STUDY OF THE OPTIMAL PARAMETERS’ STABILITY OF A TRAILED SPRAYER WHEN CHANGING WORKING CONDITIONS

A. Nurmiev, Otari Didmanidze, K. Khafizov, K. Khafizov, Nail Zalakov
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Abstract

Research was carried out to identify changes in energy costs and the stability of the optimal parameters of a trailed sprayer when changing the numerical values of factors affecting its operation, to determine the possibility of stable operation in various conditions. The work was carried out using the example of a trailed sprayer for a 4K4a tractor, type MTZ-82, with an engine power of 80 hp. (optimal working width – 32 m, speed – 10 km/h, wheel diameter – 2 m, tank volume – 5000 l, wheel profile width – 0.2 m, sprayer weight distribution coefficient on its support wheels – 0.83) at changing the following operating conditions of the unit: cultivated field area from 1 to 101 hectares, paddock length from 0.1 to 1.1 km, soil density from 1.1 to 1.7 g/cm3, tanker productivity from 100 to 700 l/min , grain yield from 15 to 70 c/ha, seasonal volume of work per unit from 100 to 3600 ha, application rate of preparations from 50 to 330 l/ha, number of weeds per unit field area from 10 to 460 pcs/ m2. With an increase in the numerical values of the first four of the listed factors that determine the operating conditions of the sprayer, the total energy costs decreased by 200...2800 MJ/ha, an increase in the values of the indicators of the other four factors of the system led to an increase in the total energy costs by 300...5300 MJ/ha. At the same time, the optimal parameters of the sprayer remained unchanged regardless of the variation in the factors under consideration.
研究拖挂式喷雾器在工作条件变化时的最佳稳定性参数
为了确定拖挂式喷雾器在各种条件下稳定运行的可能性,对影响其运行的因素的数值变化时能源成本的变化和最佳参数的稳定性进行了研究。这项工作以 4K4a 拖拉机的拖式喷雾器为例进行,拖拉机型号为 MTZ-82,发动机功率为 80 马力。(最佳工作宽度 - 32 米,速度 - 10 公里/小时,车轮直径 - 2 米,油箱容积 - 5000 升,车轮轮廓宽度 - 0.2 米,喷雾器支撑轮上的重量分配系数 - 0.83),改变设备的以下工作条件:耕地面积从 1 公顷到 101 公顷,围场长度从 0.土壤密度从 1.1 克/立方厘米到 1.7 克/立方厘米,罐车生产率从 100 升/分钟到 700 升/分钟,谷物产量从 15 克/公顷到 70 克/公顷,单位季节作业量从 100 公顷到 3600 公顷,制剂施用量从 50 升/公顷到 330 升/公顷,单位田地面积杂草数量从 10 株/平方米到 460 株/平方米。随着决定喷雾器工作条件的前四个因素数值的增加,总能源成本降低了 200...2800 兆焦耳/公顷,而系统中其他四个因素的指标数值的增加则导致总能源成本增加了 300...5300 兆焦耳/公顷。同时,无论考虑的因素如何变化,喷雾器的最佳参数都保持不变。
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