INCREASING THE PRODUCTIVITY OF PILE DIVING IN ORCHARDS AND VINEYARDS BY USING HYDROJET TECHNOLOGY

Rostyslav Iskovich-Lototskyy, Vasyl Shevchenko, N. Veselovska, R. Zaliznyak
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Abstract

The need to solve the problem of reducing labor intensity, reducing the volume of earthworks, as well as reducing the time of the process of sinking piles in orchards and vineyards. Currently, the theoretical issues of the dynamics of piles when they are immersed in the soil have not been developed to the extent required by practice. The primary task here is to study the process of sinking the pile into the soil in order to achieve the required depth of immersion with minimal damage to the structure of the pile itself, and for it to perform the work that is set before it. Naturally, in the process of sinking piles into the soil, not only elastic, but also viscous, plastic properties of the soil are manifested and its destruction occurs. The theoretical tasks of sinking the pile into the soil, taking into account the viscous, plastic properties of the soil environment and the deformation characteristics of the pile material, have not been investigated. Nowadays, in connection with the circumstances that are currently happening in Krane, in the Vinnytsia region, the percentage of people's involvement in agricultural affairs is growing significantly, namely: in the planting of new garden and grape plantations and lands. There is a demand for immersion equipment that can quickly and efficiently perform the assigned tasks. Therefore, increasing the productivity of the process of sinking piles in orchards and vineyards through the use of hydrojet technology is an extremely relevant topic. The purpose of the article is to increase the productivity of the process of sinking piles in orchards and vineyards by using hydrojet technology. Creation of favorable conditions for the intensification of the production process and the application of effective methods of action on its object; continuous implementation of technological movement; reduction and general elimination of the use of unproductive labor; in particular, when performing auxiliary operations; management of the dynamic state of the system in which technological action takes place; the multifunctionality of the technological process and the harmonious combination of its main structural components are, for the most part, trends in the development of technical progress in the implementation of pile sinking.
利用水射流技术提高果园和葡萄园的打桩效率
需要解决的问题是降低劳动强度,减少土方工程的体积,以及减少果园和葡萄园的沉桩过程的时间。目前,关于桩在土中浸没时的动力问题的理论研究尚未发展到实践所需要的程度。这里的主要任务是研究将桩沉入土中的过程,以便在对桩本身结构破坏最小的情况下达到所需的浸入深度,并使其执行之前设定的工作。自然,在桩入土过程中,土的弹性、粘性、塑性等特性都得到体现,并发生破坏。考虑到土环境的粘性、塑性特性和桩材料的变形特性,将桩打入土中的理论任务尚未得到研究。现在,结合目前在克兰、文尼察地区发生的情况,人民参与农业事务的百分比正在显著增加,即参与种植新的花园和葡萄种植园和土地。人们需要能够快速有效地执行指定任务的浸入式设备。因此,利用水力射流技术提高果园和葡萄园沉桩过程的生产率是一个非常相关的课题。本文的目的是利用水射流技术提高果园和葡萄园沉桩过程的生产率。创造有利条件,以加强生产过程,并对其目标采取有效的行动方法;技术运动的持续实施;减少和普遍消除使用非生产性劳动;特别是在执行辅助操作时;对发生技术行动的系统的动态状态的管理;工艺过程的多功能性及其主要结构部件的和谐组合,在很大程度上是沉桩施工技术进步的发展趋势。
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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