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首页> 外文期刊>Engineering Physics >Evaporation Reduction Test of Premium Unleaded Fuel by the Smart Floating Roof Method in a Horizontal Cylindrical Tank
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Evaporation Reduction Test of Premium Unleaded Fuel by the Smart Floating Roof Method in a Horizontal Cylindrical Tank

机译:水平圆柱形罐中的智能浮动屋顶法蒸发溢流无铅燃料的蒸发试验

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The floating roof is originally the device that is easily used in a vertical cylindrical storage tank for volatile products. It covers the evaporative surface which remains constantly circular, regardless of the level of the fluid in the tank. However, in a horizontal cylindrical tank, the extent and shape of the free surface of the fluid, the seat of evaporation, varies according to the residual stock. To this end, the concept of the intelligent or flexible floating roof arises from the problem of pollution and energy losses resulting from the excessive evaporation of unleaded premium fuel (SPb) in the Ivory Coast, in the city of Korhogo, which has a hot and dry climate. Therefore, the objective of this study was to design a floating roof suitable for horizontal cylindrical tanks with a fairly competitive evaporation reduction performance. This study was carried out on an experimental station where two identical tanks were tested in comparative trials. One with a floating polypropylene ball roof and the other without a roof. The respective residual volumes of the fluid in each tank were monitored regularly and concomitantly according to evaporation factors such as temperature and pressure. At the end of these tests, it was found that the flexible floating roof absorbed more losses, with an estimated non-evaporation rate of 88% compared to the tank without the flexible floating roof, whose rate was estimated at 80%, i.e. an added value of 08%. Thus, the layers of beads placed at the gas-liquid interface reduced the heat, mass and pressure transfer between the two fuel phases.
机译:浮动屋顶最初是该装置,可容易地用于垂直圆柱储罐,用于挥发性产品。它覆盖蒸发表面,其保持不断圆形,无论罐中的流体水平如何。然而,在水平圆柱形罐中,流体的自由表面的范围和形状,蒸发座椅,根据残留的原料而变化。为此,智能或柔性浮屋屋顶的概念出现在古老的岸上的无铅优质燃料(SPB)的过度蒸发,在Korhogo市中心,这是一个热辣的和干气候。因此,本研究的目的是设计一种适用于水平圆柱形罐的浮顶,具有相当竞争的蒸发性能。该研究在实验站进行,在比较试验中测试了两个相同的罐。一个有浮动聚丙烯球屋顶,另一个没有屋顶。定期监测每个罐中的各自的流体的残留体积,并根据蒸发因子如温度和压力伴随。在这些测试结束时,发现柔性浮动屋顶吸收更多的损失,与没有柔性浮屋顶的罐相比,估计的非蒸发速率为88%,其速率估计为80%,即添加的速率价值08%。因此,放置在气液界面处的珠子层减少了两种燃料相之间的热量,质量和压力传递。

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