SIMULASI KESTABILAN PROTOTYPE UAV-SPRAYER BERBASIS QUADCOPTER TERHADAP PENAMBAHAN SEKAT PADA PENAMPUNG CAIRAN

IF 0.1 0 MUSIC
Krisnadhi Hariyanto, Bangga Dirgantara
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引用次数: 0

Abstract

The use of UAVs has begun to penetrate the world of agriculture. One of the functions of UAVs in agriculture is to spray pesticides. The pesticides used are liquid so that when the UAV is airborne and maneuvering, the fluid experiences fluid motion or sloshing. Sloshing that occurs can cause the balance of the UAV to be disturbed. To overcome this, a bulkhead or baffle is needed in the reservoir in order to reduce fluid movement. In the case of the research studied, the simulation of sloshing in the reservoir with the presence of baffles and without the presence of baffles. This research uses different reservoir variations and different water levels, namely 55 mm, 35 mm and 15 mm. Simulations are carried out during cruising and maneuvering flights at a speed of 2 m/s. The container modeling uses the Catia V5R20 software and the simulation uses the Ansys 14.5 software. The simulation results show that the effect of baffle placement is more visible if the baffle is placed in the xy plane, while for the baffle placement in the yz plane, the force caused by sloshing is greater. In spraying the UAV-Sprayer will more often fly forward (cruise), while for maneuvers (right or left) it is only done occasionally/not too often. So that giving baffles is more effective in the xy plane because it can reduce sloshing better than the baffles in the yz plane.
基于四轴飞行器的基于四轴飞行器的比例模型,对液体容器中的支架进行增强
无人机的使用已经开始渗透到农业领域。无人机在农业上的功能之一是喷洒农药。所使用的农药是液体的,因此当无人机在空中和机动时,液体会经历流体运动或晃动。发生晃动会导致无人机的平衡受到干扰。为了克服这个问题,需要在储层中安装隔板或挡板,以减少流体的运动。在本研究的情况下,分别对有挡板和无挡板的储水池内的晃动进行了模拟。本研究采用不同的储层变化和不同的水位,即55 mm、35 mm和15 mm。以2 m/s的速度进行了巡航和机动飞行的仿真。容器建模采用Catia V5R20软件,仿真采用Ansys 14.5软件。仿真结果表明,当挡板放置在xy平面时,挡板放置的影响更为明显,而当挡板放置在yz平面时,晃动产生的力更大。在喷洒时,UAV-Sprayer将更多地向前飞行(巡航),而对于机动(右或左),它只是偶尔做/不太经常。所以在xy平面上设置挡板更有效因为它比在yz平面上设置挡板能更好地减少晃动。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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12 weeks
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