Calculation algorithm for adsorptive heat-moisture regenerator

Abstract

The work is devoted to the development of an efficient algorithm for calculating the performance characteristics of adsorption regenerator of heat and moisture for the air conditioning and ventilation system. The following calculation method is proposed: the calculation of the volume of air passing through the layer of heat-accumulating material, the concentration of water in the flow at the exit from the thermal accumulator, the adsorption, the heat of adsorption, the final temperature of the cold air, the air temperature after mixing the cold air from the street and the warm air in the room at the inlet, the calculation of the concentration of water in the flow at the exit from the heat accumulator, the volume of air passing through the layer of heat-accumulating material, the final temperature of the warm district air temperature after mixing the cold air from the street and the warm air from the room at the outlet, determining the temperature coefficient of efficiency, total adsorption and time to achieve maximum adsorption. The correlation of absolute humidity and air temperatures near the warm and cold extremities of the regenerator, as well as the temperature coefficients of efficiency established according to the results of calculations using proposed algorithm and research method, is shown. The mathematical modeling of the processes of operation of adsorption regenerators of heat and moisture on the basis of "silica gel – sodium sulfate" composites in the conditions of the typical ventilation system of residential premises is carried out. Influence on the temperature coefficient of efficiency of air flows switching time, air velocity, as well as absolute humidity and temperature of external and internal air under stationary conditions is established. The maximum values of thermal efficiency coefficients were recorded at the velocity of humid air of about 0.22–0.32 m/s and the switching time of 5-10 minutes. The effect of the velocity are shown of moist air flow and the absolute humidity of the wet air at the time of reaching maximum adsorption are shown. The results of the study can be used in the development of energy efficient air conditioning and ventilation systems, as well as drainage modules for residential and warehouse facilities.

Authors and Affiliations

Елена Анатольевна Беляновская, Р. Д. Литовченко, Константин Михайлович Сухой, М. В. Губинский, Михаил Порфирьевич Сухой

Keywords

Related Articles

Questions of using multidimensional Pade-type approximations for the generalized summary of the decisions of the boundary-value problems

The aim of this work is to develop a methodology for constructing multidimensional Pade approximants for solving boundary value problems and determining the conditions for their convergence. In the theory of multidimensi...

Моделирование колебаний стержня оправки стана холодной пильгерной прокатки труб

Рассмотрена задача о параметрических колебаниях для выбранной модели системы «труба – оправка – стержень» механизма удержания оправки стана холодной пильгерной прокатки труб (ХПТ). Разработана расчетная схема и составлен...

Алгоритм получения учебных образцов для нейронной сети при решении задач долговечности корродирующих конструкций

При решении задач прогнозирования долговечности корродирующих конструкций предлагается использовать технологии вычислительного интеллекта, в частности искусственные нейронные сети. Выделяют определённые необходимые этапы...

Software for design systems of fuzzy control and conducting fuzzy-multiple calculations

The paper suggests a description of the design concept and ways to implement the library to work with data that are fuzzy. Based on a review of the latest researches in the field of fuzzy calculations, we formulated the...

Use of neural networks in optimization methods for corroding plane stressed plates

The adaptation of the flexible tolerance method to the problems of optimal design of corroding plane stressed plates is proposed with a limitation on the given durability (the operating time up to the moment of exhaustio...

Download PDF file
  • EP ID EP610374
  • DOI 10.32434/2521-6406-2018-4-2-3-8
  • Views 151
  • Downloads 0

How To Cite

Елена Анатольевна Беляновская, Р. Д. Литовченко, Константин Михайлович Сухой, М. В. Губинский, Михаил Порфирьевич Сухой (2018). Calculation algorithm for adsorptive heat-moisture regenerator. Комп’ютерне моделювання: аналіз, управління, оптимізація, 2(2), 3-8. https://europub.co.uk./articles/-A-610374