Enhancing energetic and economic efficiency of heating coal mines by infrared heaters
- Details
- Category: Content №2 2021
- Last Updated on 29 April 2021
- Published on 30 November -0001
- Hits: 3659
Authors:
O.Voznyak, orcid.org/0000-0002-6431-088X, Lviv Polytechnic National University, Lviv, Ukraine, e-mail: This email address is being protected from spambots. You need JavaScript enabled to view it.">This email address is being protected from spambots. You need JavaScript enabled to view it.
N.Spodyniuk, orcid.org/0000-0002-2865-9320, National University of Life and Environmental Sciences of Ukraine, Kyiv, Ukraine, e-mail: This email address is being protected from spambots. You need JavaScript enabled to view it.
O.Savchenko, orcid.org/0000-0003-3767-380X, Lviv Polytechnic National University, Lviv, Ukraine, e-mail: This email address is being protected from spambots. You need JavaScript enabled to view it.
I.Sukholova, orcid.org/0000-0002-3319-2278, Lviv Polytechnic National University, Lviv, Ukraine, e-mail: This email address is being protected from spambots. You need JavaScript enabled to view it.
M.Kasynets, orcid.org/0000-0002-7686-7482, Lviv Polytechnic National University, Lviv, Ukraine, e-mail: This email address is being protected from spambots. You need JavaScript enabled to view it.
Naukovyi Visnyk Natsionalnoho Hirnychoho Universytetu. 2021, (2): 104 - 109
https://doi.org/10.33271/nvngu/2021-2/104
Abstract:
Purpose. To increase the energy and economic efficiency of heating coal mines with infrared heaters through energy saving measures, taking into account the dynamics of the discount rate. To achieve this goal, the task was to conduct an energy audit of the heating system of the mine during its reconstruction according to an improved method, taking into account the dynamics of the discount rate and measures that are not feasible at the same time.
Methodology. When using infrared heating systems, local heating of the working area is provided. As a result, the necessary temperature conditions in the mines are maintained and there is a possibility of creating a local microclimate. A multifactorial experiment was performed and the research results were graphically and analytically described. Furthermore, the method of energy audit, taking into account the effect of complex interaction of factors and the dynamics of the degree of discount, is applied.
Findings. According to the results of the experiment, a nomogram of the temperature regime of the irradiation area with an infrared heater was constructed, which was approximated by the analytical dependence. The optimal profit from the introduction of energy-saving technologies during operation is EUR 379.2 under the following conditions: replacement of the heating system from stationary to variable with automation; installation of a different number of infrared heaters NL-12R with power Q 1200 W each; application of the effect of complex interaction of factors.
Originality. The conducted energy audit of the radiant heating system with the use of infrared heaters during the underground reconstruction showed that non-stationary heating is efficient because it saves energy and has the lowest payback period.
Practical value. The expediency of using infrared heaters in variable mode in both energy and technical and economic aspects has been proved. These measures will provide comfortable conditions in the mine and have a significant economic effect.
Keywords: heating system, energy saving, energy audit, thermal renovation, infrared heaters, variable mode
References.
1. Savchenko, O., Voznyak, O., Myroniuk, K., & Dovbush, O. (2020). Thermal Renewal of Industrial Buildings Gas Supply System. Lecture Notes in Civil Engineering, 2021, 100 LNCE, 385-392. https://doi.org/10.1007/978-3-030-57340-9_47.
2. Lis, A., & Spodyniuk, N. (2019). The quality of the microclimate in educational buildings subjected to thermal modernization. 11th Conference on Interdisciplinary Problems in Environmental Protection and Engineering EKO-DOK, E3S Web of Conferences 100, 00048, 8. https://doi.org/10.1051/e3sconf/201910000048.
3. Kapalo, P., Vilcekov, S., Domnita, F., Bacotiu, C., & Voznyak, O. (2017). Determining the Ventilation Rate inside an Apartment House on the Basis of Measured Carbon Dioxide Concentrations Case Study. The 10th International Conference on Environmental Engineering, Selected Papers, (pp. 30-35). Vilnius, Lithuania, 2017. https://doi.org/10.3846/enviro.2017.262.
4. Spodyniuk, N., & Lis, A. (2020). Research of temperature regime in the module for poultry growing. Lecture Notes in Civil Engineering, LNCE 100, 451-458. https://doi.org/10.1007/978-3-030-57340-9_55.
5. Trokhaniak, V.I., Rogovskii, I.L., Titova, L.L., Luzan,P.H., Popyk, P.S., & Bannyi, O.O. (2020). Computational fluid dynamics investigation of heat-exchangers for various air-cooling systems in poultry houses. Bulletin of the University of Karaganda-physics, 1(97), 125-134. https://doi.org/10.31489/2020PH1/125-134.
6. Gokul, M., Ponraj, S., Rohan, S., Venkatesh, M., Prince Winston, D., & Praveen Kumar, B. (2017). Energy Audit for Industries and Institution. International Journal of Advanced Research in Management, Architecture, Technology and Engineering (IJARMATE), 3(2), 199-205. ISSN: 2454-9762.
7. Aedah, M.J. Mahdi (2018). Energy Audit a step to effective Energy Management. International Journal of Trend in Research and Development, 5(2), 521525. ISSN: 23949333.
8. Sayeng, A.M., Danielewicz, J., Nannou, T., Miniewicz,M., Jadwiszczak, P., Piekarska, K., & Jouhara, H. (2016). Trends of European research and development in district heating technologies, Renew. Renewable and Sustainable Energy Reviews, 68, 1183-1192. https://doi.org/10.1016/j.rser.2016.02.023.
