期刊文献+
共找到389篇文章
< 1 2 20 >
每页显示 20 50 100
Experimental Study of a Solar Thermal Incubator Using a Phase-Change Material for Off-Grid Use
1
作者 Yéouélé Thio Bati Ernest Boya Bi +1 位作者 Ekoun Paul Magloire Koffi Prosper Gbaha 《Open Journal of Applied Sciences》 2024年第9期2471-2481,共11页
The aim of this study was to provide a simple, easy-to-use incubation system for small-scale rural poultry farmers far from the electricity grid. To this end, a naturally ventilated solar thermal incubator was built a... The aim of this study was to provide a simple, easy-to-use incubation system for small-scale rural poultry farmers far from the electricity grid. To this end, a naturally ventilated solar thermal incubator was built and experimentally tested. A U-shaped evacuated tube collector and a wooden crate holding 50 eggs were used to build the solar thermal incubator. Water was used as the heat transfer fluid, and an EPCM was integrated into the incubation chamber for operation at night or when the sun was hidden. The heat generated by the solar collector and stored in the heat transfer fluid is transported to the incubation chamber by thermosiphon to heat the chamber. Temperature and humidity probes powered by a solar panel were placed at various locations to monitor the thermo-hygrometric efficiency of the incubation system. The incubator, heated by natural convection, proved to function normally, and the incubation chamber was maintained throughout the incubation period within a temperature range of 35.53˚C to 39.53˚C and relative humidity averaging 49.4% to 68.5%. The experiment was carried out by introducing 30 eggs and the results of the experimental study showed that the incubator’s efficiency was 87%. The performance tests gave a fertility rate of 93% and a hatching rate of 93%, i.e. 28 fertile eggs and 26 hatched eggs, respectively. 展开更多
关键词 solar Incubator Vacuum tube Collector Encapsulated PCM Poultry Eggs
下载PDF
Experiment and numerical simulation on flow and heat transfer in all-glass evacuated tube solar collectors
2
作者 张涛 韩吉田 +2 位作者 陈常念 孔令健 刘洋 《Journal of Southeast University(English Edition)》 EI CAS 2016年第4期489-495,共7页
The experimental study of natural convection in allglass evacuated tube solar collectors is performed through the experimental platform of the solar-assisted fuel cell system.The experimental facility includes solar c... The experimental study of natural convection in allglass evacuated tube solar collectors is performed through the experimental platform of the solar-assisted fuel cell system.The experimental facility includes solar collectors with different length and diameter tubes, different coating materials, and with / without guide plates, respectively. Threedimensional mathematical models on natural and forced convections in the solar collectors are established and the experimental data is validated by field synergy and entransy principles. The results of natural convection show that the water temperature increases and thermal efficiency decreases gradually with the evacuated tube length. The thermal efficiency increases when absorption rates increase from 0. 95 to 1. 0 and emission rates decrease from 0. 16 to 0. 