Peculiarities of the Use of Software System Thermal Scheme to Compute Heat Balance Diagrams

Автор(и)

DOI:

https://doi.org/10.20998/2078-774X.2018.13.01

Анотація

Drawbacks of the most known software systems used for the calculated analysis of heat balance diagrams were analyzed. A short description of the software program Thermal Scheme including the main peculiarities of it has been given. This software system allows us to carry out the calculated analysis of heat balance diagrams using the real properties of actuating media. A list of the elements the most frequently used for the calculated analysis of heat balance diagrams has been given. The equation systems that are used for the calculation of the elements of heat balance diagrams using the Thermal Scheme software system were also given. To demonstrate the opportunities of the suggested software system we carried out as an example the calculated analysis of the heat balance diagram used for a low-temperature separation of the natural gas using the turboexpander unit. The calculated analysis data on the estimation of material and power balances and thermodymanic indices of diagram elements were given for the diagram in question As a result using no manual selection we obtained the heat exchanger output temperature for the direct flow and the turbine output pressure when executing the power balance between the turbine and the compressor of turboexpander unit. It allowed us to curtail the time required for the calculated analysis. The given information demonstrates the advantages of the Thermal Scheme software system.

Посилання

Kalashnikov O. V., Ivanov Yu. V., Budnyak S. V. (2000), "VoprosyadekvatnostiteplofizicheskojbazyprogrammnyhsistemHYSYS, PRO-2 i GAZKONDNEFT [The questions of the adequacyofthethermophysicalbasis ofsoftwaresystems HYSYS, PRO-2 and GAZKONDNEFT]", Ekotekhnologii iresursosberezhenie,No. 1,pp.31–35.

Kalashnikov O. V., Ivanov Yu. V., Budnyak S. V. (1995), "Inzhenernye raschetnye modeli tekhnologicheskih sred neftyanyhigazovyh promyslov 1 Fazovye ravnovesiya uglevodorodov vo-dy metanola i glikolej[Engineeringdesignmodelsoftechnologicalenvironments of oil and gas fields. 1. Phase equilibriums of hydrocarbons,water,methanolandglycols]", Ekologiiiresursosberezhenie. No. 3, pp. 25–29.

What is GIBBS. Official site GIBBS modeling in the gas industry [2003-2018]. http://www.gibbsim.ru/node/10. – 01.02.2018.

Optimize Hydrocarbon Processes with Aspen HYSYS Official site Aspentech [2005-2018].https://www.aspentech.com/products/aspen-hysys.aspx. – 21.09.2015.

Lyhvar N. V. (2003), "Gibkie matematicheskie modeli energoustanovok dlya optimizatsii rezhimov TETS [Flexiblemathematicalmodels to optimize power plants CHP mode]", Improving turbines by methods of mathematical andphysicalmodeling:acollectionofscientific papers., Vol. 2, pp. 413–419, A.N. Podgorny Institute For MechanicalEngineeringProblems NASofUkraine, Kharkov.

Lyhvar N. V., Govoruschenko Yu. N., Yakovlev V. A. (2003), "Modelirovanie teploenergeticheskih ustanovok sispolzovanieminteraktivnoy shemnoy grafiki [Modeling of thermal power plants with the useofinteractivegraphicscircuit]",MechanicalEngineering Problems, No. 1, pp. 30–41.

Shubenko O. L., Malyarenko V. A., Seneckij O. V., Babak N. Yu. (2014), Kogeneracionnye tekhnologii v ehnergetike naosnoveprimeneniya parovyh turbin maloj moshchnosti [Cogeneration technologies in power engineeringonthebasisofapplicationof steam turbines of low power], A.N. Podgorny Institute For MechanicalEngineeringProblemsNASofUkraine,Kharkov, 320 p. ISBN 978-966-02-7059-6.

Falovskij V. I., Horoshev A. S., Shahov V. G. (2011), "Sovremennyj podhod k modelirovaniyu fazovyhprevrashchenijuglevodorodnyh sistem s pomoshchyu uravneniya sostoyaniya Penga-Robinsona [A modernapproachtomodelingthephasetransformations of hydrocarbon systems using the Peng-Robinson equation ofstate]",Izvestiya oftheSamaraScientificCenter NAS of Russia, Vol. 13, No. 4, pp. 120–125.

Vargaftik N. B. (1972), Spravochnik po teplofizicheskim sojstvam gazov i zhidkostej [Handbook of thermophysical propertiesofgases and liquids], Nauka, Moscow, 720 p.

Vukalovich M. P., Rivkin S. L., Aleksandrov A. A. (1969), Tablicy teplofizicheskih svojstv vody i vodyanogo para [Tablesofthermophysical properties of water and steam], Publishing house of standards, Moscow, 408 p.

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Опубліковано

2018-12-27

Як цитувати

Shubenko, O. L., & Sarapin, V. P. (2018). Peculiarities of the Use of Software System Thermal Scheme to Compute Heat Balance Diagrams. Вісник Національного технічного університету «ХПІ». Серія: Енергетичнi та теплотехнiчнi процеси й устаткування, (13), 4–8. https://doi.org/10.20998/2078-774X.2018.13.01

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Енергетичні та теплотехнічні процеси й устаткування