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Numerical Study of Thermal Performance of Phase Change Material Energy Storage Floor in Solar Water Heating System
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作者 ZENG Ruo-lang,WANG Xin,ZHANG Yin-ping,DI Hong-fa,ZHANG Qun-li(Department of Building Science,Tsinghua University,Beijing 100084,China) 《湖南大学学报(自然科学版)》 EI CAS CSCD 北大核心 2009年第S1期141-145,共5页
The conventional solar heating floor system contains a big water tank to store energy in the day time for heating at night,which takes much building space and is very heavy.In order to reduce the water tank volume eve... The conventional solar heating floor system contains a big water tank to store energy in the day time for heating at night,which takes much building space and is very heavy.In order to reduce the water tank volume even to cancel the tank,a novel structure of integrated water pipe floor heating system using shape-stabilized phase change materials(SSPCM)for thermal energy storage was developed.A numerical model was developed to analyze the performance of SSPCM floor heating system under the intermittent heating condition,which was verified by our experimental data.The thermal performance of the heating system and the effects of various factors on it were analyzed numerically.The factors including phase transition temperature,heat of fusion,thermal conductivity of SSPCM and thermal conductivity of the decoration material were analyzed.The results show that tm and kd are the most import influencing factors on the thermal performance of SSPCM floor heating system,since they determine the heat source temperature and thermal resistance between SSPCM plates and indoor air,respectively.Hm should be large to store enough thermal energy in the day time for nighttimes heating.The effects of kp can be ignored in this system.The SSPCM floor heating system has potential of making use of the daytime solar energy for heating at night efficiently in various climates when its structure is properly designed. 展开更多
关键词 phase change material energy storage SOLAR water HEATING
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Preparation of Paraffin/γ-Al2O3 Composites as Phase Change Energy Storage Materials 被引量:1
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作者 赵亮 《沈阳建筑大学学报(自然科学版)》 CAS 北大核心 2011年第5期921-924,951,共5页
Paraffin/γ-Al2O3 composites as phase change energy storage materials were prepared by absorbing paraffin in porous network of γ-Al2O3.In the composite materials,paraffin was used as a phase change material(PCM)for t... Paraffin/γ-Al2O3 composites as phase change energy storage materials were prepared by absorbing paraffin in porous network of γ-Al2O3.In the composite materials,paraffin was used as a phase change material(PCM)for thermal energy storage,and γ-Al2O3 acted as supporting materials.Characterizations were conducted to evaluate the energy storage performance of the composites,and differential scanning calorimeter results showed that the PCM-3 composite has melting latent heat of 112.9 kJ/kg with a melting temperature of 62.9 ℃.Due to strong capillary force and surface tension between paraffin and γ-Al2O3,the leakage of melted paraffin from the composites can be effectively prevented.Therefore,the paraffin/γ-Al2O3 composites have a good thermal stability and can be used repeatedly. 展开更多
关键词 phase change material thermal energy storage Γ-AL2O3 PARAFFIN
