Rationale for the composition, type and quantity of technology for rice clusters

M. T. Toshboltaev, B. Egamnazarov
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引用次数: 0

Abstract

This paper underscores the predominant employment of seedling technology for rice cultivation in rice-growing clusters within the Republic of Uzbekistan. Despite its benefits in terms of minimal water and resource consumption, accelerated maturation, and harvest timing, this technology's widespread adoption remains limited. The study identifies a key factor in this limitation to be the absence of scientifically grounded information concerning the technical rationale required for rice cultivation via the cluster method, particularly among rice farm experts. (Research purpose) To provide the rationale for the composition, types, and quantities of technical equipment necessary to enhance the level of mechanization in the rice seedling technology. (Materials and methods) The research involves a range of methodologies, including monographic observation rules, information analysis and synthesis, normative methods, as well as the fundamental principles governing the operation of the machine and tractor fleet. (Results and discussion) The research focuses on the TCT RICE rice cluster, which encompasses a cropland area of 2700 hectares. The principal technical attributes of the PRO-600V transplanter were provided. In substantiating the composition, type and quantity of technical equipment for executing the production process, the operations delineated in standard flow charts for rice cultivation were employed as the foundational framework. A set of nine assessment criteria is utilized to determine the appropriate composition, type, and quantity of technical equipment necessary for the key agrotechnical activities, including plowing, pre-sowing tillage, seedling, plant cultivation, crop harvesting, and transportation. (Conclusions) Full mechanization of the production process in the cropland of the TCT RICE rice cluster is achieved by using 15 types of technical equipment with a total of 301 units. The results obtained can serve as primary material in the preparation of machine-tractor rice-growing units and the justification of the repair and maintenance base of rice-growing clusters. Complete mechanization of the production process within the cropland of the TCT RICE rice cluster is realized through the deployment of 15 categories of technical equipment, amounting to a total of 301 units. The research outcomes can be utilized as fundamental data for crafting machine-tractor units used for rice cultivation, as well as substantiating the infrastructure for repair and maintenance within rice-growing clusters. Keywords: rice cluster, rice cultivation, technical equipment, transplanter, assessment criteria, mechanization.
水稻种植技术的组成、类型和数量的基本原理
本文强调了在乌兹别克斯坦共和国的水稻种植集群中水稻种植的主要就业苗木技术。尽管该技术在减少水资源和资源消耗、加速成熟和收获时间方面具有优势,但该技术的广泛采用仍然有限。该研究确定了造成这种限制的一个关键因素,即缺乏关于通过聚类方法种植水稻所需的技术原理的科学基础信息,特别是在水稻种植专家中。(研究目的)为提高水稻育苗技术机械化水平所需技术设备的组成、种类和数量提供理论依据。(材料和方法)本研究涉及一系列方法,包括专题观察规则、信息分析和综合、规范方法以及机械和拖拉机车队运行的基本原则。(结果与讨论)该研究的重点是TCT RICE水稻集群,该集群包括2700公顷的耕地面积。给出了PRO-600V移栽机的主要技术参数。在确定执行生产过程的技术设备的组成、类型和数量时,采用了水稻种植标准流程图中所描述的操作作为基本框架。一套九项评估标准用于确定关键农业技术活动所需技术设备的适当组成、类型和数量,包括耕作、播种前耕作、育苗、植物栽培、作物收获和运输。(结论)TCT RICE水稻集群采用15种技术设备共301台,实现了水稻生产过程的全机械化。所得结果可作为机拖拉机水稻种植单元的编制和水稻种植集群维修维修基地的依据。通过部署15类技术设备,共计301台设备,实现了TCT RICE水稻集群农田内生产过程的完全机械化。研究成果可作为制作水稻种植机械拖拉机装置的基础数据,并为水稻种植集群内的维修和维护基础设施提供依据。关键词:水稻集群,水稻栽培,技术装备,插秧机,评价标准,机械化。
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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