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Environmental life cycle assessment of a commercial office building in Thailand

机译:泰国某商业办公楼的环境生命周期评估

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global wanning potential of 211.51 Tg for the economy of Thailand. Conclusions Operation phase has the highest energy and environmental impacts, followed by the manufacturing phase. At the operation phase, significant reductions in the energy consumption and environmental impacts can be achieved through the implementation of simple no-cost energy conservation as well as energy efficiency strategies. No-cost energy conservation policies, which minimize energy consumption in commercial buildings, should be encouraged in combination with already existing energy efficiency measures of the government. Recommendations and perspectives In the long run, the environmental impacts of buildings will need to be addressed. Incorporation of environmental life cycle assessment into the current building code is proposed. It is difficult to conduct a full and rigorous life cycle assessment of an office building. A building consists of many materials and components. This study made an effort to access reliable data on all the life cycle stages considered. Nevertheless, there were a number of assumptions made in the study due to the unavailability of adequate data. In order for life cycle modeling to fulfill its potential, there is a need for detailed data on specific building systems and components in Thailand. This will enable designers to construct and customize LCAs during the design phase to enable the evaluation of performance and material tradeoffs across life cycles without the excessive burden of compiling an inventory. Further studies with more detailed, reliable, and Thailand-specific inventories for building materials are recommended.
机译:泰国经济的全球下降潜力为211.51 Tg。结论操作阶段对能源和环境的影响最大,其次是制造阶段。在运营阶段,可以通过实施简单的免费节能措施以及能源效率策略来大幅减少能源消耗和环境影响。应结合政府已经采取的节能措施,鼓励采用无成本的节能政策,以最大程度地减少商业建筑的能耗。建议和观点从长远来看,将需要解决建筑物对环境的影响。建议将环境生命周期评估纳入当前的建筑规范中。很难对办公大楼进行全面而严格的生命周期评估。建筑物由许多材料和组件组成。这项研究致力于获取有关所有生命周期阶段的可靠数据。然而,由于没有足够的数据,该研究中有许多假设。为了使生命周期建模发挥其潜力,需要有关泰国特定建筑系统和组件的详细数据。这将使设计人员能够在设计阶段构建和定制LCA,从而能够评估整个生命周期内的性能和材料折衷,而不会增加编制清单的负担。建议对建筑材料进行更详细,可靠和针对泰国的清单的进一步研究。

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