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Effects of phase change material(PCM)-based nanocomposite additives on thermal decomposition and burning characteristic of high energy propellants containing RDX 被引量:1
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作者 En-fa Fu Na Sun Zheng-gang Xiao 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2022年第4期557-566,共10页
A kind of phase change material(PCM)-based nanocomposite was prepared and added into high energy propellants containing RDX as additives to investigate its effect on thermal decomposition and burning characteristic of... A kind of phase change material(PCM)-based nanocomposite was prepared and added into high energy propellants containing RDX as additives to investigate its effect on thermal decomposition and burning characteristic of high energy propellants.The effect of PCM-based nanocomposites on thermal decomposition of high energy propellants is investigated by TG/DSC-FTIR-MS technology.Due to the delayed protection effect(PCM-based nanocomposites can absorb lots of heat at the range of certain temperature when it undergoes structure change or phase transitions)of PCM-based nanocomposites under the thermal decomposition condition,the thermal stability of high energy propellants modified with PCMbased nanocomposites is improved.At the same time,the concentration of N2,NO2,H2O and CO_(2)is increased during thermal decomposition of high energy propellants whereas NO and CO is decreased.The burning gaseous products and burning characteristic of high energy propellants are studied by the combination of closed bomb test and Fourier transform infrared spectrum.The main burning gaseous products are N2,CO_(2),CO,H2O,CH4,etc.After the high energy propellant modified with PCM-based nanocomposites,the concentration of CH4is increased while CO,CO_(2) and H2O is decreased under the high-pressure burning condition.The progressivity factor of high energy propellants is increased by22.2%compared with the control sample while the maximum pressure is merely decreased 1.25%after the addition of the PCM-based nanocomposite,thus PCM-based nanocomposites can be used to adjust the burning process and improve the burning progressivity of high energy propellants.This study is expected to boost the practical application of PCM-based nanocomposite to the propellant formulation and effectively control the burning characteristic of high energy propellants. 展开更多
关键词 phase change material Propellants NANOCOMPOSITE thermal decomposition BURNING
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Performance analysis of thermal storage unit with possible nano enhanced phase change material in building cooling applications
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作者 Solomon G Ravikumar Ravikumar T S +1 位作者 Raj V Antony Aroul Velraj R 《储能科学与技术》 CAS 2013年第2期91-102,共12页
The heat transfer performance of the phase change materials used in free cooling and air conditioning applications is low,due to the poor thermal conductivity of the materials.The recent phenomenal advancement in nano... The heat transfer performance of the phase change materials used in free cooling and air conditioning applications is low,due to the poor thermal conductivity of the materials.The recent phenomenal advancement in nano technology provides an opportunity for an appreciable enhancement in the thermal conductivity of the phase change materials.In order to explore the possibilities of using nano technology for various applications,a detailed parametric study is carried out,to analyse the heat