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An active pipe-embedded building envelope for utilizing low-grade energy sources 被引量:8
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作者 谢军龙 朱求源 徐新华 《Journal of Central South University》 SCIE EI CAS 2012年第6期1663-1667,共5页
An active pipe-embedded building envelope, which is an external wall or roof with pipes embedded inside, was presented. This structure may utilize the circulating water in the pipe to transfer heat or coolth inside di... An active pipe-embedded building envelope, which is an external wall or roof with pipes embedded inside, was presented. This structure may utilize the circulating water in the pipe to transfer heat or coolth inside directly. This kind of structure is named "active pipe-embedded building envelope" due to dealing with the thermal energy actively inside the structure mass by circulating water. This structure not only deals with thermal energy before the external disturbance becomes cooling/heating load by using the circulating water, but also may use low-grade energy sources such as evaporative cooling, solar energy, and geothermal energy. In the meantime, this structure can also improve the indoor thermal comfort by tempering the internal wall surface temperature variation due to the thermal removal in the mass. This work further presents the thermal performance of this structure under a typical hot summer weather condition by comparing it with that of the conventional external wall/roof with numerical simulation. The results show that this pipe-embedded structure may reduce the external heat transfer significantly and reduce the internal wall surface temperature for improving thermal comfort. This work also presents the effects of the water temperature and the pipe spacing on the heat transfer of this structure. The internal surface heat transfer may reduce by about 2.6 W/mE when the water temperature reduces by 1℃ as far as a brick wall with pipes embedded inside is concerned. When the pipe spacing reduces by 50 mm, the internal wall surface heat flux can also reduce by about 2.3 W/m2. 展开更多
关键词 active pipe-embedded building envelope thermal performance thermal comfort simulation analysis low-grade energy source pipe spacing
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Energy and Buildings
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《建筑节能(中英文)》 2025年第12期20-20,共1页
https://www.sciencedirect.com/journal/energy-and-buildings/vol/348/suppl/C Volume 348,1 December 2025[OA](1)Active prefabricated façade with building-integrated photovoltaic(APF-BIPV)technologies for high energy ... https://www.sciencedirect.com/journal/energy-and-buildings/vol/348/suppl/C Volume 348,1 December 2025[OA](1)Active prefabricated façade with building-integrated photovoltaic(APF-BIPV)technologies for high energy efficient building renovation:a systematic review of recent research advancements by Graziano Salvalai,Feiyu Zhao,Article 116440 Abstract:Active Prefabricated Fa ade with building-integrated photovoltaic(APF-BIPV)technologies used in the prefabricated building envelope component offer a promising approach to energy-efficient building renovation,combining renewable energy generation with modular construction advantages.This study systematically reviews APF-BIPV technologies,assessing their technological development,performance optimization,economic feasibility,and policy implications.Based on PRISMA methodology,the review includes not only peer-reviewed publications from Scopus and Web of Science but also analyzes research outputs from European-funded projects,highlighting the significant technological advancements that have transformed prefabricated fa ade components from basic cladding systems into highly integrated,multifunctional building elements,integrating PV technology for renewable energy production. 展开更多
关键词 prefabricated fa ade active prefabricated facade technological development economic feasibility prefabricated building envelope component building integrated photovoltaic APF BIPV energy efficient building renovation
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Dynamic thermal performance and energy-saving potential analysis of a modular pipe-embedded building envelope integrated with thermal diffusive materials 被引量:3
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作者 Yang Yang Sarula Chen 《Building Simulation》 SCIE EI CSCD 2023年第12期2285-2305,共21页
