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A New Dynamic and Vertical Photovoltaic Integrated Building Envelope for High-Rise Glaze-Facade Buildings
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作者 Wuwei Zou Yan Wang +3 位作者 Enze Tian Jiaze Wei Jinqing Peng Jinhan Mo 《Engineering》 SCIE EI CAS CSCD 2024年第8期194-203,共10页
Substantially glazed facades are extensively used in contemporary high-rise buildings to achieve attractive architectural aesthetics.Inherent conflicts exist among architectural aesthetics,building energy consumption,... Substantially glazed facades are extensively used in contemporary high-rise buildings to achieve attractive architectural aesthetics.Inherent conflicts exist among architectural aesthetics,building energy consumption,and solar energy harvesting for glazed facades.In this study,we addressed these conflicts by introducing a new dynamic and vertical photovoltaic integrated building envelope(dvPVBE)that offers extraordinary flexibility with weather-responsive slat angles and blind positions,superior architectural aesthetics,and notable energy-saving potential.Three hierarchical control strategies were proposed for different scenarios of the dvPVBE:power generation priority(PGP),natural daylight priority(NDP),and energy-saving priority(ESP).Moreover,the PGP and ESP strategies were further analyzed in the simulation of a dvPVBE.An office room integrated with a dvPVBE was modeled using EnergyPlus.The influence of the dvPVBE in improving the building energy efficiency and corresponding optimal slat angles was investigated under the PGP and ESP control strategies.The results indicate that the application of dvPVBEs in Beijing can provide up to 131%of the annual energy demand of office rooms and significantly increase the annual net energy output by at least 226%compared with static photovoltaic(PV)blinds.The concept of this novel dvPVBE offers a viable approach by which the thermal load,daylight penetration,and energy generation can be effectively regulated. 展开更多
关键词 Weather-responsive facades building energy efficiency Dynamic photovoltaic integrated building envelopes(PVBEs) building-integrated photovoltaics(BIPVs)
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Photogrammetry and deep learning for energy production prediction and building-integrated photovoltaics decarbonization
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作者 Ilyass Abouelaziz Youssef Jouane 《Building Simulation》 SCIE EI CSCD 2024年第2期189-205,共17页
Building-Integrated photovoltaics(BIPV)have emerged as a promising sustainable energy solution,relying on accurate energy production predictions and effective decarbonization strategies for efficient deployment.This p... Building-Integrated photovoltaics(BIPV)have emerged as a promising sustainable energy solution,relying on accurate energy production predictions and effective decarbonization strategies for efficient deployment.This paper presents a novel approach that combines photogrammetry and deep learning techniques to address the problem of BIPV decarbonization.The method is called BIM-AITIZATION referring to the integration of BIM data,AI techniques,and automation principles.It integrates photogrammetric data into practical BIM parameters.In addition,it enhances the precision and reliability of PV energy prediction by using artificial intelligence strategies.The primary aim of this approach is to offer advanced,data-driven energy forecasts and BIPV decarbonization while fully automating the underlying process.To achieve this,the first step is to capture point cloud data of the building through photogrammetric acquisition.This data