transfer enhancement potential with the thermal conductivity of the conventional phase change materials and nano enhanced phase change materials under various flow conditions of the heat transfer fluid.Initially,the theoretical equation,used to determine the time for outward cylindrical solidification of the phase change material,is validated with the experimental results.It is inferred from the parametric studies,that for paraffinic phase change materials with air as the heat transfer fluid,the first step should be to increase the heat transfer coefficient to the maximum extent,before making any attempt to increase the thermal conductivity of the phase change materials,with the addition of nano particles.When water is used as the phase change material,the addition of nano particles is recommended to achieve better heat transfer,when a liquid is used as the heat transfer fluid. 展开更多
关键词 thermal storage phase change material nano particle solidification time building cooling doi.3969/j.issn.2095-4239.2013.02.002 CLC number:TK 51 Document code:A Article ID-4239(2013)02-091-12
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Preparation and hygrothermal performance of composite phase change material wallboard with humidity control based on expanded perlite/diatomite/paraffin 被引量:14
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作者 YANG Hua LIU Yun +2 位作者 KONG Xiang-fei CHEN Wan-he YAO Cheng-qiang 《Journal of Central South University》 SCIE EI CAS CSCD 2018年第10期2387-2398,共12页
Phase change material(PCM)can reduce the indoor temperature fluctuation and humidity control material can adjust relative humidity used in buildings.In this study,a kind of composite phase change material particles(CP... Phase change material(PCM)can reduce the indoor temperature fluctuation and humidity control material can adjust relative humidity used in buildings.In this study,a kind of composite phase change material particles(CPCMPs)were prepared by vacuum impregnation method with expanded perlite(EP)as supporting material and paraffin as phase change material.Thus,a PCM plate was fabricated by mould pressing method with CPCMPs and then composite phase change humidity control wallboard(CPCHCW)was prepared by spraying the diatom mud on the surface of PCM plate.The composition,thermophysical properties and microstructure were characterized using X-ray diffraction instrument(XRD),differential scanning calorimeter(DSC)and scanning electron microscope(SEM).Additionally,the hygrothermal performance of CPCHCW was characterized by temperature and humidity collaborative test.The results can be summarized as follows:(1)CPCMPs have suitable phase change parameters with melting/freezing point of 18.23°C/29.42°C and higher latent heat of 54.66 J/g/55.63 J/g;(2)the diatom mud can control the humidity of confined space with a certain volume;(3)the combination of diatom mud and PCM plate in CPCHCW can effectively adjust the indoor temperature and humidity.The above conclusions indicate the potential of CPCHCW in the application of building energy efficiency. 展开更多
关键词 thermal storage humidity control phase change material PARAFFIN expanded perlite diatom mud
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Fabrication, property characterization and thermal performance of composite phase change material plates based on tetradecanol-myristic acid binary eutectic mixture/expanded perlite and expanded vermiculite for building application 被引量:7
