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Operating performance of novel reverse-cycle defrosting method based on thermal energy storage for air source heat pump 被引量:9
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作者 董建锴 姜益强 +1 位作者 姚杨 张雪丹 《Journal of Central South University》 SCIE EI CAS 2011年第6期2163-2169,共7页
To solve the fundamental problem of insufficient heat available during defrosting while ensuring the efficient and safe system operation for air-source heat pumps (ASHPs). A novel reverse-cycle defrosting (NRCD) metho... To solve the fundamental problem of insufficient heat available during defrosting while ensuring the efficient and safe system operation for air-source heat pumps (ASHPs). A novel reverse-cycle defrosting (NRCD) method based on thermal energy storage to eliminate frost off the outdoor coil surface was developed. Comparative experiments using both the stand reverse cycle defrosting (SRCD) method and the NRCD method were carried out on an experimental ASHP unit with a nominal 2.5 kW heating capacity. The results indicate that during defrosting operation, using the NRCD method improves discharge and suction pressures by 0.24 MPa and 0.19 MPa, respectively, shortens defrosting duration by 60%, and reduces the defrosting energy consumption by 48.1% in the experimental environment, compared with those by the use of SRCD method. Therefore, using the NRCD method can shorten the defrosting duration, improve the indoor thermal comfort, and reduce the defrosting energy consumption in defrosting. 展开更多
关键词 air source heat pump thermal energy storage phase change material reverse-cycle defrosting
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MgSO_(4)·7H_(2)O for thermochemical energy storage:Hydration/dehydration kinetics and cyclability
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作者 CHEN Jie MA Hongkun DING Yulong 《储能科学与技术》 CAS CSCD 北大核心 2024年第12期4259-4271,共13页
In recent decades,MgSO_(4)·7H_(2)O(epsomite)has attracted significant attention as a promising thermochemical-based thermal energy storage material due to its high theoretical energy density,wide availability,and... In recent decades,MgSO_(4)·7H_(2)O(epsomite)has attracted significant attention as a promising thermochemical-based thermal energy storage material due to its high theoretical energy density,wide availability,and affordability.Despite extensive research efforts,progress in achieving high-energy density has been limited,primarily due to inadequate understanding of its reaction mechanisms and unfavorable dehydration/hydration kinetics.This study systematically investigated the hydration/dehydration kinetics and cyclability of MgSO_(4)·7H_(2)O.The results reveal that the dehydration process is influenced by the heating rate,with an optimal rate of 5℃/min,resulting in a seven-step