undergoes preprocessing to identify and remove unwanted points,followed by plan segmentation to extract the plan facade.After that,a meteorological dataset is assembled,incorporating various attributes that influence energy production,including solar irradiance parameters as well as BIM parameters.Finally,machine and deep learning techniques are used for accurate photovoltaic energy predictions and the automation of the entire process.Extensive experiments are conducted,including multiple tests aimed at assessing the performance of diverse machine learning models.The objective is to identify the most suitable model for our specific application.Furthermore,a comparative analysis is undertaken,comparing the performance of the proposed model against that of various established BIPV software tools.The outcomes reveal that the proposed approach surpasses existing software solutions in both accuracy and precision.To extend its applicability,the approach is evaluated using a building case study,demonstrating its ability to generalize effectively to new building data. 展开更多
关键词 building-integrated photovoltaic(BIPV) deep learning building information modeling photogrammetric building decarbonization
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Experiment and simulation to determine the optimum orientation of building-integrated photovoltaic on tropical building façades considering annual daylight performance and energy yield
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作者 Rizki A.Mangkuto Dhian Nur Aziz T.Tresna +4 位作者 Ikhwan M.Hermawan Justin Pradipta Nurul Jamala Beta Paramita Atthaillah 《Energy and Built Environment》 2024年第3期414-425,共12页
Building-Integrated Photovoltaic(BIPV)on vertical façades is a potential PV application in today’s buildings.The performance of BIPV on façades is significantly influenced by the façade orientation.For... Building-Integrated Photovoltaic(BIPV)on vertical façades is a potential PV application in today’s buildings.The performance of BIPV on façades is significantly influenced by the façade orientation.For tropical cities,the optimum façade orientation,in terms of maximum energy yield and daylight performance,cannot be simply determined,due to relatively symmetrical sun path throughout the day.This study therefore aims to determine the optimum orientation for BIPV on tropical building façades.To achieve the objective,experiment,modelling,and computational simulation are conducted to evaluate the BIPV energy yield and to predict the indoor daylight performance in a scale-model building with a 105Wp monocrystalline silicon PV,facing each cardinal orienta-tion in Bandung,Indonesia.The South orientation yields practically zero ASE_(1000,250),providing the best annual daylight performance,and yielding the most desirable value in four out of five daylight metrics.The greatest annual energy yield is at the North orientation,providing 179-186 kWh(95%prediction interval)per year,but with larger uncertainty compared to that at the South,due to direct sunlight occurrence.Based on three different objective functions,the South orientation is considered optimum for placing the BIPV panel on the prototype façade in the location. 展开更多
关键词 building-integrated photovoltaic ORIENTATION Daylight metric Energy yield Tropical building façade
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建筑集成光伏光热系统的发展现状
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作者 杨爱新 《区域供热》 2024年第2期29-35,共7页