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作者 YANG Hua CHEN Wan-he +1 位作者 KONG Xiang-fei RONG Xian 《Journal of Central South University》 SCIE EI CAS CSCD 2019年第9期2578-2595,共18页
A binary eutectic mixture composed of tetradecanol(TD)and myristic acid(MA)was maximally absorbed into the microstructures of expanded perlite(EP)and expanded vermiculite(EVMT),respectively,through a self-made vacuum ... A binary eutectic mixture composed of tetradecanol(TD)and myristic acid(MA)was maximally absorbed into the microstructures of expanded perlite(EP)and expanded vermiculite(EVMT),respectively,through a self-made vacuum adsorption roller to prepare phase change material(PCM)particle(PCP).Then EP and EVMT-based composite PCM plates were respectively fabricated through a mold pressing method.The thermal property,chemical stability,microstructure and durability were characterized by differential scanning calorimeter(DSC),Fourier transform infrared spectroscope(FT-IR),scanning electron microscope(SEM)and thermal cycling tests,respectively.The results show that both PCPs have high latent heats with 110 J/g for EP-based PCP and more than 130 J/g for EVMT-based PCP,compact microstructure without PCM leakage,stable chemical property and good durability.The research results have proved the feasibility for the vacuum adsorption roller used in the composite PCM fabrication.Results of thermal storage performance experiment indicate that the fabricated PCM plates have better thermal inertia than common building materials,and the thermal storage performance of PCM plates has nonlinearly changed with outside air velocity and temperature increase.Therefore,PCM plates show a significant potential for the practical application of building thermal storage. 展开更多
关键词 thermal storage phase change material expanded perlite expanded vermiculite binary eutectic mixture
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Storage and exchange thermal characteristic analysis of phase change wallboard room with different conditions
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作者 黄凯良 冯国会 +2 位作者 陈其针 牛润萍 刘馨 《Journal of Central South University》 SCIE EI CAS 2009年第S1期154-158,共5页
Based on the phase change material (PCM) thermal characteristic,some testing methods such as differential scanning calorimeter (DSC) etc were used to select the low melting mixture of capric and lauric acid as PCM of ... Based on the phase change material (PCM) thermal characteristic,some testing methods such as differential scanning calorimeter (DSC) etc were used to select the low melting mixture of capric and lauric acid as PCM of phase change wallboard (PCW). The PCW room was established,and some contrast analysis of the storage and exchange thermal characteristic of PCW room and ordinary wall room were made under different conditions. The results show that the fluctuation of indoor air temperature in PCW room is smaller than that in ordinary room obviously. The exchange energy of PCM room with outdoor is less than that of ordinary wall room. In the winter condition,PCW room utilizes valley period electricity to storage energy in the night,while releases at peak period electricity in daytime,which can divert 40% of peak load. In the summer condition,PCW room can reduce the peak cooling load by 25% compared with ordinary wall room. 展开更多
关键词 phase change energy storage energy PCM storage and EXchange thermal CHARACTERISTIC
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Cool storage time of phase change wallboard room in summer 被引量:1