06. The thermal efficiency of solar collectors is increased after being equipped with the guide plate, which is attributed to the disappearance of the mixed flowand the enhancement of the heat transfer at the bottom of the evacuated tube. The results of forced convertion indicate that the Reynolds, Nusselt and entransy increments of the horizontal double collectors are higher than those of the vertical single collector while the entransy dissipation is lower than that of the vertical single collector. It is concluded that the solar collectors with guide plates are suitable for natural convection while the double horizontal collectors are suitable for forced convection in the thermal field of solar-assisted fuel cell systems with lowand medium temperatures. 展开更多
关键词 all-glass evacuated tube solar collectors the solar-assisted fuel cells field synergy principle entransy dissipation
下载PDF
In-Situ Preparation and Thermal Shock Resistance of Mullite-Cordierite Heat Tube Material for Solar Thermal Power 被引量:6
3
作者 徐晓虹 MA Xionghua +3 位作者 WU Jianfeng CHEN Ling XU Tao ZHANG Mengqi 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2013年第3期407-412,共6页
In order to improve the thermal shock resistance of solar thermal heat transfer tube material, the mullite-cordierite composite ceramic as solar thermal heat transfer tube material were fabricated by pressureless sint... In order to improve the thermal shock resistance of solar thermal heat transfer tube material, the mullite-cordierite composite ceramic as solar thermal heat transfer tube material were fabricated by pressureless sintering using a-Al203, Suzhou kaolin, talc, and feldspar as starting materials. The important parameter for solar thermal transfer tube such as water absorption (W), bulk density (Db), and the mechanical properties were investigated. The phase composition and microstructure of the composite ceramics were analyzed by XRD and SEM. The experimental results show that the B3 sintered at 1 300 ℃ and holding for 3 h has an optimum thermal shock resistance. The bending strength loss rate of B3 is only 2% at 1 100℃ by air quenching-strength test and the sample can endure 30 times thermal shock cycling, and the water absorption, the bulk density and the bending strength are 0.32%, 2.58 g·cm-3, and 125.59 MPa respectively. The XRD analysis indicated that the phase compositions of the sample were mullite, cordierite, corundum, and spinel. The SEM images illustrate that the cordierite is prismatic grain and the mullite is nano rod, showing a good thermal shock resistance for composite ceramics as potential solar thermal power material. 展开更多
关键词 solar thermal power generation heat transfer tube MULLITE-CORDIERITE composite ceramic
下载PDF
Performance of Water in Glass Evacuated Tube Solar Water Heater under Kenya Climatic Condition
4
作者 Ernest Kyekyere Hiram Ndiritu +1 位作者 Meshack Hawi Polline Mwambe 《Computational Water, Energy, and Environmental Engineering》 2021年第2期37-48,共12页
Solar water heaters which provide a cost-effective and environmental friendly approach to hot water generation are in widespread application. Evacuated tube solar water heaters perform better than flat plate solar wat... Solar water heaters which provide a cost-effective and environmental friendly approach to hot water generation are in widespread application. Evacuated tube solar water heaters perform better than flat plate solar water heaters as a result of their greater surface area exposed for sunlight