建筑集成光伏光热(BIPV/T)系统将太阳能光伏(PV)、太阳能集热器与建筑立面一体化巧妙结合,实现了发电和热能的协同产出。BIPV/T系统可以显著提高太阳能效率,并同时降低建筑的冷热负荷。BIPV/T系统分为两大类,即光伏光热/空气建筑一体化(... 建筑集成光伏光热(BIPV/T)系统将太阳能光伏(PV)、太阳能集热器与建筑立面一体化巧妙结合,实现了发电和热能的协同产出。BIPV/T系统可以显著提高太阳能效率,并同时降低建筑的冷热负荷。BIPV/T系统分为两大类,即光伏光热/空气建筑一体化(BIPV/Air)和光伏光热/流体建筑一体化(BIPV/fluid)系统。对BIPV/Air系统的性能优化策略进行了总结,包括通风模式与强化传热结构。对BIPV/fluid系统中的BIPV/water和BIPV/T热泵系统进行了深入探讨,包括数学模型、性能改进和优化运行方法。寻找到一些改进策略的有效方法。该研究对于提高BIPV/T系统的能源效率和经济性具有意义。 展开更多
关键词 光热/伏 发电效率 热效率 建筑一体化
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Potential application of a novel building-integrated solar facade water heating system in a subtropical climate:A case study for school canteen
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作者 Wenjie Liu Xinwen Liu +3 位作者 Chongchao Pan Chunying Li Woonming Lau Yuanli Lyu 《Building Simulation》 SCIE EI CSCD 2023年第10期1987-2004,共18页
The design and potential application analysis of the novel solar-absorbing integrated facade module and its corresponding building-integrated solar facade water heating system are presented in this study.Compared with... The design and potential application analysis of the novel solar-absorbing integrated facade module and its corresponding building-integrated solar facade water heating system are presented in this study.Compared with the conventional building envelope,the main novities of the proposed facade module lie in its contributions towards the supplied water preheating to loads and the internal heat gain reduction.Besides,the proposed building-integrated solar facade water heating system broadens the combination modes of the solar thermal system and the building envelope.A dynamic model is introduced first for system design and performance prediction.To evaluate the energy-saving potential and feasibility of the implementation of the proposed facade module,this paper carried out a suitable case study by replacing the conventional facade module in the ongoing retrofitting project of a kitchen,part of the canteen of a graduate school.The detailed thermal performances of three system design options are compared in the typical winter and summer weeks and throughout the year,and then,with the preferred system design,the economic,energy,and environmental effects of the proposed system are evaluated.It was found that the system with a high flow rate of the circulating water is suggested.The annual electricity saved reaches 4175.3 kWh with yearly average thermal efficiency at 46.9%,and its corresponding cost payback time,energy payback time,and greenhouse gas payback time are 3.8,1.7,1.7 years,respectively.This study confirms the feasibility and long-term benefits of the proposed building-integrated solar facade water heating system in buildings. 展开更多
关键词 solar thermal utilization building-integrated solar water heating system novel prefabricated facade module life cycle assessment building retrofitting
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Adoption of wide-bandgap microcrystalline silicon oxide and dual buffers for semitransparent solar cells in building-integrated photovoltaic window system 被引量:3
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作者 Johwa Yang Hyunjin Jo +2 位作者 Soo-Won Choi Dong-Won Kang Jung-Dae Kwon 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2019年第8期1563-1569,共7页
We focused on developing penetration-type semitransparent thin-film solar cells(STSCs) using hydrogenated amorphous Si(a-Si:H) for a building-integrated photovoltaic(BIPV) window system. Instead of conventional p-type... We focused on developing penetration-type semitransparent thin-film solar cells(STSCs) using hydrogenated amorphous Si(a-Si:H) for a building-integrated photovoltaic(BIPV) window system. Instead of conventional p-type a-Si:H, p-type hydrogenated microcrystalline Si oxide(p-μc-SiOx:H) was introduced for a wide-bandgap and conductive window