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作者 冯国会 陈其针 +2 位作者 黄凯良 牛润萍 王琳 《Journal of Central South University》 SCIE EI CAS 2009年第S1期75-79,共5页
More and more attention was paid to phase change energy storage in air conditioning domain and construction energy conservation,and became the focus of the international research. Through the test and analysis of the ... More and more attention was paid to phase change energy storage in air conditioning domain and construction energy conservation,and became the focus of the international research. Through the test and analysis of the parameters of the indoor thermal property in phase change wallboard room and ordinary room,the effects of using phase change wallboards on indoor temperature in summer and air conditioning are obtained. The combination of construct enclosure and phase change materials can stabilize indoor temperature,improve indoor thermal comfort,reduce the frequency of the operation of air conditioning facility,cut the initial investment and operation expense,and meanwhile play an practical role in "the power balancing between the peak period and the valley period" policy. Through the experiment and the test of the effects exerted by phase change wallboard room and ordinary room on the indoor thermal environment,it is obtained that the phase change wallboard can reduce the fluctuation range of indoor temperature and the heat flow from the outside into indoor environment in summer. According to the study,it is found that the effect of cool-storing for 5 h is obvious. Through the analysis of the phase change wallboard without air conditioning in daytime,it is obtained that the frequency of the operation of air conditioning in phase change wallboard room is smaller than that in the ordinary room,which can prolong the lifetime of the facility and reduce operation expense. 展开更多
关键词 phase change energy storage phase change WALLBOARD room thermal storage thermal exchange cool-storage air-conditioning
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Advances in thermal energy storage development at the German Aerospace Center(DLR) 被引量:1
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作者 Laing Doerte Steinmann Wolf-Dieter +2 位作者 Tamme Rainer Wrner Antje Zunft Stefan 《储能科学与技术》 CAS 2012年第1期13-25,共13页
Thermal energy storage(TES)is a key technology for renewable energy utilization and the improvement of the energy efficiency of heat processes.Sectors include industrial process heat and conventional and renewable pow... Thermal energy storage(TES)is a key technology for renewable energy utilization and the improvement of the energy efficiency of heat processes.Sectors include industrial process heat and conventional and renewable power generation.TES systems correct the mismatch between supply and demand of thermal energy.In the medium to high temperature range(100~1000℃),only limited storage technology is commercially available and a strong effort is needed to develop a range of storage technologies which are efficient and economical for the very specific requirements of the different application sectors.At the DLR's Institute of Technical Thermodynamics,the complete spectrum of high temperature storage technologies,from various types of sensible over latent heat to thermochemical heat storages are being developed.Different concepts are proposed depending on the heat transfer fluid(synthetic oil,water/steam,molten salt,air)and the required temperature range.The aim is the development of cost effective,efficient and reliable thermal storage systems.Research focuses on characterization of storage materials,enhancement of internal heat transfer,design of innovative storage concepts and modelling of storage components and systems.Demonstration of the storage technology takes place from laboratory scale to field testing(5 kW^1 MW).The paper gives an overview on DLR's current developments. 展开更多