absorption. Water-in-glass evacuated tube solar water heaters are widely used as compared to heat-pipe solar water heaters due to their short payback periods. In this study, the performance of water-in-glass evacuated tube solar water heater is investigated through experiments under the climatic conditions in Kenya. The results revealed a daily efficiency range of 0.58 - 0.65 and a daily final outlet temperature greater than 55<span style="white-space:normal;">°</span>C given an initial temperature of 25°C. 展开更多
关键词 solar Water Heater Water-in-Glass Evacuated tube solar Collector solar Irradiation
下载PDF
Enhanced efficiency in Concentrated Parabolic Solar Collector(CPSC) with a porous absorber tube filled with metal nanoparticle suspension
5
作者 Mohammad Hatami Jiafeng Geng Dengwei Jing 《Green Energy & Environment》 SCIE 2018年第2期129-137,共9页
In this study, effects of different nanoparticles and porosity of absorber tube on the performance of a Concentrating Parabolic Solar Collector(CPSC) were investigated. A section of porous-filled absorber tube was mod... In this study, effects of different nanoparticles and porosity of absorber tube on the performance of a Concentrating Parabolic Solar Collector(CPSC) were investigated. A section of porous-filled absorber tube was modeled as a semi-circular cavity under the solar radiation which is filled by nanofluids and the governing equations were solved by FlexPDE numerical software. The effect of four physical parameters, nanoparticles type, nanoparticles volume fraction(φ), Darcy number(Da) and Rayleigh number(Ra), on the Nusselt number(Nu) was discussed. It turns out that Cu nanoparticle is the most suitable one for such solar collectors, compared to the commonly used Fe_3O_4, Al_2O_3, TiO_2.With the increased addition of Cu nanoparticles all the parameters φ, Da and Ra shows a significant increase against the Nu, indicates the enhanced heat transfer in such cases. As a result, low concentration of Cu nanoparticle suspension combined with porous matrix was supposed to be beneficial for the performance enhancement of concentrating parabolic solar collector. 展开更多
关键词 Concentrating parabolic solar collector Porous absorber tube NANOFLUID Nusselt number Finite Element Method
下载PDF
CdHgTe Quantum Dots Sensitized Solar Cell with Using of Titanium Dioxide Nanotubes
6
作者 M. Y. Feteha M. Ameen 《Journal of Power and Energy Engineering》 2013年第5期67-72,共6页
The sensitization of TiO2 nanotubes with CdHgTe quantum dots (QDs) was applied by using the direct dispersion technique. The CdHgTe-QDs were fabricated with different Hg% ratio in organic medium for controlling their ... The sensitization of TiO2 nanotubes with CdHgTe quantum dots (QDs) was applied by using the direct dispersion technique. The CdHgTe-QDs were fabricated with different Hg% ratio in organic medium for controlling their particle size. While TiO2 nanotubes (NTs) were fabricated by anodization technique. The QDs and NTs were characterized using SEM, TEM and UV-VIS spectrophotometer. In this work, the photovoltaic parameters of the quantum dots sensitized solar cell (QDSSC) depend mainly on the Hg% ratio in the QDs. The most efficient QDSSC was obtained at 25% of Hg ratio with Jsc of 4 mA/cm2, Voc of 0.63 V, FF of 0.32 and efficiency of 0.81%. 展开更多
关键词 solar Cells QUANTUM DOTS Nano-tubes TiO2 SENSITIZATION
