期刊文献+
共找到3篇文章
< 1 >
每页显示 20 50 100
工业遗产多介质环境污染修复:现状和未来 被引量:1
1
作者 鲍思怡 冯壮波 辛冠柏 《中外建筑》 2023年第2期32-35,共4页
随着城市可持续发展进程的快速推进,工业遗产正逐渐成为城市更新和复兴的重要组成部分。由于长期工业生产活动的影响,工业遗产多介质环境(包括水、土、空气、生物)受到不同程度的污染,严重威胁人员安全和健康。因此,工业遗产环境修复是... 随着城市可持续发展进程的快速推进,工业遗产正逐渐成为城市更新和复兴的重要组成部分。由于长期工业生产活动的影响,工业遗产多介质环境(包括水、土、空气、生物)受到不同程度的污染,严重威胁人员安全和健康。因此,工业遗产环境修复是其再生利用的关键环节,亟需发展相应的规划设计方法和环境工程技术。文章通过对国内外相关文献进行综述,分析各类工业遗产多介质环境污染特性、规划设计以及修复技术的研究现状,进一步结合人工智能、环境模拟等高科技方法提出工业遗产环境修复的智能化、低碳化新思路,并通过既有工程案例进行深入分析,可为我国工业遗产环境修复和再生利用提供重要参考和依据。 展开更多
关键词 工业遗产 生态修复 多介质环境 再生利用 智能化
下载PDF
公共建筑物理环境快速预测与智能化监控的关键技术及应用 被引量:2
2
作者 曹世杰 梅江涛 +11 位作者 冯壮波 臧胜 王俊淇 沈兴东 刘书冬 张金乾 吴怀文 许炳刚 李骥 任宸 朱浩程 席畅 《建设科技》 2022年第7期72-74,101,共4页
本项目针对公共建筑物理环境智能化监控预测成本高、监测效率低、监测预测耦合难等问题,聚焦建筑“非均匀、非定常、非线性”空气环境快速预测科学问题,创建了快速预测新理论与智能化监控新方法,发展了“模型构建、技术引导、软件自主... 本项目针对公共建筑物理环境智能化监控预测成本高、监测效率低、监测预测耦合难等问题,聚焦建筑“非均匀、非定常、非线性”空气环境快速预测科学问题,创建了快速预测新理论与智能化监控新方法,发展了“模型构建、技术引导、软件自主、应用推广”的建筑环境智能化监控全链条创新模式,有效提升了城市及建筑环境质量并降低能耗。具体研究成果为:(1)建立了“非均匀降维”快速预测理论与模型,大幅降低了建筑环境仿真模拟时间与成本,提高了工程设计效率。(2)建立了“有限监测-快速预测-实时控制”智能化监控方法与体系,研发了智能监控装备和智慧运维平台,突破了建筑环境智能化监控响应严重滞后的瓶颈;(3)建立了“城市-建筑”多尺度耦合的快速仿真方法,提高了城市与建筑多尺度复杂物理环境的优化设计效率。同时将研究成果应用于绿色建筑仿真软件、城市建筑设计与智慧运维项目等系列工程,对城市和建筑的低碳绿色高质量发展起到示范和促进作用。 展开更多
关键词 公共建筑 物理环境 快速预测 智能监控 节能减排
下载PDF
Low-carbon design towards sustainable city development:Integrating glass space with natural greenery
3
作者 CAO Shi-Jie ZHANG CunKuan +3 位作者 WANG JunQi feng zhuangbo CHEN Gang HAGHIGHAT Fariborz 《Science China(Technological Sciences)》 SCIE EI CAS 2024年第9期2659-2674,共16页
The rapid urban development has caused serious problems such as high energy consumption and carbon emissions,especially under the context of climate change.Buildings are particularly energy-intensive,generating about ... The rapid urban development has caused serious problems such as high energy consumption and carbon emissions,especially under the context of climate change.Buildings are particularly energy-intensive,generating about one third of global energyrelated carbon emissions.Compared with active solutions(like mechanical systems),passive solutions offer the potential to balance energy consumption,thermal comfort,and ecological benefits.One potential solution is the integration of green glass space(GGS)into passive building design.GGS is a transitional building space with glass curtain walls that exhibit excellent insulation performance during winter.However,GGS is susceptible to overheating during summer,which limits its applicability.Therefore,this work proposes a strategy of integrating vertical greenery into GGS,leveraging the nature-based solution of greenery(i.e.,flourishes in summer and withers in winter)to address this seasonal challenge of GGS.The results demonstrated that the strategic application of vertical greenery can effectively mitigate the overheating in GGS and improve comprehensive benefits.By using full coverage of vertical greenery in a linear layout,the air temperature of GGS and cooling energy consumption were largely reduced by 8.02℃and 12.2%,respectively,while the carbon abatement was enhanced by up to 101.11 tons.Based on a comprehensive evaluation of energy,economy,and environmental benefits,it is recommended to use a greenery configuration with 50%coverage in a vertical linear layout for GGS.The integration of greenery into building design can mitigate adverse environmental impacts,reduce energy consumption,and contribute to the sustainable development of low-carbon cities. 展开更多
关键词 low-carbon design green glass space vertical greenery greenery configuration carbon abatement
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部