关键词 thermal energy storage sensible HEAT LATENT HEAT THERMOCHEMICAL storage REGENERATOR storage PARTICULATE materials
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Research Progress on Thermal Management of Lithium-Ion Batteries
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作者 Hong-Da Li Qiu-Wan Shen +3 位作者 Zhao-Yang Zhang Xin-Yue Zhao Yuan Wei Shi-An Li 《电化学(中英文)》 北大核心 2025年第7期1-17,共17页
Nowadays,new energy technologies are developing rapidly,energy storage systems are widely used,and lithium-ion batteries occupy a dominant position among them.Therefore,it is also very important to ensure their perfor... Nowadays,new energy technologies are developing rapidly,energy storage systems are widely used,and lithium-ion batteries occupy a dominant position among them.Therefore,it is also very important to ensure their performance,safety and service life through thermal management technology.In this paper,the causes of thermal runaway of lithium batteries are reviewed firstly,and three commonly used thermal management technologies,namely,air cooling,liquid cooling and phase change material cooling,are compared according to relevant literature in recent years.Air cooling technology has been widely studied because of its simple structure and low cost,but its temperature control effect is poor.Liquid cooling technology takes away heat through the circulation of liquid medium,which has a good cooling effect,but the system is relatively complex.Phase change material(PCM)cooling technology uses the high latent heat of PCM to absorb and re-lease heat,which can effectively reduce the peak temperature of a battery and improve the temperature uniformity,but the low thermal conductivity and liquid leakage are its main problems.To sum up,lithium-ion battery thermal management technology is moving towards a more efficient,safer and cost-effective direction.Coupled cooling systems,such as those combining liquid cooling and phase change material cooling,show great potential.Future research will continue to explore new materials and technologies to meet the growing demands of society and the market for lithium-ion battery perfor-mance and safety. 展开更多
关键词 Lithium-ion battery thermal runaway thermal management system phase change material Air cooling Liquid cooling
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Application of thermal electrochemical equation to metal-hydride half-cell system 被引量:1
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作者 刘开宇 黄伯云 +3 位作者 张平民 贺跃辉 周科朝 苏耿 《Journal of Central South University of Technology》 EI 2006年第2期146-150,共5页
Application of thermal electrochemical equation to metal-hydride half-cell system was investigated, and the influence of state of charge on the thermal electrochemical performance of hydrogen storage materials was stu... Application of thermal electrochemical equation to metal-hydride half-cell system was investigated, and the influence of state of charge on the thermal electrochemical performance of hydrogen storage materials was studied. The results show that both the absolute value of the molar enthalpy change and the internal