9. Dudkiewicz, E., & Szaaski, P. (2020). Overview of exhaust gas heat recovery technologies for radiant heating systems in large halls. Thermal Science and Engineering Progress, 18, 10552. https://doi.org/10.1016/j.tsep.2020.100522.
10. Kowalski, P., Szaaski, P., Kamierczak, B., Kutyowska,M., Piekarska, K., & Zdybek, A. (2017). Computational and the real energy performance of a single-family residential building in Poland an attempt to compare: a case study. E3S Web Conferences, 17, 00045. https://doi.org/10.1051/e3sconf/20171700045.
11. Sarbu, I., & Tokar, A. (2018). Numerical modeling of high-temperature radiant panel heating system for an industrial hall. International journal of advanced and applied sciences, 5(5), 1-9. https://doi.org/10.21833/ijaas.2018.05.001.
12. Maznoy, A., Kirdyashkin, A., Pichugin, N., Zambalov, S., & Petrov, D. (2020). Development of a new infrared heater based on an annular cylindrical radiant burner for direct heating applications. Energy, 204, 117965. https://doi.org/10.1016/j.energy.2020.117965.
13. Maznoy, A., Minaev, S., Markova, A., Pichugin, N., & Yakovlev, E. (2018). A study on the effects of porous structure on the environmental and radiative characteristics of cylindrical Ni-Al burners. Energy, 160. https://doi.org/10.1016/j.energy.2018.07.017.
14. Huang, F., Zheng, J., Baleynaud, J.M., & Lu, J. (2017). Heat recovery potentials and technologies in industrial zones. Journal of the Energy Institute, 90(6), 951-961. https://doi.org/10.1016/j.joei.2016.07.012.
15. Jouhara, H., Khordehgah, N., Almahmoud, S., Delpech,B., Chauhan, A., & Tassou, A. (2018). Waste heat recovery technologies and applications. Thermal Science and Engineering Progress, 6, 268-289. https://doi.org/10.1016/j.tsep.2018.04.017.
16. Semenov, B.A., Pashchenko, D.I., & Mitenev, S.A. (2018). Mathematical modelling of heat transfer in a gas radiant of dark type. Journal of Physics: Conference Series, 1111, 012008. https://doi.org/10.1088/1742-6596/1111/1/012008.
17. Linhoss, J.E., Purswell, J.L., Davis, J.D., & Fan, Z. (2017). Comparing Radiant Heater performance using spatial modeling. Applied Engineering in Agriculture, 33(3), 395-405. https://doi.org/10.13031/aea.12108.
18. Amanowicz, ., & Wojtkowiak, J. (2018). Experimental investigations of thermal performance improvement of aluminum ceiling panel for heating and cooling by covering its surface with paint. E3S Web Conferences, 44, 00002. https://doi.org/10.1051/e3sconf/20184400002.
19. Ermolaev, A.N., Khaustova, O.V., & Turaev, I.A. (2018). Simulating a convectional heat transfer in buildings with radiant gas heating. MATEC Web Conferences, 194, 10-13. https://doi.org/10.1051/matecconf/201819401025.
20. Kuznetsov, G.V., Kurilenko, N.I., & Nee, A.E. (2018). Mathematical modelling of conjugate heat transfer and fluid flow inside a domain with a radiant heating system, International Journal of Thermal Sciences, 131, 27-39. https://doi.org/10.1016/j.ijthermalsci.2018.05. 010.
Newer news items:
- Modeling of the structural shift impact on economic dynamics of Ukraine's development - 29/04/2021 02:36
- Analysis of attacks in IEEE 802.11 networks at different levels of OSI model - 29/04/2021 02:36
- Principles for selecting, training and maintaining skills for safe work of personnel for mining industry enterprises - 29/04/2021 02:36
- Assessment of noise impact on coal mine workers including way to/from workplace - 29/04/2021 02:36
- Assessment of potential dangers of installations at Rhourde Nouss station within the framework of The Law 45/DG (Ouargla, Algeria) - 29/04/2021 02:36
- Assessment of the ecological risk of pollution of soil and bottom sediments in the Ukrainian Danube region - 29/04/2021 02:36
- Analysis and forecast of production and utilization of industrial waste in Ukraine - 29/04/2021 02:36
- Environmental water security policy in the EU, Ukraine and other developing countries - 29/04/2021 02:36
- Mathematical model of steel consumption minimization considering the two-stage billets cutting - 29/04/2021 02:36
- The synthesis of strategies for the efficient performance of sophisticated technological complexes based on the cognitive simulation modelling - 29/04/2021 02:36
Older news items:
- Mathematical modeling of power supply reliability at low voltage quality - 29/04/2021 02:36
- Segmentation of heat energy consumers based on data on daily power consumption - 29/04/2021 02:36
- Determination of the cutting force components while milling cylindrical surfaces with an oriented tool - 29/04/2021 02:36
- Regularities of safe control of piston compressor units of mobile compressor stations - 29/04/2021 02:36
- Control of density and velocity of emulsion explosives detonation for ore breaking - 29/04/2021 02:36
- Electric arc spraying of cermet coatings of steel 65G-Tic system - 29/04/2021 02:36
- Feasibility study of exploiting gearbox oil temperature of wind turbine for improving a heat pump water heater in cold areas - 29/04/2021 02:36
- New aspects of the methodology for assessing the complexity of the structure of technological systems of the mining and metallurgical complex - 29/04/2021 02:36
- Investigation on the process of injection of commercial grade and blended fuel in a diesel engine - 29/04/2021 02:36
- Predicting changes in the sulfur content during steam coal preparation and the level of sulfur dioxide emissions when its combustion - 29/04/2021 02:36