MgSO_(4)·7H_(2)O dehydration process with a dehydration heat close to the theoretical value.The reaction kinetic analysis indicated that the rate of hydration was approximately 50%lower than that of dehydration.In addition,thermal cycling tests of MgSO_(4)·7H_(2)O under the conditions of this study(small sample size)indicated good cyclability,with hydration rates increasing with increasing cycling numbers up to approximately 10 cycles where level-off occurs.These results are consistent with scanning electron microscopy analyses,which revealed the formation of cracks and channels in the salt hydrate particles,facilitating mass transfer and improved kinetics. 展开更多
关键词 thermochemical energy storage thermal analysis thermal cycling MgSO_(4)hydration/dehydration kinetics
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Experimental study on energy storage and dissipation characteristics of granite under two-dimensional compression with constant confining pressure 被引量:19
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作者 SU You-qiang GONG Feng-qiang +1 位作者 LUO Song LIU Zhi-xiang 《Journal of Central South University》 SCIE EI CAS CSCD 2021年第3期848-865,共18页
To study the energy storage and dissipation characteristics of deep rock under two-dimensional compression with constant confining pressure,the single cyclic loading-unloading two-dimensional compression tests were pe... To study the energy storage and dissipation characteristics of deep rock under two-dimensional compression with constant confining pressure,the single cyclic loading-unloading two-dimensional compression tests were performed on granite specimens with two height-to-width(H/W)ratios under five confining pressures.Three energy density parameters(input energy density,elastic energy density and dissipated energy density)in the axial and lateral directions of granite specimens under different confining pressures were calculated using the area integral method.The experimental results show that,for the specimens with a specific H/W ratio,these three energy density parameters in the axial and lateral directions increase nonlinearly with the confining pressure as quadratic polynomial functions.Under constant confining pressure compression,the linear energy storage law of granite specimens in the axial and lateral directions was founded.Using the linear energy storage law in different directions,the elastic energy density in various directions(axial elastic energy density,lateral elastic energy density and total elastic energy density)of granite under any specific confining pressures can be calculated.When the H/W ratio varies from 1:1 to 2:1,the lateral compression energy storage coefficient increases and the corresponding axial compression energy storage coefficient decreases,while the total compression energy storage coefficient is almost independent of the H/W ratio. 展开更多
