THE RESULTS OF SIMULATION MODELING OF THE WORKING PROCESS OF THE ROTOR-THROWER OF A FOREST FIRE SOIL-THROWING MACHINE

M. Drapalyuk, A. Petkov, A. Pozdnyakov
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引用次数: 1

Abstract

When solving the problem of increasing the efficiency of a forest fire soil-throwing machine containing a multi-stage rotor-thrower, a design is proposed in which the soil shaft is fully fed simultaneously to all blades of the multi-stage rotor-thrower. Determination of the kinematic parameters of the throwing process must be modeled taking into account physical and mechanical properties of soil. The purpose of this work is to increase the effectiveness of the prevention and extinguishing of forest fires with soil, by substantiating the parameters of a soil-throwing machine based on simulation of the working process of a rotor-thrower. As a result of the computational experiment, graphs are presented for determining the soil outlet angle and the ejection range with a zero blade inclination angle and for determining the soil outlet angle and ejection distance with a combined blade inclination angle. For given values of disk radii, the maximum soil fraction is ejected by the third disk, and the minimum by the first one. Therefore, the result of the computational experiment on the ratio predictably places the maximum amount of soil (more than 30%) at the distance of overlapping the trajectories of movement of soil particles ejected by the first and third disks, namely, in the range from 10.4-11.2 m. Thus, the software package can calculate not only the trajectory of soil movement depending on the design and technological parameters of the thrower rotor, by which it is possible to estimate the size of the ejection layer, but also the distribution of soil in the layer. The distribution obtained as a result of a computational experiment can be used to accumulate a database on the range of the largest part of the ejected soil and to refine the layer of maximum backfilling, taking into account physical and mechanical properties of soil
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对森林火灾抛土机转子抛土机的工作过程进行了仿真建模
针对多级转子式森林火灾喷土机提高喷土效率的问题,提出了一种多级转子式喷土机各叶片同时充土的设计方案。在确定抛掷过程的运动学参数时,必须考虑到土壤的物理和力学特性。为了提高土壤对森林火灾的防治和灭火效果,在模拟转子抛土机工作过程的基础上,确定了抛土机的参数。在计算实验的基础上,给出了叶片倾角为零时确定土壤出口角和弹射距离的图形,以及叶片倾角为组合时确定土壤出口角和弹射距离的图形。对于给定的圆盘半径值,第三个圆盘抛射出的土分数最大,第一个圆盘抛射出的土分数最小。因此,比值计算实验结果可预测地将最大土壤量(30%以上)放置在第一盘和第三盘抛射土壤颗粒运动轨迹重叠的距离,即10.4-11.2 m范围内。因此,该软件包不仅可以根据抛射转子的设计和工艺参数计算出土壤的运动轨迹,从而可以估计出抛射层的大小,还可以计算出抛射层中土壤的分布。通过计算实验得到的分布,可以在考虑土的物理力学特性的情况下,建立最大抛射土范围的数据库,并细化最大回填层
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