ШОЛИЧИЛИК КЛАСТЕРИ БОШ МОДЕЛИ ВА МАШИНА ПАРКИ ТАРКИБИНИ АСОСЛАШ

B. B. Egamnazarov
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Abstract

This article presents the results of a study on the development of a general model of the rice cluster and the determination of the composition, types and quantity of the required machine park. The concept of “General model of a rice-growing cluster” is introduced and its definition is given. The general model for sown area is substantiated by the following sequence: regional rice clusters are grouped according to the values of sown area; clusters with the largest sown areas were selected from the groups and the corresponding variational series of numbers was formed; the upper limit of the mathematical expectation of this series is taken as the rational sowing area of the general model. Using the standard coefficients (numbers) of technical equipment required per 1 000 hectares of rice land, the composition, brands and number of tractors and agricultural machines that perform technological operations on the sowing area of the rice-growing cluster are determined. In ricegrowing clusters with a rational technical park, all agrotechnical operations are carried out at the optimum time and agricultural products adapted for processing are grown.
Sholichilik klasteri bosh model va machine parki tarkibini asoslash
本文介绍了水稻集群一般模型的开发以及所需机器园区的组成、类型和数量的确定的研究结果。介绍了“水稻集群一般模型”的概念,并给出了其定义。播种面积的一般模型由以下顺序得到证实:根据播种面积的值对区域水稻集群进行分组;从组中选取播种面积最大的集群,形成相应的变分序列;将该序列数学期望的上限作为一般模型的合理播种面积。利用每1000公顷水稻用地所需技术设备的标准系数(数量),确定水稻种植集群播种面积上进行技术操作的拖拉机和农机的组成、品牌和数量。在具有合理技术园区的水稻种植集群中,所有农业技术操作都在最佳时间进行,并种植适合加工的农产品。
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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