关键词 rock mechanics two-dimensional compression linear energy storage law single cyclic loading-unloading height-to-width ratio
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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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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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Thermal properties in phase change wallboard room based on air conditioning cold storage
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作者 陈其针 刘鑫 +1 位作者 牛润萍 王琳 《Journal of Central South University》 SCIE EI CAS 2009年第S1期193-196,共4页
By comparing the thermal performance parameters of an ordinary wall room with a phase change wall (PCW) room,the effect of phase change wallboard on the fluctuation of temperature in air-conditioning room in summer wa... By comparing the thermal performance parameters of an ordinary wall room with a phase change wall (PCW) room,the effect of phase change wallboard on the fluctuation of temperature in air-conditioning room in summer was studied. And PCW room and an ordinary wall room,which are cooled by air-conditioner,were built up. Differential scanning calorimetry (DSC) was used to test the temperature field and heat flow fluctuation in these rooms. Through analyzing the data tested,it is found that the mean temperature of PCW is lower than that of ordinary wall room by 1-2 ℃,and PCW can lower the heat flow by 4.6 W/m2. Combining phase change material to building envelope can lower the indoor temperature,make the room thermal comfortable,and cut down the turn-on-and-off frequency of air-conditioner,the primary investment and operating costs. It alleviates urgent need of the electric power. Building envelope which contains phase change wallboard can improve the indoor thermal environment,and decrease energy consumption in buildings. Phase change wallboard can make impressive effect on energy efficiency of buildings. 展开更多
关键词 PHASE CHANGE energy storage PHASE CHANGE WALLBOARD ROOM indoor air temperature COOL storage
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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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Study, development and related application of a miniature compact pulsed power supply with high repetition frequency
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作者 Zhangfei Wang Jian Liu +1 位作者 Chunxia Yang Baoming Li 《Defence Technology(防务技术)》 2025年第5期304-318,共15页
