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THERMAL MODELLING SYSTEM FOR GREEN ENERGY APPLICATION OF EXTERIOR WALL UNDER SMART HOME BUILDING

ABSTRACT
In order to better solve the problems of heating and environment, the author proposes a new Generation 5 heating technology wall green energy application ther­mal energy system, its main feature is a coating type carbon fiber, which heats up by connecting the electrode, so that the indoor temperature can be kept comfortable. The stability and accuracy of the heating thermal energy system are demonstrated through specific experiments. The experiment shows that the system can maintain the stability of indoor heat energy and keep the temperature in the wall between 20-25 ºC. Conclusion is that the thermal energy modelling system of the green energy application of the exterior wall under the smart home building effec­tively solves the heating and environmental problems.
KEYWORDS
PAPER SUBMITTED: 2022-06-28
PAPER REVISED: 2022-08-24
PAPER ACCEPTED: 2022-08-31
PUBLISHED ONLINE: 2023-03-25
DOI REFERENCE: https://doi.org/10.2298/TSCI2302041G
CITATION EXPORT: view in browser or download as text file
THERMAL SCIENCE YEAR 2023, VOLUME 27, ISSUE Issue 2, PAGES [1041 - 1048]
REFERENCES
  1. Zhang, G., et al., Dynamic Performance and Energy Efficiency of Reflective and Insulative Composite Coating on Building Exterior Wall, Building Simulation, 34 (2022), 6, pp. 1-15
  2. Zhang, L., Analysis of Energy Saving Effect of Green Building Exterior Wall Structure Based on Ansys Simulation Analysis, Environmental Technology and Innovation, 8 (2021), 3, 101673
  3. Zhang, S., et al., Systematic Comparisons of Exit Air Temperature and Wall Temperature for Modelling Non-Uniform Thermal Environment of Stratum Ventilation, Building and Environment, 149 (2019), Feb., pp. 120-133
  4. Wang, X., Application of Thermal Insulation Integration Technology in Fabricated Building Construction, Building Construction, 39 (2019), 08, pp. 202-209
  5. Huang, Z., et al., Construction Technology of Exterior Wall Thermal Insulation and Decoration Integrated Panels for High-Rise Residential Buildings, Building Construction, 39 (2019), 8, pp. 1117-1128
  6. Lu, S., et al., Quantitative Analysis and Multi-Index Evaluation of the Green Building Envelope Performance in the Cold Area of China, Sustainability, 32 (2020), 8, pp. 1139-1143
  7. Camboim, M. M., et al., An Online Remote Verification System of Thermal Sources for Energy Harvesting Application, IEEE Transactions on Instrumentation and Measurement, 48 (2020), 30, pp. 468-472
  8. Wu, H., et al., Engineering a Superinsulating Wall with a Beneficial Thermal Non-Uniformity Factor to Improve Building Energy Efficiency, Energy and buildings, 5 (2022), 12, 256
  9. Mansur, F. Z., et al., Thermal Performance of a Fixed Late Air‐to IR Energy Recovery System for Building Application in Hot and Humid Environment, International Journal of Energy Research, 5 (2021), 3, pp. 10-27
  10. Zarzycki, K., Practical Digital Twins Application High Energy Systems: Thermal Protection for Multi-Detector, Electronics, 43 (2022), 9, 11
  11. Dhahri, M., et al., Thermal Performance Modelling of Modified Absorber Wall of Solar Chimney-Shaped Channels System for Building Ventilation, Journal of Thermal Analysis and Calorimetry, 12 (2020), 7, pp. 16-23
  12. Hou, H., et al., Cyclic Tests of Steel Tee Energy Absorbers for Precast Exterior Wall Panels in Steel Building Frames, Engineering Structures, 242 (2021), 4, 112561
  13. Ksa, B., et al., Modelling and Validation of a DC/DC Power Converter for Building Energy Simulations: Application BIPV Systems, Applied Energy, 240 (2019), 5, pp. 646-665
  14. Luo, W., Analysis of Strengthening the Application of External Wall Insulation Materials in Green Building Energy Saving Project, Insight - Material Science, 3 (2020), 2, 32
  15. Zhao, T., et al., Bim-Based Analysis of Energy Efficiency Design of Building Thermal System and HVAC System Based on gb50189-2015 in China, International Journal of Low-Carbon Technologies, 9 (2021), 4, 4
  16. Zhang, T., et al., Energy Performance of a Building-Integrated Photovoltaic/Thermal System for Rural Residential Buildings in Cold Regions of China, Springer, Singapore, 2020, Vol. 86, No. 4, pp. 19-25
  17. Li, Y., Application of Energy-Saving Structural Design under Numerical Simulation in Solar Heating Buildings, Thermal Science, 24 (2020), 5B, pp. 3385-3393
  18. Yang, J., et al., Numerical and Experimental Study on the Thermal Performance of Aerogel Insulating Panels for Building Energy Efficiency, Renewable Energy, 23 (2019), 8, 138
  19. Li, P., et al.,Construction Technology of Fully Cast-in-Situ Exterior Wall under Aluminum Mould System of High-Rise Buildings, Building Technology Development, 67 (2019), 3, 24
  20. Tian, Y. A., et al., Model Validation and Application of the Coupled System of Pipe-Encapsulated PCM Wall and Nocturnal Sky Radiator, Applied Thermal Engineering, 90 (2021), 4, pp. 23-27
  21. Kong, X., et al., Experimental Study on a Novel Hybrid System of Active Composite PCM Wall and Solar Thermal System for Clean Heating Supply in Winter, Solar Energy, 195 (2020), 5, pp. 259-270
  22. Liu, X., et al., Production Technology of Thermal Insulation Integrated Superimposed Exterior Wall Based on Prefabricated Building, China Building Waterproofing, 43 (2019), 23, pp. 1299-1311

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