In the context of racing to carbon neutrality,the pipe-embedded building system makes the opaque envelopes gradually regarded as the multi-functional element,which also provides an opportunity for thermal insulation s... In the context of racing to carbon neutrality,the pipe-embedded building system makes the opaque envelopes gradually regarded as the multi-functional element,which also provides an opportunity for thermal insulation solutions to transform from high to zero-carbon attributes.Based on the re-examination of the heat transfer process of conventional pipe-embedded radiant(CPR)walls,the modular pipe-embedded radiant(MPR)wall integrated with thermal diffusive materials is proposed to enhance the heat transfer capacity of CPR walls in the direction parallel to the wall surface,thereby forming a more stable and continuous invisible thermal barrier layer inside the opaque envelopes.A comprehensive thermal and energy-saving analysis study regarding the influence mechanism of several key factors of MPR walls,e.g.,the inclination angle of the filler cavity(θ-value),geometry size of the filler cavity(a:b-value)and thermal conductivity of the filler(λf-value),is conducted based on a validated numerical model.Results show that the dynamic thermal behaviors of MPR walls can be significantly improved due to that the radial thermal resistance in the filler cavity of MPR walls can be reduced by 50%,while the maximum extra exterior surface heat loss caused by the optimization measures is only 2.1%.Besides,a better technical effect can be achieved by setting the major axis of the filler cavity towards the room side,where the interior surface heat load/total injected heat first decreases/increases and then increases/decreases with the increase of theθ-value.In particular,the MPR wall withθL=60°can obtain the best performance when other conditions remain the same.Moreover,the performance indicators of MPR walls can be further improved with the increase of the cavity size(a:b-value),while showing a trend of rapid improvement in theλf-value range of 2–5λC and slow improvement increase in theλf-value range of 5–12λC.In addition,the improvement effect brought by optimizing theθ-value is more obvious as the a:b-value orλf-value increases. 展开更多
关键词 building energy efficiency pipe-embedded building envelope thermal diffusive material thermal characteristics numerical simulation
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内嵌管式围护结构的频域热特性 被引量:11
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作者 朱求源 徐新华 《华中科技大学学报(自然科学版)》 EI CAS CSCD 北大核心 2013年第11期64-67,共4页
建立了内嵌管式围护结构的频域有限差分模型(FDFD模型),采用CFD的方法计算了该结构在时域内的传热特性并验证了FDFD模型的准确性.结果表明:两种模型都可以很好地分析该结构的动态传热特性,但FDFD模型的计算时间较CFD模型的计算时间少得... 建立了内嵌管式围护结构的频域有限差分模型(FDFD模型),采用CFD的方法计算了该结构在时域内的传热特性并验证了FDFD模型的准确性.结果表明:两种模型都可以很好地分析该结构的动态传热特性,但FDFD模型的计算时间较CFD模型的计算时间少得多.FDFD模型比CFD模型更直观,能直接反映频域热特性.进一步采用FDFD模型分析了该围护结构在不同频率外扰作用下的频域热特性. 展开更多
关键词 建筑节能 内嵌管式围护结构 频域热特性 频域有限差分法 频率外扰
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近零碳公共建筑主被动节能技术研究与综合应用 被引量:1
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作者 王永生 翟雷 +3 位作者 王冬雁 张法荣 罗伟 夏康 《建筑施工》 2024年第12期1955-1959,共5页
某社区市集公共建筑以近零碳排放为建设目标,常规设计方法无法实现。为此,采用了主被动节能技术:通过钢木混合结构体系、自适应调节中庭及高性能围护结构,减少了碳排放与能源消耗需求,提升被动节能效果。结合光储直柔技术、循环零废技术... 某社区市集公共建筑以近零碳排放为建设目标,常规设计方法无法实现。为此,采用了主被动节能技术:通过钢木混合结构体系、自适应调节中庭及高性能围护结构,减少了碳排放与能源消耗需求,提升被动节能效果。结合光储直柔技术、循环零废技术,进一步抵消建筑耗能,促进主动节能。经测算,该公共建筑单位面积的一次能源消耗量比参考建筑降低65.65%,达到了近零碳排放指标要求,其使用的主被动节能技术值得推广与应用。 展开更多
关键词 近零碳 主被动节能 钢木混合结构 自适应调节中庭 高性能围护结构 光储直柔技术 循环零废技术
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热激活建筑系统研究进展 被引量:1
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作者 陈萨如拉 常甜馨 +2 位作者 杨洋 张智 郭安妮 《科技导报》 CAS CSCD 北大核心 2022年第22期55-65,共11页
基于控制围护结构传热温差而提出的热激活建筑系统(TABS),可利用注入低品位能源形成热屏障的方式降低建筑负荷,是实现建筑能碳双控目标的重要措施。提出了TABS分类与评价方法,从热工性能、集成设计、可持续性和应用潜力等角度对空气基... 基于控制围护结构传热温差而提出的热激活建筑系统(TABS),可利用注入低品位能源形成热屏障的方式降低建筑负荷,是实现建筑能碳双控目标的重要措施。提出了TABS分类与评价方法,从热工性能、集成设计、可持续性和应用潜力等角度对空气基、液体基和固体基TABS进行了梳理与对比分析。现有研究表明:集成空气基TABS的围护结构当量传热系数小于0.3 W/(m^(2)·K),渗透型还具备热回收与空气净化的双重效果;液体基TABS在一体化集成和热激活效能方面更具优势,围护结构当量传热系数可降至-3.6 W/(m^(2)·K);固体基TABS则具有无循环工质、无运动部件和无噪音等优点,围护结构当量传热系数可降至-3.0W/(m^(2)·K),但未来需要解决其立面集成和热电模块商业化等问题。 展开更多
关键词 热激活建筑系统 围护结构 分类方法 性能评价 传热系数
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寒冷地区“乡村客厅”生态优化设计方法研究
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作者 张智林 《低温建筑技术》 2020年第5期11-16,共6页
为了研究生态设计在小型公共建筑设计中的作用,以大连市乡村某社区活动中心为探究对象,从建筑所处的地域特点出发,以建筑热工、通风、给排水以及光热利用等方面为切入点进行了研究。首先对建筑外围护结构进行了热工计算,发现冬季幕墙部... 为了研究生态设计在小型公共建筑设计中的作用,以大连市乡村某社区活动中心为探究对象,从建筑所处的地域特点出发,以建筑热工、通风、给排水以及光热利用等方面为切入点进行了研究。首先对建筑外围护结构进行了热工计算,发现冬季幕墙部位耗热量较大,采取了增设附加阳光间和双层玻璃幕墙的方式进行优化;对建筑给排水进行计算,发现建筑用水量较少且靠近农田,利用雨水收集和灰水处理等技术对进行了综合优化;最后探讨了通过合理调整建筑布局对建筑自然通风的合理利用。研究对乡村地区低资源消耗生态型活动中心的建造起到参考作用。 展开更多
关键词 乡村活动中心 生态建筑 围护结构 给排水
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利用可再生能源的中国特色零能耗建筑——华中科技大学某教学楼改造工程 被引量:8
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作者 余庄 《建筑学报》 北大核心 2010年第S1期124-126,共3页
介绍华中科技大学建筑与城市规划学院教室扩建和既有建筑改造工程的节能设计措施,采用了主动式动态空心墙、气候适应性窗户、地下冷热源、地板通风系统等,以实现节能、节地、节水、节材、保护环境和减少污染的目标。
关键词 可再生能源利用 零能耗建筑 主动式动态空气墙 气候适应性窗户 地板送风系统
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