Capacitor-based pulsed power supply(PPS)is widely used in fields related to electromagnetic launch,plasma,and materials'synthesis,modification and processing.As industrial applications place higher requirements on... Capacitor-based pulsed power supply(PPS)is widely used in fields related to electromagnetic launch,plasma,and materials'synthesis,modification and processing.As industrial applications place higher requirements on compact and portable pulsed power supplies,the National Key Laboratory of Transient Physics(NKLTP)recently developed a pulsed power supply consisting of a set of compact pulse-forming units(PFU),each with a capacitor energy storage of 220 kJ.This integrated PPS comes with a complete system configuration,a miniature compact structure,a high rate of repetition,and high power,with energy storage density exceeding 1.2 MJ/m^(3).This paper describes the device-level design of the unit,the system layout,the control system,the thermal management system,and the experimental results of the pulsed power supply.The experimental results verified the good reliability of the PPS at high repetition rates with each unit module delivering an output current of more than 100 kA.Additionally,flexible current pulse shapes can be formed by setting the charging voltage and the trigger sequence of the PFUs.The pulse forming network(PFN)developed from these PFUs was successfully applied to electromagnetic launch. 展开更多
关键词 Electromagnetic railgun Pulsed power supply energy storage density thermal management system Precision control system
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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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压缩空气储能电站地下内衬硐库基本原理与分析方法研究进展 被引量:4
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作者 孙冠华 王娇 +5 位作者 于显杨 易琪 朱开源 王章星 耿璇 屈杰 《岩土力学》 北大核心 2025年第1期1-25,共25页
地下内衬硐库的压缩空气储能,以其发电时间长、规模大、建设周期短、选址灵活、工程造价低、运行周期长、环境友好等优势,在新型储能领域展现了较强的生命力,将有力地促进新型电力系统的构建和新能源的高质量发展。与传统地下空间的运... 地下内衬硐库的压缩空气储能,以其发电时间长、规模大、建设周期短、选址灵活、工程造价低、运行周期长、环境友好等优势,在新型储能领域展现了较强的生命力,将有力地促进新型电力系统的构建和新能源的高质量发展。与传统地下空间的运行特点有较大不同,在充放气过程中,储备有压缩空气的地下内衬硐库不仅需要承受交变高内压膨胀压力,同时伴随着显著的温度变化。围绕地下内衬硐库,阐述了其工作原理以及柔性密封结构的设计理念,针对高压、交变应力和温度变化等荷载特征,系统分析了地下内衬硐库相关理论与分析方法等方面的研究进展,主要包括库内温压响应与密封结构传热特性、围岩应力路径与力学响应、钢筋混凝土衬砌开裂与控制标准、上覆岩体稳定性与安全埋深、密封层及密封堵头等,并对地下内衬硐库基本原理与分析方法的发展趋势进行了展望。 展开更多
关键词 压缩空气储能 岩石内衬硐库 分析方法
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基于共享储能服务的智能楼宇双层优化配置 被引量:1
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作者 张浩鹏 李泽宁 +3 位作者 薛屹洵 常馨月 苏珈 孙宏斌 《中国电机工程学报》 北大核心 2025年第3期899-910,I0008,共13页
为降低城市化进程中楼宇储能投资成本,提出一种基于共享储能服务的智能楼宇(intelligent buildings,IBs)双层优化配置方法。首先,建立计及寿命周期的共享储能电站(shared energy storage station,SESS)模型;其次,基于楼宇建筑物热惯性,... 为降低城市化进程中楼宇储能投资成本,提出一种基于共享储能服务的智能楼宇(intelligent buildings,IBs)双层优化配置方法。首先,建立计及寿命周期的共享储能电站(shared energy storage station,SESS)模型;其次,基于楼宇建筑物热惯性,构建含空调系统的IBs数学模型;然后,综合考虑SESS与IBs的差异化利益诉求,建立基于SESS的IBs双层优化模型。上层模型目标函数旨在降低SESS的规划成本,下层模型目标函数旨在降低IBs的年运行成本,并采用卡罗需-库恩-塔克(Karush-Kuhn-Tucher,KKT)条件将原双层优化问题转换为单层混合整数线性规划问题进行求解。最后,以3个IBs社区的四季典型日为例,对比分析不同优化配置方法对于IBs运行和SESS配置结果的影响。结果表明,在满足IBs用户温度舒适性的同时,所提双层优化配置方法可充分满足SESS运营商与IBs的差异化利益诉求,实现双方的共赢。 展开更多