layer. For these purposes, we tuned the CO2/SiH4 flow ratio(R) during p-μc-SiOx:H deposition. The film crystallinity decreased from 50% to 13% as R increased from 0.2 to 1.2. At the optimized R of 0.6, the quantum efficiency was improved under short wavelengths by the suppression of p-type layer parasitic absorption. The series resistance was well controlled to avoid fill factor loss at R = 0.6. Furthermore, we introduced dual buffers comprising p-a-SiOx:H/i-a-Si:H at the p/i interface to alleviate interfacial energy-band mismatch. The a-Si:H STSCs with the suggested window and dual buffers showed improvements in transmittance and efficiency from 22.9% to 29.3% and from 4.62% to 6.41%, respectively, compared to the STSC using a pristine p-a-Si:H window. 展开更多
关键词 MICROCRYSTALLINE silicon oxide building-integrated photovoltaics SEMITRANSPARENT Thin film Solar cells
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SolarGAN:Synthetic annual solar irradiance time series on urban building facades via Deep Generative
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作者 Yufei Zhang Arno Schlueter Christoph Waibel 《Energy and AI》 2023年第2期1-21,共21页
Building Integrated Photovoltaics (BIPV) is a promising technology to decarbonize urban energy systems viaharnessing solar energy available on building envelopes. While methods to assess solar irradiation, especiallyo... Building Integrated Photovoltaics (BIPV) is a promising technology to decarbonize urban energy systems viaharnessing solar energy available on building envelopes. While methods to assess solar irradiation, especiallyon rooftops, are well established, the assessment on building facades usually involves a higher effort due tomore complex urban features and obstructions. The drawback of existing physics-based simulation programsare that they require significant manual modeling effort and computing time for generating time resolveddeterministic results. Yet, solar irradiation is highly intermittent and representing its inherent uncertainty maybe required for designing robust BIPV energy systems. Targeting on these drawbacks, this paper proposes adata-driven model based on Deep Generative Networks (DGN) to efficiently generate stochastic ensembles ofannual hourly solar irradiance time series on building facades with uncompromised spatiotemporal resolutionat the urban scale. The only input required are easily obtainable fisheye images as categorical shading maskscaptured from 3D models. In principle, even actual photographs of urban contexts can be utilized, given they are semantically segmented. The potential of our approach is that it may be applied as a surrogate for timeconsuming simulations, when facing lacking information (e.g., no 3D model exists), and to use the generatedstochastic time-series ensembles in robust energy systems planning. Our validations exemplify a good fidelityof the generated time series when compared to the physics-based simulator. Due to the nature of the usedDGNs, it remains an open challenge to precisely reconstruct the ground truth one-to-one for each hour of theyear. However, we consider the benefits of the approach to outweigh the shortcomings. To demonstrate themodel’s relevance for urban energy planning, we showcase its potential for generative design by parametricallyaltering characteristic features of the urban environment and producing corresponding time series on buildingfacade 展开更多
关键词 Urban solar potential Data-driven Deep Generative Networks(DGN) building-integrated photovoltaic(BIPV) Generative Adversarial Network(GAN) Variational Autoencoder(VAE)
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一种高效低成本与建筑一体化的光伏发电系统 被引量:1
