A. Babichenko, I. Krasnikov, J. Babichenko, V. Panasenko, Dmytro Snurnikov, Oleksii Shutynskyi
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Under such circumstances, it becomes possible to increase the concentration of the refrigerant due to the rectification of steam with a part of the liquid refrigerant without using a pump with the removal of the dephlegmator from the ARU circuit.\nExperimental studies and material-thermal calculations of ARU cycles were carried out to determine the basis of comparison and the proposed version of the ARU scheme. It has been proven that the new technological design of ARU provides an increase in cooling capacity from 3.22 MW to 3.6 MW (by 12 %), the thermal coefficient from 0.527 to 0.551 (by 4.6 %), a decrease in the circulation ratio from 7.77 to 7.1 (by 8 %), and a decrease in the secondary condensation temperature by 2.5 ℃.\nIt is shown that for the proposed version of the technological design of ARU, there is a change in specific costs – an increase in electricity by 1.48 kWh/t NH3 and a decrease in natural gas by 0.41 nm3/t NH3. 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引用次数: 0
摘要
研究对象是用于大规模合成氨生产二次冷凝技术系统的吸收式制冷机组(ARU)的设备和技术设计。根据分析研究的结果,证明了吸收制冷和蒸汽喷射器循环相结合的可行性,这确保了发生器-整流器立方体中弱水-氨溶液沸腾温度的降低和吸收制冷装置循环中冷凝压力的增加。在这种情况下,由于蒸汽与部分液态制冷剂的整流作用,可以在不使用泵的情况下提高制冷剂的浓度,同时将除痰器从 ARU 循环中移除。为了确定 ARU 方案的比较基础和拟议版本,对 ARU 循环进行了实验研究和材料热计算。实验证明,ARU 的新技术设计可将冷却能力从 3.22 MW 提高到 3.6 MW(提高 12%),将热系数从 0.527 提高到 0.551(提高 4.6%),将循环比从 7.77 降低到 7.1(降低 8%),并将热量系数从 0.527 提高到 0.551(提高 4.6%)。据显示,对于 ARU 的拟议技术设计版本,具体成本发生了变化--电费增加了 1.48 kWh/t NH3,天然气费用减少了 0.41 nm3/t NH3。考虑到现有的天然气和电力成本指标,采用建议的技术可确保每年减少 700 万乌吉亚(18.5 万美元)的运营成本,从而提高整个合成氨生产的经济性。
Designing energy-efficient hardware and technological structure of absorption refrigeration units for ammonia production
The object of research is the equipment and technological design of absorption refrigeration units (ARUs) for the technological system of secondary condensation of large-scale ammonia production. Improving the energy efficiency of ARU is an urgent problem in the general process of reducing operating costs for natural gas in these industries as a whole.
Based on the results of analytical studies, the feasibility of combining absorption-refrigeration and vapor-ejector cycles was substantiated, which ensures a decrease in the boiling temperature of a weak water-ammonia solution in the cube of the generator-rectifier and an increase in the condensation pressure in the ARU cycle. Under such circumstances, it becomes possible to increase the concentration of the refrigerant due to the rectification of steam with a part of the liquid refrigerant without using a pump with the removal of the dephlegmator from the ARU circuit.
Experimental studies and material-thermal calculations of ARU cycles were carried out to determine the basis of comparison and the proposed version of the ARU scheme. It has been proven that the new technological design of ARU provides an increase in cooling capacity from 3.22 MW to 3.6 MW (by 12 %), the thermal coefficient from 0.527 to 0.551 (by 4.6 %), a decrease in the circulation ratio from 7.77 to 7.1 (by 8 %), and a decrease in the secondary condensation temperature by 2.5 ℃.
It is shown that for the proposed version of the technological design of ARU, there is a change in specific costs – an increase in electricity by 1.48 kWh/t NH3 and a decrease in natural gas by 0.41 nm3/t NH3. Taking into account existing cost indicators for natural gas and electricity, the application of the proposed technology ensures a decrease in annual operating costs by UAH 7 million (USD 185,000), and therefore an increase in the economy of ammonia production as a whole
期刊介绍:
Terminology used in the title of the "East European Journal of Enterprise Technologies" - "enterprise technologies" should be read as "industrial technologies". "Eastern-European Journal of Enterprise Technologies" publishes all those best ideas from the science, which can be introduced in the industry. Since, obtaining the high-quality, competitive industrial products is based on introducing high technologies from various independent spheres of scientific researches, but united by a common end result - a finished high-technology product. Among these scientific spheres, there are engineering, power engineering and energy saving, technologies of inorganic and organic substances and materials science, information technologies and control systems. Publishing scientific papers in these directions are the main development "vectors" of the "Eastern-European Journal of Enterprise Technologies". Since, these are those directions of scientific researches, the results of which can be directly used in modern industrial production: space and aircraft industry, instrument-making industry, mechanical engineering, power engineering, chemical industry and metallurgy.