关键词 空调 双层优化配置 建筑热惯性 智能楼宇 共享储能
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废弃矿井压缩空气储能技术研究现状与新设计构想
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作者 王汉鹏 武允昊 +5 位作者 张冰 范建国 李梦天 隋建才 王伟 孙德康 《煤炭科学技术》 北大核心 2025年第4期29-44,共16页
压缩空气储能(Compressed Air Energy Storage,CAES)可广泛应用于电网削峰填谷和大规模新能源消纳,具有装机容量大、使用寿命长、清洁环保等优点,被视为最有前途的大规模储能技术之一。目前国内外主要依托层状盐穴或盐丘来建设CAES储气... 压缩空气储能(Compressed Air Energy Storage,CAES)可广泛应用于电网削峰填谷和大规模新能源消纳,具有装机容量大、使用寿命长、清洁环保等优点,被视为最有前途的大规模储能技术之一。目前国内外主要依托层状盐穴或盐丘来建设CAES储气库,但由于选址条件苛刻等原因,CAES产业的发展受到了极大限制。近年来,随着国内矿井的大量关闭,许多地下空间资源被浪费,因此利用废弃矿井建设CAES电站就具有了巨大的生态经济效益与广袤的发展前景。因此,系统梳理了CAES各类储气库建设现状与优缺点,总结了废弃矿井CAES储气库的建设与选址要求,分析了当前废弃矿井CAES储气库面临的安全风险与限制瓶颈。为避免CAES储气库建设与运营过程中存在的安全风险,提出了新的储气库建设方案——管道布设型废弃矿井储气库(利用大直径无缝钢管作为储气空间,缝隙内填充松散充填体进行承压),与传统储气库建设方案相比,该方案具有以下优势:极大降低了储气库对矿区地质构造、围岩渗透性、围岩稳定性等条件的选址要求,增加了选址范围;可利用现有管道施工工艺与技术装备,降低储气库建设难度;提高了储气库的密封性能,保障无气体泄漏风险;改善了围岩应力环境,提高了储气库稳定性;避免储气库受腐蚀影响,增加了储气库的耐久性能。最后以鄂庄废弃煤矿为例,给出了管道布设型储气库改造建设方案,储气库改造建设完成后,总容积可达4.5×105 m3,发电功率可达400 MW,可产生良好的经济效益。管道布设型废弃矿井储气库设计构想为废弃矿井CAES技术发展提供了新思路,具有大规模推广应用的潜力。 展开更多
关键词 废弃矿井 地下空间利用 压缩空气储能 储气库 管道
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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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团粒膨润土振动密实性与恒刚度约束膨胀行为
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作者 谈云志 吴克宇 +1 位作者 明华军 孙德安 《岩土力学》 北大核心 2025年第8期2399-2408,共10页
压缩空气地下储能是实现大规模物理储能的理想方式,关键是要保证地下储气库长期气密性,据此,提出用膨润土-薄钢板构建复合密封层的概念。为验证利用膨润土辅助构建密封层的可行性,开展膨润土团粒振实试验与恒刚度膨胀试验。结果表明:由... 压缩空气地下储能是实现大规模物理储能的理想方式,关键是要保证地下储气库长期气密性,据此,提出用膨润土-薄钢板构建复合密封层的概念。为验证利用膨润土辅助构建密封层的可行性,开展膨润土团粒振实试验与恒刚度膨胀试验。结果表明:由膨润土通过压实再破碎形成不同尺寸团粒,团粒按比例重新组合成混合物,经过振动210 s后达到稳定密实状态;以最大尺寸5 mm的团粒为例,依据Andreasen公式,取级配指数n=0.5时混合,其振动堆积密度最大可达1.35 g/cm^(3);所有双粒组团粒混合物,粗粒组含量70%时达到最大振动堆积密度,基于等粒径团粒堆积状态理论解释了该现象的原因。膨润土团粒振动离析会降低堆积均匀度,但水化膨胀蠕动后,能挤密充填团粒间的大孔隙,调整了密实度的整体均匀性,保证薄钢板与围岩的均匀受力。恒刚度约束下膨润土的膨胀变形释放了部分膨胀潜势,剩余膨胀潜势以剩余膨胀力形式展现,建立了恒刚度约束下剩余膨胀力与膨胀变形率关系,可为构建膨润土-薄钢板复合密封层提供设计参考依据,避免薄钢板发生屈曲变形破坏。 展开更多
关键词 压气储能 团粒膨润土 振动密实 恒刚度 膨胀行为
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污泥焚烧灰渣/硝酸钾复合相变材料传热储热性能强化
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作者 熊亚选 高梓靖 +5 位作者 张艾桐露 钱向瑶 宋超宇 何苗 吴玉庭 丁玉龙 《热力发电》 北大核心 2025年第7期127-134,共8页
工业生产及城市居民生活产生大量污水污泥,污泥的填埋严重破坏生态环境。为大规模消纳市政污泥,变废为宝,将其制备成低碳低成本储热材料,提出添加碳化硅、氮化硼和膨胀石墨为导热增强剂,以强化污泥焚烧灰渣/硝酸钾复合相变储热材料(50%... 工业生产及城市居民生活产生大量污水污泥,污泥的填埋严重破坏生态环境。为大规模消纳市政污泥,变废为宝,将其制备成低碳低成本储热材料,提出添加碳化硅、氮化硼和膨胀石墨为导热增强剂,以强化污泥焚烧灰渣/硝酸钾复合相变储热材料(50%污泥焚烧炉渣+50%硝酸钾)导热性能的思路。通过制备复合相变储热材料,研究导热增强剂对复合相变储热材料热性能的影响。结果表明:膨胀石墨不适合作为污泥焚烧灰渣/硝酸钾复合相变储热材料的导热增强剂;添加质量分数为2%的导热增强剂在熔化潜热改善方面是最优的,且添加氮化硼优于添加碳化硅;添加质量分数为2%氮化硼的样品的导热系数提升最为显著,在100~400℃时分别比样品SC3(不加导热增强剂)升高65%、93%、117%、203%;经历1000次加热/冷却循环后,氮化硼质量分数为2%的样品潜热为35.29 J/g,储热密度为292.1 J/g,碳化硅质量分数为2%的样品潜热为40.90 J/g,储热密度为334.9 J/g;碳化硅质量分数为2%的样品、氮化硼质量分数为2%的样品传热速率分别为0.16、0.17℃/s。研究结果初步证明碳化硅和氮化硼作为污泥焚烧灰渣/硝酸钾复合相变储热材料的导热增强剂是可行的。 展开更多
