heat can leak into the LNG fuel through the shell of tank during the storage and through hoses and dispensers during the fueling. Gas from tanks onboard vehicles, when returned to LNG tanks, can add additional heat into the LNG fuel. A thermodynamic and heat transfer model has been developed to analyze different mechanisms of heat leak into the LNG fuel. The evolving of properties and compositions of LNG fuel inside LNG tanks is simulated. The effect of a number of buses fueled each day on the possible total fuel loss rate has been analyzed. It is found that by increasing the number of buses, fueled each day, the total fuel loss rate can be reduced significantly. It is proposed that an electric generator be used to consume the boil-off gas or a liquefier be used to re-liquefy the boil-off gas to reduce the tank pressure and eliminate fuel losses. These approaches can prevent boil-off of natural gas emissions, and reduce the costs of LNG as transportation fuel.
机译:液化天然气(LNG)被开发为重型车辆(例如卡车和公交车)的运输燃料,以减少对石油的依赖并减少温室气体排放。 LNG站的设计经过适当设计,可防止从LNG储罐中排放天然气(NG),这可能导致蒸发的温室气体排放,并导致燃料流量波动和燃料成分变化。沸腾是由于在存储和加油期间添加到LNG燃料中的热量引起的。在存储过程中,热量会通过罐壳泄漏到液化天然气燃料中,在加油过程中会通过软管和分配器泄漏出来。车载油箱中的气体返回LNG油箱后,可能会在LNG燃料中增加热量。已经开发出热力学和热传递模型来分析热泄漏到液化天然气燃料中的不同机理。模拟了液化天然气罐内液化天然气燃料的特性和成分的演变。分析了每天加油的公交车数量对可能的总燃油损失率的影响。发现通过增加每天加油的公共汽车的数量,总的燃油损失率可以大大降低。建议使用发电机消耗蒸发气体,或使用液化器使蒸发气体重新液化,以降低油箱压力并消除燃料损失。这些方法可以防止天然气排放的蒸发,并降低液化天然气作为运输燃料的成本。

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