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作者 钟承尧 李宁 《科技通报》 北大核心 2012年第5期146-150,共5页
介绍了一种与建筑一体化的光伏发电系统,提出固定的二次反射多平面镜聚光系统,可成倍地增大太阳电池的输出功率,大幅度降低系统成本。在金数龙仿真物理实验室仿真软件设计的基础上,经过分析,得出下方与上方反射镜的数据;实验表明,太阳... 介绍了一种与建筑一体化的光伏发电系统,提出固定的二次反射多平面镜聚光系统,可成倍地增大太阳电池的输出功率,大幅度降低系统成本。在金数龙仿真物理实验室仿真软件设计的基础上,经过分析,得出下方与上方反射镜的数据;实验表明,太阳光线能够均匀地聚光在太阳电池上,达到二倍光强的效果。系统功能完善,安装简单而且抗风能力强,有很好的应用前景。 展开更多
关键词 光伏发电 建筑一体化 聚光 抗风能力 实验仿真
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Building-integrated renewable energy policy analysis in China
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作者 姚春妮 郝斌 《Journal of Central South University》 SCIE EI CAS 2009年第S1期209-213,共5页
With the dramatic development of renewable energy all over the world,and for purpose of adjusting energy structure,the Ministry of Construction of China plans to promote the large scale application of renewable energy... With the dramatic development of renewable energy all over the world,and for purpose of adjusting energy structure,the Ministry of Construction of China plans to promote the large scale application of renewable energy in buildings. In order to ensure the validity of policy-making,this work firstly exerts a method to do cost-benefit analysis for three kinds of technologies such as building-integrated solar hot water (BISHW) system,building-integrated photovoltaic (BIPV) technology and ground water heat pump (GWHP). Through selecting a representative city of every climate region,the analysis comes into different results for different climate regions in China and respectively different suggestion for policy-making. On the analysis basis,the Ministry of Construction (MOC) and the Ministry of Finance of China (MOF) united to start-up Building-integrated Renewable Energy Demonstration Projects (BIREDP) in 2006. In the demonstration projects,renewable energy takes place of traditional energy to supply the domestic hot water,electricity,air-conditioning and heating. Through carrying out the demonstration projects,renewable energy related market has been expanded. More and more relative companies and local governments take the opportunity to promote the large scale application of renewable energy in buildings. 展开更多
关键词 building-integrated RENEWABLE Energy Policy COST-BENEFIT analysis DEMONSTRATION PROJECTS
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Recent Progress on Semi-transparent Perovskite Solar Cell for Building-integrated Photovoltaics 被引量:1
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作者 ZHU Yivi SHU Lei FAN Zhiyong 《Chemical Research in Chinese Universities》 SCIE CAS CSCD 2020年第3期366-376,共11页
The electricity consumption of buildings is tremendous;moreover,a huge amount of electricity is lost during distribution.Taking away this consumption can significantly reduce energy demand and greenhouse effect gas em... The electricity consumption of buildings is tremendous;moreover,a huge amount of electricity is lost during distribution.Taking away this consumption can significantly reduce energy demand and greenhouse effect gas emission.One of the low-cost and renewable solutions to this issue is to install photovoltaic panels on the buildings themselves,namely,building-integrated photovoltaics(BIPVs).Using this technology,power generation roofs,windows,and facades can harvest solar radiation and convert to electricity for building power consumption.Semi-transparent perovskite solar cells(ST-PSCs)have attracted tremendous attention for the power generation windows,due to the excellent photoelectric properties,versatile fabrication methods,bandgap tunability,and flexibility.Here,an overview is provided on the recent progress of ST-PSCs for BIPV,which mainly focuses on the control of perovskite morphology,optical engineering for an efficient and semi-transparent ST-PSC.We also summarize recent development on various transparent electrodes and present prospects and challenges for the commercialization of ST-PSCs. 展开更多