关键词 污泥焚烧灰渣 硝酸钾 复合相变储热材料 导热增强剂 储热性能 热稳定性
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分布式多联产压缩空气储能系统3E综合性能研究
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作者 翟璇 杨志 +3 位作者 罗方 张文挺 王楠 王江峰 《汽轮机技术》 北大核心 2025年第3期215-224,共10页
以分布式多联产压缩空气储能系统为研究对象,建立了储能系统各部件的数学模型,提出了系统热力学特性、经济性和环境性等的3E评价指标;分析了储气罐压力、储热水罐温度和季节温度变化对系统性能的影响,储热水罐温度的变化对系统热力学特... 以分布式多联产压缩空气储能系统为研究对象,建立了储能系统各部件的数学模型,提出了系统热力学特性、经济性和环境性等的3E评价指标;分析了储气罐压力、储热水罐温度和季节温度变化对系统性能的影响,储热水罐温度的变化对系统热力学特性参数的影响相对较大,系统热力性能整体上冬季较好,春秋季居中,夏季最后;利用遗传算法对系统参数进行多目标优化分析,获得系统最优储能密度为50.68MJ/m 3,系统往返效率为54.56%,系统度电成本为1.045元/度。 展开更多
关键词 多联产 压缩空气储能 系统3E性能 多目标优化
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热管理策略对电池储能系统性能影响综述
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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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大容量压缩空气储能压缩和膨胀系统启动关键过程特性研究
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作者 张旭 李阳海 +4 位作者 王廷举 张彪 潘宏刚 孙力 王小亮 《可再生能源》 北大核心 2025年第3期316-323,共8页
为了正确掌握大容量压缩空气储能电站压缩和膨胀系统启动关键过程的特性,文章建立了300 MW级压缩空气储能电站的全工艺系统数学模型,定量分析了压缩和膨胀系统启动过程的关键参数变化规律和动态响应特性,包括压缩机的防喘操作、压缩机... 为了正确掌握大容量压缩空气储能电站压缩和膨胀系统启动关键过程的特性,文章建立了300 MW级压缩空气储能电站的全工艺系统数学模型,定量分析了压缩和膨胀系统启动过程的关键参数变化规律和动态响应特性,包括压缩机的防喘操作、压缩机组的变频1拖4启动、透平机组的全自动程启、透平的配气调节特性等。研究表明:合理的防喘策略可在保证机组安全的前提下提高启动过程中系统的效率;系统启动过程的精确评估可优化启动流程、缩短启机时间、提高系统效率,为机组的安全、高效启动提供数据参考和理论依据。 展开更多
关键词 大容量 压缩空气储能 启动关键过程 动态响应特性
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基于蓄能的户用光伏智能用电系统研究
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作者 刘俊红 孙楠 +2 位作者 陈斯 吴建恒 崔萍 《制冷学报》 北大核心 2025年第3期48-56,83,共10页
为增加户用光伏就地消纳能力,满足人们对生活居住环境舒适便捷的需求,提出一种能够满足家庭用电、冬季供暖、夏季制冷、全年生活热水供应需求的户用光伏智能用电系统,其中供暖制冷采用空气源热泵+地暖+风机盘管+蓄能水箱(冬蓄热水、夏... 为增加户用光伏就地消纳能力,满足人们对生活居住环境舒适便捷的需求,提出一种能够满足家庭用电、冬季供暖、夏季制冷、全年生活热水供应需求的户用光伏智能用电系统,其中供暖制冷采用空气源热泵+地暖+风机盘管+蓄能水箱(冬蓄热水、夏蓄冷水)的方式。以山东省某民宅为研究对象,建立了该系统的TRNSYS仿真模型,根据模拟结果和当地当时电价对蓄能运行方案进行优化,并分析了系统的经济性。结果表明:该系统在满足建筑全年用电和保证冬夏季室内温度的同时,还可获得光伏电上网收益,全生命周期内收益最高。空气源热泵最优运行方案为冬季09:00—16:00、22:00—05:00工作,夏季07:00—18:00、22:00—05:00工作;可控型电器在10:00—16:00使用,有储能性电器在11:00—14:00使用,可进一步消储光伏电。蓄能水箱比无水箱时减少46%耗标煤量,节能效果显著。 展开更多
关键词 光伏 空气源热泵 消纳 蓄能
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基于改进变分模态分解的飞轮储能辅助火电二次调频控制策略
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作者 王玮 赵俊杰 +1 位作者 高嵩 房方 《动力工程学报》 北大核心 2025年第7期1052-1062,共11页
飞轮储能辅助调频是改善火电机组调频性能和运行稳定性的有效方案之一。为提升飞轮储能参与二次调频的综合性能,提出了一种基于变模态分解改进鲸群优化算法的飞轮辅助火电机组二次调频协同控制策略。首先,基于飞轮储能单元机侧和网侧控... 飞轮储能辅助调频是改善火电机组调频性能和运行稳定性的有效方案之一。为提升飞轮储能参与二次调频的综合性能,提出了一种基于变模态分解改进鲸群优化算法的飞轮辅助火电机组二次调频协同控制策略。首先,基于飞轮储能单元机侧和网侧控制机理,建立了适配1 000 MW超超临界火电机组的飞轮储能阵列控制系统模型,以及飞轮储能系统与超超临界机组协同控制的二次调频模型;其次,提出了基于鲸群优化算法的改进变模态分解方法,实现了火电机组和飞轮系统响应自动发电控制(AGC)指令的优化分配;最后,针对分配结果设计了一种提升飞轮系统荷电状态(SOC)充放电裕度的控制策略,发展了综合考虑调频性能和飞轮可靠性的飞轮辅助火电二次调频控制策略。结果表明:所提控制策略在减弱飞轮储能SOC和火电机组主蒸汽压力波动的同时,可使机组的AGC性能考核指标提升16.72%。 展开更多
关键词 火电机组 飞轮储能 二次调频 AGC指令 鲸鱼优化算法 变分模态分解
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