Substantiation seasonal load of beet harvester SKS-624 “Palesse BS624-1” at different start of harvesting

D. V., Pukas, V., Lub, P., D. V.
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Abstract

Purpose. To increase the efficiency of technological processes (TP) of sugar beet harvesting (ZTSB) by substantiating the rational seasonal loading of the beet harvester SKS-624 “Palesse BS624-1” at different times of commencement of harvesting operations, as well as to establish the regularities of changes in the functional indicators. Methods. The research uses the methods: analysis and synthesis of SBH TP components for the theoretical definition of efficiency factors; system-factor and system-event approaches to reveal their influence and reflection in the statistical simulation model of the SBH TP; statistical simulation to determine functional performance indicators of TP; iterations of the simulation model for displaying the stochastic agrometeorological and biological-substantive components; correlation-regression and statistical analysis of the computer experiments results. Results. It is emphasized on the importance of taking account of agrometeorological and biological-substantive components for the coordination of the SBH beginning time and their production area with parameters of technical support (beet harvesters and trailers-reloaders of root crops). The features of SBH TP are singled out, which should be taken into account in their statistical simulation model. The statistical simulation was performed, results were generalized and the dependencies of the functional efficiency indicators of these TP for the given beet harvester – SCS-624 “Palesse BS624-1” were established. It has been shown that the choice of the harvest beginning time does not allow simultaneously to minimize biological and technological losses of sugar beet root crops. The optimum sugar beets production area for the considered beet-harvesting combine is substantiated and the dependence of this area with the beginning time of the harvesting TP is shown. The harvesting beginning time and sugar beet production area has been agreed with the parameters of a beet harvester. The minimum specific unit costs of the technological system are achieved. Conclusions 1.The computer experiments results with the statistical simulation model SBH TP (for the beet harvester SKS-624 “Palesse BS624-1” and the trailer-loader roots – HTZ-243K.20 + Hawe Ruw 2500T) convinced that the choice of rational beginning time of the TP will not allow to reduce the biological and technological losses of the crop to an absolute minimum. This is the basis for using the cost criterion to justify the parameters of the relevant technical support. 2.The usage of the developed methods and models, as well as the combination of the production and computer experiments results, made it possible to prove the possibility of substantiation of the technical support parameters of SBH TP on the basis of their agreement with the beginning time of the TP and the sugar beets production area. In particular, it was found that shifting the beginning time of these TP in relatively recent calendar terms (from 260 to 285 days, its mean – September 18 to October 13) necessitates the reduction of the optimal production area Sopt from 180 to 80 hectares for a beet harvester SKS-624 “Palesse BS624-1”, which necessitates additional combines. It is also worth noting the increase in the specific aggregate cost of funds from 5795.33 UAH/ha (for seasonal load 180 ha) to 11570.53 UAH/ha (for seasonal load 80 ha). Keywords: harvester, reloader, harvesting, sugar beet, stochasticity, yield losses, modeling, coordination of components, efficiency.
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甜菜收获机SKS-624“Palesse BS624-1”在不同收获开始时的季节负荷
目的。通过验证SKS-624“Palesse BS624-1”型甜菜收获机在开始收获作业的不同时间的合理季节负荷,建立功能指标的变化规律,提高甜菜收获工艺流程的效率。本研究采用SBH TP组分分析与合成的方法对效率因子进行理论定义;系统因子和系统事件方法揭示它们在SBH TP统计模拟模型中的影响和反映;统计仿真,确定TP的功能性能指标;显示随机农业气象和生物实体成分的模拟模型的迭代;对计算机实验结果进行相关回归和统计分析。它强调了考虑农业气象和生物实质性组成部分的重要性,以协调SBH开始时间及其生产区域与技术支持参数(甜菜收割机和块根作物拖车装载机)。指出了SBH TP的特征,在统计仿真模型中应考虑这些特征。对统计模拟结果进行了推广,并建立了这些TP功能效率指标对给定的甜菜收获机——SCS-624“Palesse BS624-1”的依赖关系。研究表明,开始收获时间的选择不能同时使甜菜根作物的生物和技术损失最小化。确定了所考虑的甜菜收获联合收割机的最佳甜菜生产区域,并显示了该区域与收获TP开始时间的相关性。通过对甜菜收获机参数的分析,确定了采收开始时间和甜菜生产区域。实现了该技术系统的最小单位成本。利用SBH - TP统计仿真模型对甜菜收割机SKS-624“Palesse BS624-1”和拖车装载机roots - HTZ-243K进行了计算机实验。20 + Hawe Ruw 2500T)确信,选择合理的TP开始时间将不能使作物的生物和技术损失降到绝对最低。这是使用费用标准证明有关技术支持参数的依据。利用所建立的方法和模型,结合生产和计算机试验结果,证明了SBH TP技术支持参数与TP开始时间和甜菜产区一致的可能性。特别是,研究发现,将这些TP的开始时间转移到相对较近的日历周期(从260天到285天,其平均值为9月18日至10月13日)需要将SKS-624“Palesse BS624-1”甜菜收获机的最佳生产面积从180公顷减少到80公顷,这需要额外的联合收割机。同样值得注意的是,具体总资金成本从5795.33澳元/公顷(季节性负荷为180公顷)增加到11570.53澳元/公顷(季节性负荷为80公顷)。关键词:收割机,复装机,收获,甜菜,随机性,产量损失,建模,组件协调,效率。
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