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Advance building energy efficiency through spectrally selective envelope materials
Materials that selectively absorb, reflect, or transmit solar radiation by wavelength offer significant potential for reducing building energy consumption. Spectral Selectivity in Building Envelope Materials: Principles and Applications provides a rigorous treatment of these materials, connecting fundamental building science and engineering principles with real-world implementation across diverse climate zones and building types.
Detailed case studies demonstrate how spectrally selective paints, coatings, and glazing systems manage heat and light transfer across building envelopes, reducing cooling loads in summer and heating demands in winter. Dedicated sections address integration with renewable energy systems, including photovoltaic and radiative cooling applications. Future research directions identify emerging opportunities for next-generation material development.
Readers will also find:
Designed for civil engineers, construction practitioners, and building science researchers, this reference delivers the technical depth required to evaluate, specify, and implement spectrally selective materials. Advanced students in architectural engineering and building technology will also find it a rigorous resource for coursework and thesis research.
Advance building energy efficiency through spectrally selective envelope materials
Materials that selectively absorb, reflect, or transmit solar radiation by wavelength offer significant potential for reducing building energy consumption. Spectral Selectivity in Building Envelope Materials: Principles and Applications provides a rigorous treatment of these materials, connecting fundamental building science and engineering principles with real-world implementation across diverse climate zones and building types.
Detailed case studies demonstrate how spectrally selective paints, coatings, and glazing systems manage heat and light transfer across building envelopes, reducing cooling loads in summer and heating demands in winter. Dedicated sections address integration with renewable energy systems, including photovoltaic and radiative cooling applications. Future research directions identify emerging opportunities for next-generation material development.
Readers will also find:
Designed for civil engineers, construction practitioners, and building science researchers, this reference delivers the technical depth required to evaluate, specify, and implement spectrally selective materials. Advanced students in architectural engineering and building technology will also find it a rigorous resource for coursework and thesis research.
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