resistance of evolution hydrogen reaction are less than that of absorption hydrogen reaction at the same state of charge. The molar reaction enthalpy change of absorption and evolution of hydride electrode change contrarily with the enhancement of filling degree of hydrogen in hydride electrode. The relation curve of molar reaction enthslpy change to state of charge, both absorption and evolution hydrogen reaction, is close to a constant when the state of charge is 10%- 60%, and during state of charge below 10% or state of charge above 60%, the molar reaction enthalpy change varies sharply. Meanwhile, the internal resistance of electrode reaction has an ascending trend with the enhancement on filling degree of hydrogen in hydride electrode in both absorption and evolution hydrogen reaction. 展开更多
关键词 hydrogen storage material thermal electrochemical method state of charge APPLICATION change of enthalpy internal resistance
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热管理策略对电池储能系统性能影响综述 被引量:1
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作者 吉鹏霄 郭丽娜 陶海军 《电池》 北大核心 2025年第1期178-185,共8页
深入分析电池储能系统(BESS)热管理策略的现状与挑战,旨在明确现有策略在保障系统性能、延长电池寿命与安全操作中的作用与局限。回顾空气冷却、液冷及相变冷却等主流热管理技术,总结各自的技术特点与实际应用案例,并详细论述电池在低... 深入分析电池储能系统(BESS)热管理策略的现状与挑战,旨在明确现有策略在保障系统性能、延长电池寿命与安全操作中的作用与局限。回顾空气冷却、液冷及相变冷却等主流热管理技术,总结各自的技术特点与实际应用案例,并详细论述电池在低温和热失控情况下的性能衰减机制。分析电池组设计改进、冷却通道优化等实际措施,强调在现有技术框架内挖掘创新潜力的具体路径,如通过优化现有电池组设计,结合相变材料(PCM)与其他冷却系统来增强散热效果。同时,探索智能控制算法、改进材料,以进一步提升系统的热管理效率和适应性。 展开更多
关键词 电池热管理 储能系统 空气冷却 液冷 相变冷却
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导热增强型相变材料研究进展 被引量:1
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作者 钟金豹 范浩熙 +3 位作者 方桂花 王永鹏 孟祥一 张剑 《化工新型材料》 北大核心 2025年第5期24-29,共6页
首先对相变材料蓄能原理以及导热过程进行简要介绍,然后对复合相变材料导热能力的增强方式进行概述,并介绍了近年来导热增强型复合相变材料的制备方法和实验结果。进一步分析了导热增强型复合相变材料发展中存在的问题且对相变材料的发... 首先对相变材料蓄能原理以及导热过程进行简要介绍,然后对复合相变材料导热能力的增强方式进行概述,并介绍了近年来导热增强型复合相变材料的制备方法和实验结果。进一步分析了导热增强型复合相变材料发展中存在的问题且对相变材料的发展前景进行了展望。 展开更多
关键词 相变材料 强化导热 制备方法 研究进展
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石蜡基复合相变储能砂浆的制备及性能研究 被引量:1
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作者 张忠扩 蔡文慧 王蕾 《功能材料》 北大核心 2025年第1期1193-1199,共7页
以石蜡和膨胀石墨为原材料,通过熔融吸附法制备石蜡/膨胀石墨复合相变材料,将相变材料掺入水泥中制备了石蜡基复合相变储能砂浆。通过FT-IR、水化放热测试、SEM、力学和热性能分析,研究了试样的物相结构、微观形貌、力学性能和导热性能... 以石蜡和膨胀石墨为原材料,通过熔融吸附法制备石蜡/膨胀石墨复合相变材料,将相变材料掺入水泥中制备了石蜡基复合相变储能砂浆。通过FT-IR、水化放热测试、SEM、力学和热性能分析,研究了试样的物相结构、微观形貌、力学性能和导热性能。结果表明,石蜡和膨胀石墨是通过物理作用形成了石蜡/膨胀石墨复合相变材料,复合相变材料添加到砂浆中会以颗粒状的形式分散在水泥浆体中,使砂浆表面变得粗糙。相变材料的添加降低了砂浆水化放热速率和水化累积放热量。相变储能砂浆的抗压强度随相变材料的添加不断降低,相变材料添加量20%的储能砂浆的抗压强度为最低值10.63 MPa,较纯砂浆降低了34.18%,密度和导热系数降低至最小值,分别为1730.2 kg/m^(3)和0.372 W/(m·K);蓄热系数和比热容达到最大值,分别为16.24 W/(m^(2)·K)和1.592 J/(kg·℃)。箱体模型动态热性能分析表明,相变材料添加后延缓了最高温度到来的时间,降低了箱体的最高温度,相变材料添加量20%的储能砂浆的最高温度为28.0℃,最高温度到来的时间为8385 s。 展开更多
关键词 石蜡 膨胀石墨 相变材料 储能砂浆 力学性能 导热性能
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基于相变材料的光伏/光热系统性能实验研究
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作者 孙小琴 廖柏琛 +3 位作者 李岱锋 张晓烽 石尔 李杰 《太阳能学报》 北大核心 2025年第2期441-448,共8页
利用具有等温蓄放热过程的相变材料(PCM)为介质,调控太阳能光电转换过程中太阳电池的温度变化,实验对比PVPCM系统和PV/T-PCM系统在不同太阳辐照度工况下的能量转换性能。结果表明,在PV-PCM系统中,相变材料可有效减缓光伏组件的温度上升... 利用具有等温蓄放热过程的相变材料(PCM)为介质,调控太阳能光电转换过程中太阳电池的温度变化,实验对比PVPCM系统和PV/T-PCM系统在不同太阳辐照度工况下的能量转换性能。结果表明,在PV-PCM系统中,相变材料可有效减缓光伏组件的温度上升,但在长期实验条件下,PV-PCM系统可能过热;PV/T-PCM系统的综合能量转换效率和效率平均为53.8%和14.45%,PV-PCM系统综合能量转换效率和效率平均为20.96%和11.7%,单独PV系统能量转换效率平均为8.89%。结果表明,采用PV-PCM系统和PV/T-PCM系统可显著改善光伏组件的能量转换性能。 展开更多
关键词 太阳能 相变材料 能量转换效率 光伏/光热系统
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基于瞬态模拟的中置蓄热式Trombe墙热性能分析
