首页> 外文期刊>Aquacultural Engineering: An International Journal >Feed pellet distribution in a sea cage using pneumatic feeding system with rotor spreader.
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Feed pellet distribution in a sea cage using pneumatic feeding system with rotor spreader.

机译:使用带有转子分配器的气动进料系统,将饲料颗粒分配到海笼中。

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In modern salmon farming feed is commonly transported to the cages and distributed over the surface by means of a pneumatic conveying system. Airspeed in the feeding system is used to spread the feed, although high airspeed causes pellet breakage. Thus, knowledge about how airspeed affects spreading of feeds of different pellet sizes is necessary in order to optimise the feeding routines at salmon farms. The aim of this study was to describe the surface distribution of feed pellets in sea cages when using a pneumatic feeding system with a rotor spreader. Feeds with three different pellet sizes were used and two different spreader types were tested, both with different orientations of the top unit. The spreader test was carried out with three different airspeeds of the feeding system. The test was carried out in an outdoors square steel cage (24 m x 24 m) with the rotor spreader positioned in the centre of the cage. Styrofoam boxes were used to collect the pellets. The boxes were positioned in a row on each side of the spreader, referred to as two opposite directions. The results showed that the pellets were distributed unevenly over the cage surface. One direction had higher spatial pellet densities and less area covered with feed pellets. The opposite direction showed a more dispersed pattern and longer spreading distance. Depending on airspeed, spreader and tilting of the top unit, between 18% and 80% of the cage surface was covered with feed pellets and spatial pellet densities between 0 g m-2 and >200 g m-2 were measured. Increasing airspeed gave a longer spreading distance of pellets, measured from the centre. The effect of airspeed was more pronounced for spreader direction with dispersed spreading. Also, with increasing airspeeds the areas with high spatial pellet densities were decreased for both directions, indicating a more uniform spreading with higher airspeeds. The pellet distribution for the different pellet sizes was similar. Spreader type and tilting significantly affected pellet distribution.
机译:在现代鲑鱼养殖中,饲料通常被输送到网箱并通过气动输送系统在整个表面上分配。喂料系统中的空速用于分散饲料,尽管高空速会导致颗粒破碎。因此,为了优化鲑鱼养殖场的饲喂程序,必须了解有关空速如何影响不同颗粒大小的饲料散布的知识。这项研究的目的是描述当使用带有转子撒布机的气动进料系统时,在海笼中饲料颗粒的表面分布。使用具有三种不同颗粒尺寸的饲料,并测试了两种不同的撒布机,两种撒布机的顶部方向不同。扩展器测试是在进料系统的三种不同空速下进行的。该测试是在室外方形钢制笼子(24 m x 24 m)中进行的,并将转子吊具放置在笼子的中央。用泡沫聚苯乙烯盒收集颗粒。盒子在吊具的每一侧成排放置,称为两个相反的方向。结果表明,颗粒在笼表面上分布不均匀。一个方向具有较高的空间颗粒密度,而饲料颗粒覆盖的面积较小。相反的方向显示出更分散的图案和更长的散布距离。根据空速,摊铺机和顶部的倾斜度,笼子表面的18%至80%被饲料颗粒覆盖,且颗粒空间密度介于0 gm -2 和> 200 gm -2 被测量。从中心开始,增加的空速会延长颗粒的散布距离。空速的影响在撒布方向和撒布分散方面更为明显。而且,随着空速的增加,两个方向上具有高空间颗粒密度的区域都减小了,这表明在较高的空速下散布更均匀。不同颗粒尺寸的颗粒分布是相似的。撒布机的类型和倾斜度显着影响颗粒的分布。

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