关键词 building-integrated photovoltaic Semi-transparent solar cell Perovskites solar cell
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Integration of buildings with third-generation photovoltaic solar cells: a review 被引量:1
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作者 Elahe Mirabi Fatemeh Akrami Abarghuie Rezvan Arazi 《Clean Energy》 EI 2021年第3期505-526,共22页
Clean-energy technologies have been welcomed due to environmental concerns and high fossil-fuel costs.Today,photovoltaic(PV)cells are among the most well-known technologies that are used today to integrate with buildi... Clean-energy technologies have been welcomed due to environmental concerns and high fossil-fuel costs.Today,photovoltaic(PV)cells are among the most well-known technologies that are used today to integrate with buildings.Particularly,these cells have attracted the attention of researchers and designers,combined with the windows and facades of buildings,as solar cells that are in a typical window or facade of a building can reduce the demand for urban electricity by generating clean electricity.Among the four generations that have been industrialized in the development of solar cells,the third generation,including dye-sensitized solar cells(DSSCs)and perovskite,is used more in combination with the facades and windows of buildings.Due to the characteristics of these cells,the study of transparency,colour effect and their impact on energy consumption is considerable.Up to now,case studies have highlighted the features mentioned in the building combination.Therefore,this paper aims to provide constructive information about the practical and functional features as well as the limitations of this technology,which can be used as a reference for researchers and designers. 展开更多
关键词 renewable energies building-integrated photovoltaics nano-crystalline dye-sensitized solar cell semi-transparent-based perovskite solar cells ENERGY-SAVING
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集中集热分户储热建筑一体化太阳能热水系统在多层住宅工程中的应用 被引量:1
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作者 李玉虎 《江苏建筑》 2015年第6期104-106,共3页
文章介绍了一种适用于多层住宅工程的建筑一体化太阳能热水系统的设计、施工与维护等应用过程,并指出了各阶段的应用注意事项,是一种性价比比较高的建筑一体化太阳能热水系统。
关键词 太阳能 建筑一体化 热水系统 多层住宅
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POWER GENERATION POTENTIAL OF BIPV APPLICATION IN CHINA
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作者 由世俊 华君 +2 位作者 涂光备 吕灿仁 杨洪兴 《Transactions of Tianjin University》 EI CAS 2001年第1期17-20,共4页
This paper discusses the potential and prospect of building-integrated photovoltaics (BIPV) for solar electrical power generation in China.The BIPV technology has been identified as the most economical renewable energ... This paper discusses the potential and prospect of building-integrated photovoltaics (BIPV) for solar electrical power generation in China.The BIPV technology has been identified as the most economical renewable energy resource to contribute to world electrical energy demand for protecting environment from reduced fossil fuel consumption.The available solar energy resource of 14 cities and the potential power generation from PV claddings in buildings in China were estimated.The economical analysis of BIPV application is discussed.It is found that the potential is significant and the government should play an important role in its development. 展开更多