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作者 李纪伟 李佳欣 +2 位作者 刘德文 林浩伟 周通 《太阳能学报》 北大核心 2025年第9期756-763,共8页
针对传统Trombe墙冬季热效率低、热稳定性较差的问题,提出一种中置蓄热式Trombe墙体。通过有限元流体分析软件,采用保定地区冬至、夏至日动态数据,进行连续瞬态模拟,分析蓄热材料、蓄热位置及中置墙体开口与否等9种不同形式下,室内温度... 针对传统Trombe墙冬季热效率低、热稳定性较差的问题,提出一种中置蓄热式Trombe墙体。通过有限元流体分析软件,采用保定地区冬至、夏至日动态数据,进行连续瞬态模拟,分析蓄热材料、蓄热位置及中置墙体开口与否等9种不同形式下,室内温度、集热效率、相变材料液化率的变化情况。结果表明:在寒冷地区,冬季中置相变蓄热式双通道Trombe墙(PCM-TP)热效率可达31.6%,相比于传统Trombe墙体结构(AL-OP)高4%,日较差相对差值低2.1℃,夜间温度最高可提升8.23℃。夏季中置相变蓄热式双通道Trombe墙与传统Trombe墙体相比温度峰值时间延迟4 h,日较差相对差值低1.57℃。在冬季和夏季,中置相变蓄热式双通道Trombe墙(PCM-TP)性能均优于其他方案。 展开更多
关键词 太阳能 数值模拟 相变材料 热效率 Trombe墙
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相变蓄热耦合太阳能驱动有机朗肯循环供热系统优化
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作者 于静梅 王一琦 蔡曜阳 《化学工程》 北大核心 2025年第7期13-18,共6页
针对中国供热系统低碳化转型和促进可再生能源的快速发展,设计一套耦合相变蓄热箱、太阳能有机朗肯循环和水源热泵的低碳供热系统,减少太阳能利用成本。使用TRNSYS软件搭建供热系统模型,以呼和浩特市某员工宿舍为研究对象,费用年值、[火... 针对中国供热系统低碳化转型和促进可再生能源的快速发展,设计一套耦合相变蓄热箱、太阳能有机朗肯循环和水源热泵的低碳供热系统,减少太阳能利用成本。使用TRNSYS软件搭建供热系统模型,以呼和浩特市某员工宿舍为研究对象,费用年值、[火用]效率和电能自给率为目标函数,集热器面积等系统关键参数作为决策变量,采用NSGA-Ⅱ算法对系统进行多目标优化和TOPSIS方法寻找最优解。优化结果表明:在集热器面积为912 m^(2)、热泵额定制热量为109 kW、使用相变材料体积为8.25 m^(3)、地埋管孔数为24、启动集热器时的辐照强度为121 W/m^(2)、集热器配给流量为54 kg/(m^(2)·h)时,系统达到最优,此时系统费用年值为15.06万元,电能自给率为52.8%,[火用]效率为9%。 展开更多
关键词 相变蓄热 太阳能 水源热泵 有机朗肯循环 NSGA-Ⅱ算法
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基于仿生的相变储热器数值分析与实验研究
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作者 张琳 陈秀芹 《太阳能学报》 北大核心 2025年第4期1-10,共10页
相变储热技术是工程应用中高效储热的手段之一,而相变材料存在低热导率的问题,严重限制了其工作效率,因此需对相变储热装置结构进行优化以提高储热效率。选取五水硫代硫酸钠(Na_(2)S_(2)O_(3)·5H_(2)O)与三水合醋酸钠(CH_(3)COONa&... 相变储热技术是工程应用中高效储热的手段之一,而相变材料存在低热导率的问题,严重限制了其工作效率,因此需对相变储热装置结构进行优化以提高储热效率。选取五水硫代硫酸钠(Na_(2)S_(2)O_(3)·5H_(2)O)与三水合醋酸钠(CH_(3)COONa·3H_(2)O)作为相变材料,基于仿生结构设计6种相变储热模型,对两种相变材料在6种储热模型中的熔化和凝固过程进行数值模拟并分析,最后基于数值模拟结果,综合考虑储热与放热过程,搭建小型相变储热实验台。该文给出了在温度为75℃、流量为0.1 m^(3)/h的工况下,两种模型在两种相变材料中各测温点温度随时间的变化。结果表明:一种储热模型更适合将Na_(2)S_(2)O_(3)·5H_(2)O作为相变材料,另一种模型更适合将CH_(3)COONa·3H_(2)O作为相变材料进行实际应用。 展开更多
关键词 太阳能 储热器 相变储热 仿生 数值分析 实验研究
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上下级联式相变蓄热装置蓄热性能评价
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作者 张仲彬 朱哲昊 《中国电机工程学报》 北大核心 2025年第15期6012-6024,I0021,共14页
为解决水平套管式相变蓄热装置熔化一致性差的问题,该文提出一种上下级联布置蓄热结构,并建立三维蓄热单元模型(模型1,模型2-n,模型2-N)。采用数值模拟的方法,对比分析3种模型的相变过程、完全融化时间、平均储热速率、㶲性能等性能指标... 为解决水平套管式相变蓄热装置熔化一致性差的问题,该文提出一种上下级联布置蓄热结构,并建立三维蓄热单元模型(模型1,模型2-n,模型2-N)。采用数值模拟的方法,对比分析3种模型的相变过程、完全融化时间、平均储热速率、㶲性能等性能指标。详细阐述此种新型结构的优越性能。结果表明:模型2-N相比模型2-n与模型1有更短的完全融化时间与更高的平均储热速率。模型2-N相比模型1与模型2-n的完全融化时间分别减少36.2%和19.4%,平均储热速率分别提升20.1%和11.8%。此外,模型2-N相比模型2-n与模型1的完全熔化均匀性以及温度场均匀性有较为明显的改善。模型2-N的上下扇区的完全融化时间差值仅为4.6%。另外,模型2-N在降低熵产数以及提高㶲效率方面也更有优势。该文可为水平套管式相变蓄热装置高效运行提供方向指引和理论借鉴。 展开更多
关键词 相变蓄热 热性能 上下级联设计 数值模拟 性能优化
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聚乙二醇基复合相变材料性能表征与数值模拟分析
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作者 钟金豹 张剑 +3 位作者 范浩熙 王永鹏 孟祥一 冯相龙 《功能材料》 北大核心 2025年第7期7119-7125,共7页
采用熔融共混法,将相变材料聚乙二醇(polyethylene glycol, PEG)稳定吸附在网络内部,最大程度上解决了相变材料PEG的低导热和泄露问题,从而制成了用于电池热管理的复合相变材料(composite phase change material, CPCM)。研究发现,当PE... 采用熔融共混法,将相变材料聚乙二醇(polyethylene glycol, PEG)稳定吸附在网络内部,最大程度上解决了相变材料PEG的低导热和泄露问题,从而制成了用于电池热管理的复合相变材料(composite phase change material, CPCM)。研究发现,当PEG的含量在85.29%时,无泄漏现象发生,此时导热率为1.488 W/(m·K),是纯PEG的7倍。CPCM相变吸热从40.2℃开始到60.7℃结束,吸热焓值达到了160.9 J/g,相变放热从35.8℃开始到23.5℃结束,放热焓值达到了140 J/g。此外,CPCM在经历200次熔融/结晶循环后仍保持了较高的热稳定性和优异的热可靠性,在热储能应用中具有极强的竞争力。对其CPCM进行了数值模拟分析,结果表明,在相同条件下相对于纯PEG相变材料,CPCM具有较快的热响应速度和较高的储热能力,在实用性方面得到突破,应用前景广阔。 展开更多
关键词 复合相变材料 聚乙二醇 电池热管理 性能研究 数值模拟分析
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