下一代建筑围护结构:智能材料、能源效率和环境影响

Salim Barbhuiya , Bibhuti Bhusan Das , Dibyendu Adak , Aditya Singh Rajput
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引用次数: 0

摘要

建筑围护结构在提高现代建筑的能源效率、可持续性和整体性能方面发挥着至关重要的作用。本文全面回顾了智能和可持续建筑围护结构的前沿材料和技术。它强调了从传统材料到先进材料的过渡,重点是智能材料的集成,如热致变色和电致变色系统,形状记忆合金和自修复材料。这些创新使动态响应环境变化,提高舒适度和能源效率。此外,该报告还探讨了可持续材料,包括有助于循环经济的天然、可生物降解的绝缘材料、可回收部件和低碳替代品。讨论了先进的绝热技术,如真空绝热板、相变材料、气凝胶等,强调了它们优越的热工性能。该研究还探讨了创新的立面解决方案,如自适应立面、光伏集成系统和将可持续性与能源生产相结合的混合设计。讨论了采用这些材料的主要挑战,如成本、法规遵从性和市场准备程度,以及环境效益,包括节约能源和减少碳足迹。论文最后指出了智能和可持续建筑围护结构未来研究和发展的机会,强调了它们在推进节能和气候响应型建筑方面的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Next-generation building envelopes: Smart materials, energy efficiency and environmental impact
Building envelopes play a crucial role in enhancing the energy efficiency, sustainability, and overall performance of modern buildings. This paper provides a comprehensive review of cutting-edge materials and technologies for smart and sustainable building envelopes. It highlights the transition from traditional to advanced materials, focusing on the integration of smart materials such as thermochromic and electrochromic systems, shape memory alloys, and self-healing materials. These innovations enable dynamic responses to environmental changes, enhancing comfort and energy efficiency. Additionally, the review explores sustainable materials, including natural, biodegradable insulation, recycled components, and low-carbon alternatives that contribute to the circular economy. Advanced insulation technologies such as vacuum insulation panels, phase change materials, and aerogels are discussed, emphasizing their superior thermal performance. The study also examines innovative facade solutions, such as adaptive facades, photovoltaic-integrated systems, and hybrid designs that merge sustainability with energy generation. Key challenges in adopting these materials—such as cost, regulatory compliance, and market readiness—are discussed, along with the environmental benefits, including energy savings and reduced carbon footprints. The paper concludes by identifying opportunities for future research and development in smart and sustainable building envelopes, highlighting their potential in advancing energy-efficient, climate-responsive architecture.
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