关键词 building-integrated photovoltaics solar electrical power generation solar energy resource
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太阳能光伏发电应用的现状及发展 被引量:110
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作者 赵春江 杨金焕 +1 位作者 陈中华 邹乾林 《节能技术》 CAS 2007年第5期461-465,共5页
当前太阳能光伏发电正在迅速发展,应用的规模和范围正在不断地扩大。本文讨论了各种类型光伏系统的应用及国内外太阳能光伏应用的发展概况。此外还特别介绍了光伏与建筑一体化和光伏声屏障的特点及其应用状况。
关键词 光伏发电 独立光伏系统 并网系统 光伏与建筑一体化 光伏声屏障
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光伏建筑一体化的现状与发展 被引量:27
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作者 李芳 沈辉 +1 位作者 许家瑞 陈维 《电源技术》 CAS CSCD 北大核心 2007年第8期659-662,共4页
介绍了目前国内外光伏建筑一体化的发展状况,以及光伏与建筑相结合的几种形式和其优势;介绍了国内外光伏建筑一体化的示范项目;对于在光伏建筑一体化中的并网系统和独立系统也做了分析;给出了实验室最近做的两个光伏建筑一体化项目简介... 介绍了目前国内外光伏建筑一体化的发展状况,以及光伏与建筑相结合的几种形式和其优势;介绍了国内外光伏建筑一体化的示范项目;对于在光伏建筑一体化中的并网系统和独立系统也做了分析;给出了实验室最近做的两个光伏建筑一体化项目简介,其中一个为6.3kW的户用光伏系统;最后对光伏建筑一体化的发展进行了展望。 展开更多
关键词 光伏建筑一体化(BIPV) 并网系统 户用光伏系统
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考虑电能共享的综合能源楼宇群日前协同优化调度 被引量:28
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作者 胡鹏 艾欣 +4 位作者 杨昭 吴界辰 郭良松 李庆彪 张润恩 《电力自动化设备》 EI CSCD 北大核心 2019年第8期239-245,共7页
首先提出了一种含高比例分布式能源的智能园区运行框架,针对综合能源楼宇内冷热电联供系统、电动汽车、温控负荷等资源建立了计及用户用能需求的量化模型。进一步,基于电能双向流动特性,建立园区内多综合能源楼宇群电能共享模型,并通过... 首先提出了一种含高比例分布式能源的智能园区运行框架,针对综合能源楼宇内冷热电联供系统、电动汽车、温控负荷等资源建立了计及用户用能需求的量化模型。进一步,基于电能双向流动特性,建立园区内多综合能源楼宇群电能共享模型,并通过智能园区代理商制定园区的日前优化调度策略。通过算例仿真,验证了所提方法可通过协调内部综合能源需求侧资源,进行楼宇间电能共享,实现电能供需就近平衡,达到最小化园区调度成本的优化目标。最后,讨论了有无变压器容量限制下的园区与电网的功率交互情况,所提调度策略可通过增加变压器容量约束来避免变压器越限对电网安全运行的不利影响。 展开更多
关键词 分布式能源 综合能源楼宇群 电能共享 智能园区 日前优化调度 综合能源系统
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碳中和导向的装配式建筑整体设计关键要素研究 被引量:12
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作者 宋晔皓 褚英男 何逸 《世界建筑》 2021年第7期8-13,128,共7页
随着气候变化的日益严峻,碳排放已成为当前我国发展的关键问题。装配式建筑由于其生产、加工、建造、安装等方面的诸多优势,将是建筑领域面对碳中和任务的关键节点。本文首先回顾了我国装配式建筑设计在设计研究、政策配套、示范建筑等... 随着气候变化的日益严峻,碳排放已成为当前我国发展的关键问题。装配式建筑由于其生产、加工、建造、安装等方面的诸多优势,将是建筑领域面对碳中和任务的关键节点。本文首先回顾了我国装配式建筑设计在设计研究、政策配套、示范建筑等领域取得的进展,随后通过国际、国内相关案例及数据分析,尝试归纳碳中和背景下装配式建筑设计在协同设计路径的探索与创新、长周期可持续性能设计策略、蕴能量及低碳装配体系建构3个关键要素,为我国今后装配式建筑设计发展提供指引。 展开更多
关键词 碳中和 装配式建筑 整体设计 光伏建筑一体化
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太阳能光伏技术与建筑一体化研究进展 被引量:10
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作者 谷民安 刘永生 +2 位作者 赵春江 杨正龙 杨金焕 《华东电力》 北大核心 2009年第10期1771-1774,共4页
分析了太阳能光伏技术与建筑一体化(BIPV)的趋势、存在的各种问题及其建议。简单介绍了BIPV的系统构成及工作原理,并对太阳能光伏技术与建筑一体化的发展做出一定的预测。提出合理的运用BIPV中产生的热量用于中央空调系统,实现两种系统... 分析了太阳能光伏技术与建筑一体化(BIPV)的趋势、存在的各种问题及其建议。简单介绍了BIPV的系统构成及工作原理,并对太阳能光伏技术与建筑一体化的发展做出一定的预测。提出合理的运用BIPV中产生的热量用于中央空调系统,实现两种系统的联合运行。 展开更多
关键词 太阳能光伏技术与建筑一体化 太阳能光伏发电系统 建筑节能
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广州办公建筑光伏建筑一体化遮阳百叶系统模拟研究 被引量:8
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作者 刘嘉懿 毕广宏 赵立华 《建筑节能(中英文)》 CAS 2022年第9期57-61,共5页
光伏建筑一体化(BIPV)组件能够结合建筑外遮阳与光伏发电组件,是实现建筑近零能耗目标的有效手段,近年来受到学界的广泛关注。BIPV遮阳百叶系统通过在建筑立面附加外置BIPV水平遮阳百叶的方式,减少室内直射太阳辐射,利用太阳能补贴建筑... 光伏建筑一体化(BIPV)组件能够结合建筑外遮阳与光伏发电组件,是实现建筑近零能耗目标的有效手段,近年来受到学界的广泛关注。BIPV遮阳百叶系统通过在建筑立面附加外置BIPV水平遮阳百叶的方式,减少室内直射太阳辐射,利用太阳能补贴建筑能耗,从而减少建筑能耗,增加可再生能源利用率,改善室内光环境。以广州市典型办公房间为对象,对BIPV遮阳百叶系统的关键参数进行敏感性分析,得到不同参数对典型房间净能耗的影响程度。此外,以房间净能耗最小为目标,对BIPV遮阳百叶系统的关键参数进行全局寻优,得到各朝向下的最优参数工况。对各朝向最优BIPV遮阳百叶系统工况的房间能耗、光环境与经济性进行分析。 展开更多
关键词 光伏建筑一体化 建筑能耗 可再生能源
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光伏建筑一体化结合形式的探讨 被引量:8
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作者 董叶莉 黄中伟 《建筑节能》 CAS 2013年第6期34-36,共3页
系统地研究并分析了光伏与建筑的结合形式:支架式、构件式、建材式,并从建筑物的新建和既有、居住建筑和公共建筑的角度分析了不同的结合方式的适用情况,从而推动太阳能光伏建筑一体化技术的利用,为绿色生态城市的建设和相关单位决策的... 系统地研究并分析了光伏与建筑的结合形式:支架式、构件式、建材式,并从建筑物的新建和既有、居住建筑和公共建筑的角度分析了不同的结合方式的适用情况,从而推动太阳能光伏建筑一体化技术的利用,为绿色生态城市的建设和相关单位决策的制定提供理论支持。 展开更多
关键词 光伏建筑一体化 结合形式 适用情况
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