Application of Solar Energy in Design Technology to Naturally Cool and Heat the Houses
摘要
The conventional cooling and heating mechanism utilized in housing presents significant challenges, as it not only contributes to climate change but also poses a threat to severe damage of the ozone layer. To address these adverse consequences, the mathematical computation has been conducted utilizing MATLAB to modeling computationally to convert photons into the cooling energy through the application of the helium-assisted curtain wall to cool the houses naturally by the formation of photonic band gap. Furthermore, the Higgs–Boson [BR (H → γγ¯] quantum dynamics has been activated through the formation of electromagnetic field to convert cooling-form photon into heating-form photon to naturally heat the building. Interestingly, the calculative model revealed that generation of cooling from photon and then conversion it into heating form is quite doable into the curtain wall to cool and heat the building naturally. Indeed, this natural mechanism of cooling and heating technology would be an innovative field of science to control the photonic thermodynamics to form it into cooling-form photon (HcP¯) and then be converted into the heating-form photon (HtP¯) to address the global energy, environment, and ozone layer crisis dramatically.