Development of cooling systems on the basis of absorption water-ammonia refrigerating machines of low refrigeration capacity

Abstract

<p>An analysis of the cycles of an absorption water-ammonia refrigerating machine (AWARM) is carried out in a wide range of operating parameters (temperature of the heating medium: 45...145 °C, outdoor temperature: 10...43 °C, temperature of the cooling object: minus 25...5 °C). It is shown that under the considered operating conditions, the AWARM positive effect on the energy efficiency of the AWARM is low outdoor air temperatures and high temperatures of the heating heat source.</p><p>A promising cooling system based on low refrigerating capacity AWARM is developed using solar thermal energy and the technology of using natural seasonal and daily temperature potential of atmospheric air, including using night radiation cooling (NRC).</p><p>The key elements of the cooling system are: storage tank; cooling system based on AWARM with combined sources of heat load; heat removal system in the mode of convection and radiation at night.</p><p>It is shown that AWARM in combination with a cold storage tank allows to provide a wide range of refrigeration processing by selecting a working substance with a phase transition (melting-solidification). Working substances with a temperature level are recommended: minus 25 °C (for products of animal origin); 0 °С (primary refrigerated processing of milk); 5 °С (for fruits and vegetables).</p><p>It is advisable to ensure the guaranteed heat removal from the cold storage tank of the cooling system in the passive «thermal diode» mode with the help of two-phase thermosyphons.</p><p>When working with solar collectors with water, as a coolant for the AWARM generator, the AWARM scheme with a booster compressor in front of the condenser is proposed.</p>It is shown that the greatest effect of the NRC technology in heat removal systems can be achieved in the high-mountainous regions of the planet with minimal atmospheric humidity, for example, in Kazakhstan

Authors and Affiliations

Alexandr Titlov, Eugeniy Osadchuk, Assel Alimkeshova, Rita Jamasheva

Keywords

Related Articles

Synthesis of the structure for the optimal system of flow treatment of raw materials

<p>This paper demonstrates that contemporary studies into optimization of technological processes do not take into consideration in the models of systems and in the applied criteria the requirements to the overall effici...

Analysis of probabilities of differentials for block cipher “Kalyna” (DSTU 7624:2014)

<p class="a"><span lang="EN-US">The adaptation and application of the method for estimating the upper bound of the probability of two­round differentials for the block symmetric cipher Kalyna is carried out. This cipher...

Development of the system to control milk acidity in the milk pipeline of a milking robot

<p>Acidity characterizes the suitability of milk for primary processing and is one of the key parameters monitored when accepting it at a dairy plant. Therefore, it is important to timely separate milk with lowered acidi...

Utilization of lime-softening sludge to obtain calcium nitrate

<p>The given research is devoted to the development of the technology of utilization of lime-softening sludge to obtain calcium nitrate.</p><p>Water treatment waste by chemical composition differs from natural raw materi...

“The popcorn effect”: obtaining of the highly active ultrafine nickel hydroxide by microwave treatment of wet precipitate

Nickel hydroxide is widely used as an active material of supercapacitors. The most active are samples of Ni(OH)<sub>2</sub> with (α+β) layered structure synthesized in a slit diaphragm electrolyzer. However, the processe...

Download PDF file
  • EP ID EP666338
  • DOI 10.15587/1729-4061.2019.164301
  • Views 76
  • Downloads 0

How To Cite

Alexandr Titlov, Eugeniy Osadchuk, Assel Alimkeshova, Rita Jamasheva (2019). Development of cooling systems on the basis of absorption water-ammonia refrigerating machines of low refrigeration capacity. Восточно-Европейский журнал передовых технологий, 2(8), 57-67. https://europub.co.uk/articles/-A-666338