改进水力发电装置

I. Sevostianov, O. Melnik
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引用次数: 2

摘要

水培技术是现代农业发展的一个很有前途的领域,它能以最少的水和肥料消耗,在小面积上长期种植基本蔬菜和绿色植物。这项技术可以让你在大城市里收获大量的新鲜蔬菜,包括办公室和住宅。企业家和研究人员正密切注意开发更有效的水培方法和设备来实施它们,以便减少可用空间,节约水、养分和增加空气供应和植物容量。几种水培系统是已知的:静态溶液培养,连续流动溶液(NFT)培养,深水培养,被动灌溉,水下和排水灌溉系统,废水排水系统,深水施肥培养,旋转系统,气培,芯系统。上述前三种方法在商业和工业上都得到了应用。静态培养液系统不能为植物根系提供必要的空气饱和。随着连续溶液培养方法的实施,由于水流中断(停电),一些运河的水泛滥,可能会有轻微的缓冲,此外,运河的最大长度也有限制(12 - 15米)。工业规模的深水培养系统主要用于种植生菜。其他提到的系统在商业用途方面效率不够高。文章中介绍的改进的水培装置是考虑到以下要求而开发的:通用性(种植不同类型植物的可能性);协调作物与水、养分、光和空气的最佳供应;最大限度利用空间;增加每株植物的种植面积,并保持其茎和芽。文中还给出了已开发装置基本参数的定义公式。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
IMPROVEMENT OF HYDROPON INSTALLATIONS
Hydroponics is a promising area of development of modern agriculture, which provides long-term cultivation of basic vegetables and greenery in small areas with minimal consumption of water and fertilizers. This technology allows you to get a fairly large harvest of fresh vegetables within large cities, including office and residential premises. Entrepreneurs and researchers are paying close attention to developing more efficient hydroponics methods and equipment to implement them in order to reduce usable space, save water, nutrients and increase air supply and plant capacity. Several hydroponics systems are known: static solution culture, continuous flow solution (NFT) culture, deep water culture, passive irrigation, underwater and drainage irrigation systems, wastewater drainage system, deep-water fertilized culture, rotary system, aeroponics, wick system. The first three of the above methods were used commercially and industrially. The system of static culture solution does not provide the necessary saturation of plant roots with air. With the implementation of the method of continuous solution culture, minor buffering is possible due to interruptions in the flow (power outage), flooding of water in some canals, in addition, there are restrictions on the maximum length of canals (12 - 15 m). The system of deep-water culture on an industrial scale is used mainly for growing lettuce. Other mentioned systems are not efficient enough in terms of commercial use. The improved hydroponic installations presented in the article were developed taking into account the following requirements: universality of use (possibility of growing different types of plants); harmonization of optimal supply of crops with water, nutrients, light and air; maximum use of space; increasing the area for each plant and maintaining its stems and shoots. Also in the article the equation for definition of the basic parameters of the developed installations is given.
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