首页> 外文会议>International Conference on Cooling and Heating Technologies(ICCHT2006); 20060726-30; Dalian(CN) >Experimental Study on Gasification Characteristic by Using Liquefied Gas Vaporizer with Various Shape
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Experimental Study on Gasification Characteristic by Using Liquefied Gas Vaporizer with Various Shape

机译:各种形状的液化气蒸发器气化特性的实验研究

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摘要

Recently, vaporizers which are greatly enhanced performance from the conventional type have been developed. This paper represents the optimum design of the vaporizer used at a satellite station. Normally, the frozen moisture of air is created by temperature drop on the vaporizer surface. This problem is increasingly occurred by the time going on and the humidity rise. In addition, the frost creates ice deposit layer, therefore heat transfer on vaporizer decreases into the adiabatic condition. By this reason, recent vaporizer system is installed as parallel type, so it traduces capacity three times of vaporizer. But this vaporizer system requires more high installation costs and restricted by the space. It is very important to solve this problem. This study is focused on air vaporizer because its utilization increases recently. There are. three variable conditions which are used in this study research. First, fin lengths of 4000 mm, 6000 mm, 8000 mm on each vaporizer 0, 4, 8 fin types were applied. Second, we applied in each of four season condition which consists of specific humidity, temperature and air velocity of the experimental environment. Finally, pressure of 1~3 bar was applied to get flow rate during experiment. This paper's objective is to propose vaporizer type and length data for best performance of vaporizer through experiment.
机译:近来,已经开发出与常规类型相比性能大大提高的蒸发器。本文代表了卫星站使用的蒸发器的最佳设计。通常,冻结的空气湿气是由蒸发器表面的温度下降产生的。随着时间的流逝和湿度的升高,这个问题越来越多地发生。另外,霜会形成冰层,因此在蒸发器上的热传递会降低到绝热状态。因此,最近的蒸发器系统被安装为并联型,因此其蒸发能力是蒸发器的三倍。但是这种蒸发器系统需要更高的安装成本并且受空间的限制。解决这个问题非常重要。这项研究集中在空气蒸发器上,因为它的利用率最近有所提高。有。本研究中使用的三个可变条件。首先,在每种汽化器上分别使用0、4、8种鳍片类型的鳍片长度为4000 mm,6000 mm,8000 mm。其次,我们在四个季节条件中的每个条件下应用了该条件,该条件包括实验环境的特定湿度,温度和空气速度。最后,在实验过程中施加1〜3 bar的压力以获得流量。本文的目的是通过实验提出蒸发器的类型和长度数据,以获得最佳的蒸发器性能。

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