DETERMINATION OF LOSSES' SIZE OWING TO RADIATION FROM PRODUCTS OF COMBUSTION IN THE NARROW CHANNEL
Abstract and keywords
Abstract:
The article presents a method of explosion protection of drying installations of dispersed materials, which consists in using equipment capable of withstanding the full explosion pressure of a combustible mixture. It discloses a method for reducing the maximum pressure of an explosion by reducing the size of drying units is considered. The process of extinguishing the flame in narrow channels. The article considers in detail the conditions for the exchange of radiation energy between bodies and the estimation of heat loss by radiative flame exchange in a closed volume. It also obtains an expression for determining the pressure of an explosion in a closed volume with allowance for heat losses

Keywords:
explosion protection of a drying apparatus, disperse materials, explosion pressure, thermal losses
Text
Text (RU) (PDF): Read Download
References

1. Basrnecht W. Gas-und staubexplosionen in guchlossenen Bahaltern-Maschinenmasrt//1976, v.82, N 118, p.283-285.

2. Sechin A.I., Shatalov A.A., K voprosu o predelah rasprostraneniya plameni po davleniyu v gazo-vozdushnyh sistemah. -Izvestiya Tomskogo politehnicheskogo universiteta. 2005. T. 308. No1. EDN: https://elibrary.ru/HPMWVH

3. Zel'dovich Ya.B. Teoriya predela rasprostraneniya tihogo plameni, ZhETF, 11, No 1, 159, 1948.

4. Kotov I.Yu., Povyshenie ognestoykosti kassetnyh ognepregraditeley putem ispol'zovaniya plamegasyaschih elementov s teploobmennym blokom. dissertacii po VAK RF 05.26.03, 2011, Sankt-Peterburg. EDN: https://elibrary.ru/QFSWFD

5. Kozlov Ya.V.(1), Korzhavin A.A.(2), Senachin P.K., Gorenie v sosude, chastichno zapolnennom poristoy sredoy. UDK 536.46 1. Institut himicheskoy kinetiki i goreniya SO RAN, Rossiya, Novosibirsk., 2. Altayskiy gosudarstvennyy tehnicheskiy universitet im. I.I.Polzunova, Rossiya, Barnaul. 2015. EDN: https://elibrary.ru/WJQOAX

6. Hottel H.C. l. a. Trans Am. Just. Chem. End. 1935, v. 31, p. 517.

7. Hottel H.C. l. a. Trans Am. Just. Chem. End. 1942, v. 38, p. 531.

8. Hottel H.C. l. a. Trans Am. Just. Chem. End. 1935, v. 57, p. 463.

9. Hottel H.C. l. a. Trans Am. Just. Chem. End. 1941, v. 63, p. 297.

10. Boldyrev O.I.(1), Goryunov I.M. (2), Vliyanie termicheskoy dissociacii produktov sgoraniya uglevodorodnogo topliva na parametry rabochego processa perspektivnyh gazoturbinnyh dvigateley. Stat'ya. Sovremennye problemy nauki i obrazovaniya. -2012. -No 1.

11. Emel'yanova Yu. V., Morozova M. V., Buyanova E. S. Spektroskopicheskie metody analiza v analiticheskoy himii. Izd. Ministerstvo obrazovaniya i nauki Rossiyskoy Federacii Ural'skiy Federal'nyy universitet imeni pervogo prezidenta Rossii B. N. El'cina. 2017. EDN: https://elibrary.ru/ZVEKXL

12. Geydon A.G., Vol'fgard H.G. Plamya, ego struktura, izluchenie i temperatura. M., Metallurgizdat, 1959. Data postupleniya v EK 25.10.2012.

13. Alekseeva V.G., Mandel'shtam S.L. Zhurnal eksperimental'noy i teoreticheskoy fiziki. t. 17, 1947, s. 759.

14. Rozlovskiy A.I. Hasanov B.G., Gimatdinov R.H. DAN SSSR, 1971, t. 198, 1135.

15. Rozlovskiy A.I.,Hasanov B.G., Gimatdinov R.H. Izvestiya AN SSSR, seriya himiya, 1972, No5, s.1011.

16. Rozlovskiy A.I.,Hasanov B.G., Gimatdinov R.H. FGV, 1971, No4, s. 577.

17. Kolesnichenko I.E., Artem'ev V.B., Kolesnichenko E.A., Cherechukin V.G., Lyubomischenko E.I., Predotvraschenie vzryvov ugol'noy pyli i metana v gornyh vyrabotkah: Teoriya i praktika. «Gornaya promyshlennost'»;4 (134) 2017. EDN: https://elibrary.ru/ZGFMID

18. Paleev D. Yu., Vasenin I. M., Shrager E. R., Kraynov A. Yu., Kosterenko V. N., Lukashov O.Yu., Vzaimodeystvie udarnoy volny vzryva metana s oblakom poroshkovogo ingibitora, Naukoemkie tehnologii razrabotki i ispol'zovaniya mineral'nyh resursov. 2017. T. 3. S. 377-381. EDN: https://elibrary.ru/YSTQON

19. Sluschre G/Beitrade zur Erborschung des Flammenausbreitung in staubwolren. Staud-Reinhaltung der zubt, 1983, BD 25, N. 5, S180-190.

20. Fedorov A.V., Fomin V.M., Gosteev Yu.A., Dinamika i vosplamenenie gazovzvesey. Monografiya. Novosibirsk. 2006. EDN: https://elibrary.ru/QKBORV

21. Malinin V.I., Kolomin E.I., Antipin I.S. Vosplamenenie i gorenie aerovzvesi alyuminiya v reaktore vysokotemperaturnogo sinteza poroshkoobraznogo oksida alyuminiya//Fizika goreniya i vzryva. 2002. T.38, No5. S. 41-51. EDN: https://elibrary.ru/ONWDGL

22. Abiev Z. A., Rodionov V. A., Zhiharev S. Ya., Pihkonen L. V., Issledovanie vzryvchatyh svoystv kamennougol'noy pyli glubokih shaht Kuzneckogo basseyna. TulGU, Nauki o Zemle. 2018. Vyp. 1. S. 73-82. EDN: https://elibrary.ru/VZTRLV

23. Korol'chenko A.Ya., Poletaev N.L., Shevchuk A.P. Fazodinamicheskiy mehanizm razvitiya pylevogo vzryva. Materialy UP Vsesoyuznyy nauchno-tehnicheskiy konferencii "Gorenie i problemy tusheniya pozharov". Sekciya: Gorenie v nekontroliruemyh usloviyah i ocenka pozharoopasnosti veschestv. M., VNIIPO, 1981, s. 24-27.

24. Gusachenko L. K., Zarko V. E., Rychkov A. D., Ivaniya S. P., Gorash V. N., Teoriya goreniya i vzryva. NGTU, Novosibirsk 2007, 40 s. EDN: https://elibrary.ru/QNUCVH

25. Bloh A.G. Osnovy teploobmena izlucheniya. M., Gosenergoizdat, 1962.

26. Shorin S.N. Teploperedacha. M., Vysshaya shkola, 1964, s. 487.

Login or Create
* Forgot password?