下载PDF
全玻璃真空太阳集热管关键技术参数研究进展
7
作者 丁祥 高文峰 +1 位作者 张有刚 李琼 《真空科学与技术学报》 CAS CSCD 北大核心 2024年第2期101-109,共9页
全玻璃真空太阳集热管是太阳能热利用系统的重要组成部分,其性能参数的优劣直接影响到太阳能热利用系统的热性能、耐久可靠性和节能效果。文章从真空管基本结构和工作原理的介绍出发,对影响真空管性能的光学性能、热性能等关键技术参数... 全玻璃真空太阳集热管是太阳能热利用系统的重要组成部分,其性能参数的优劣直接影响到太阳能热利用系统的热性能、耐久可靠性和节能效果。文章从真空管基本结构和工作原理的介绍出发,对影响真空管性能的光学性能、热性能等关键技术参数及玻璃管材料、真空性能等其他技术要求的研究进展做了详细分析,并在长期从事科研和检测工作的基础上,给出了提升真空管的产品性能可从玻璃管生产优化、新涂层开发、真空性能加强、技术创新、先进设备开发、标准修订等方面的建议。 展开更多
关键词 全玻璃真空太阳集热管 太阳选择性吸收涂层 光学性能 热性能
下载PDF
矩形翅片管糖醇相变储热器传热性能分析 被引量:1
8
作者 程昊天 贺明飞 +3 位作者 原郭丰 王艳 高蓬辉 王志峰 《太阳能学报》 EI CAS CSCD 北大核心 2024年第2期244-250,共7页
对糖醇基矩形翅片管相变储热器传热性能进行数值模拟与实验研究,利用数值模型研究传热流体入口温度、流量以及储热器翅片间距、管间距等参数对充放热性能的影响。研究表明:从运行参数看,由于相变材料导热系数的影响,翅片强化区外流体入... 对糖醇基矩形翅片管相变储热器传热性能进行数值模拟与实验研究,利用数值模型研究传热流体入口温度、流量以及储热器翅片间距、管间距等参数对充放热性能的影响。研究表明:从运行参数看,由于相变材料导热系数的影响,翅片强化区外流体入口温度与材料相变温度的温差对充放热速率呈正相关;在管内湍流条件下,管内流速在高于0.53 m/s时,不能显著提升储热器的充放热速率;从结构参数看,增加翅片可显著提升翅片区内充放热速率,翅片间距小于10 mm和管间距小于52.5 mm对充放热速率影响不明显。 展开更多
关键词 相变储热 共晶糖醇 数值模拟 太阳能建筑 翅片管储热器
下载PDF
级联型潜热储存耦合热泵系统性能研究
9
作者 田磊 王江江 +1 位作者 赵磊 魏长祺 《太阳能学报》 EI CAS CSCD 北大核心 2024年第3期571-578,共8页
为提高太阳能利用率和热泵热力学性能,将真空管集热器、热泵和填充床等结合,提出一种级联型潜热储存耦合热泵系统用于建筑供热。针对太阳能集热及室外温度等条件,将太阳能蓄热和室外空气作为热泵的热源进行系统集成设计。在FLUENT和EES... 为提高太阳能利用率和热泵热力学性能,将真空管集热器、热泵和填充床等结合,提出一种级联型潜热储存耦合热泵系统用于建筑供热。针对太阳能集热及室外温度等条件,将太阳能蓄热和室外空气作为热泵的热源进行系统集成设计。在FLUENT和EES中分别建立填充床和热泵的热力学模型,并分析填充床的换热流体流量、放热温度和用户回水温度对系统热力性能的影响。结果表明,填充床流体流量从0.05 kg/s增至0.07 kg/s时,热泵系统整体平均性能指数下降0.16;填充床作为热源的放热温度升高20℃时,填充床供热增加74269 kJ,有效放热率下降21.9%;当用户回水温度升高10℃时,热泵系统整体平均性能指数下降0.19,有效放热率下降16.2%。 展开更多
关键词 供热 相变材料 热泵 真空管集热器 热力性能
下载PDF
U型管式相变蓄热真空太阳集热管结构优化与性能分析
10
作者 刘仙萍 王晔 +2 位作者 雷豫豪 阎达仁 韩巧云 《太阳能学报》 EI CAS CSCD 北大核心 2024年第9期451-457,共7页
为提高相变蓄热真空太阳能集热器的热性能,针对相变填充材料固态时传热性能低、集热管释热效率低等问题,提出一种新型的带有一体化轴向双翼翅片结构的U型管式相变蓄热真空太阳集热管结构,分析在不同质量流量运行工况下翅片主要结构参数... 为提高相变蓄热真空太阳能集热器的热性能,针对相变填充材料固态时传热性能低、集热管释热效率低等问题,提出一种新型的带有一体化轴向双翼翅片结构的U型管式相变蓄热真空太阳集热管结构,分析在不同质量流量运行工况下翅片主要结构参数对集热管释热和蓄热性能的影响,得出最佳的翅片结构参数,并与两种传统结构的集热管性能进行对比分析。结果表明:对于外径为58 mm的玻璃真空太阳集热管,采用复合相变填充材料Na_(2)SO_(4)·10H_(2)O+石墨(质量比92%∶8%)时,释热和蓄热性能最佳的翅片结构参数是翅片长度/翅片夹角为17 mm/60°;该最佳翅片结构能显著强化集热管内的传热性能,使集热管内相变填充材料的温度均匀性更好,使新型U型管式相变蓄热真空太阳集热管相较于圆翅片、无翅片结构形式的集热管,释热量最高可分别提高6.4%和112.6%,释热效率最高可分别提高6.4%和117.4%。 展开更多
关键词 相变 蓄热 真空管太阳能集热器 真空太阳集热管 释热性能
下载PDF
太阳系天体熔岩管探测研究现状
11
作者 佘星阳 王江 +3 位作者 黄俊 赵健楠 赵佳伟 肖龙 《深空探测学报(中英文)》 CSCD 北大核心 2024年第4期313-327,M0001,M0002,共17页
由火山熔岩流动和冷却过程形成的熔岩管已经在太阳系多个天体表面被发现,成为了认识类地行星火山活动和热历史的窗口。同时,由于熔岩管内部具有恒温和防辐射的特点,也是未来人类探测活动或地外生存的天然庇护所,因此具有极为重要的科学... 由火山熔岩流动和冷却过程形成的熔岩管已经在太阳系多个天体表面被发现,成为了认识类地行星火山活动和热历史的窗口。同时,由于熔岩管内部具有恒温和防辐射的特点,也是未来人类探测活动或地外生存的天然庇护所,因此具有极为重要的科学和工程应用价值。总结了熔岩管的形成机制、探测和识别方法,月球和火星等太阳系不同天体表面熔岩管的分布,探讨了熔岩管探测的科学意义和应用前景,提出地球熔岩管是开展行星熔岩管类比研究和探测的重要对象,并进而介绍了熔岩管类比研究的理论和方法,为未来地外熔岩管的探测提供理论依据和模拟实验支撑。 展开更多
关键词 熔岩管 火山活动 太阳系 行星探测
下载PDF
太阳能真空集热管热损分析与试验研究
12
作者 顾金铭 纪国剑 +1 位作者 陈志 王政伟 《工业安全与环保》 2024年第4期102-106,共5页
基于热平衡法提出了一种动态热平衡热损计算方法,并进行了验证,同时分析了环境温度、进口温度、流量对真空集热管热损的影响。结果表明,热损随着环境温度的降低、进口熔盐温度的升高和熔盐质量流量的降低而增大;当辐照强度在700 W/m2以... 基于热平衡法提出了一种动态热平衡热损计算方法,并进行了验证,同时分析了环境温度、进口温度、流量对真空集热管热损的影响。结果表明,热损随着环境温度的降低、进口熔盐温度的升高和熔盐质量流量的降低而增大;当辐照强度在700 W/m2以上时,真空集热管获得的热量大于热损并能稳定工作,说明槽式光热电站在东南沿海等太阳能资源相对不足的地区有一定的适用性。 展开更多
关键词 太阳能真空集热管 对流传热 辐射传热 热损计算
下载PDF
新型槽式太阳能真空吸热管设计方法及其光学性能研究
13
作者 余强 单文玺 +1 位作者 李自豪 雷东强 《可再生能源》 CAS CSCD 北大核心 2024年第1期30-37,共8页
针对传统槽式太阳能集热系统工质运行温度受限,以及真空吸热管表面能流密度分布不均而引起的热应力过大等问题,文章在不改变聚光器结构的条件下,提出了一种新型的槽式太阳能真空吸热管的设计方法,通过减小金属内管直径、下移金属内管位... 针对传统槽式太阳能集热系统工质运行温度受限,以及真空吸热管表面能流密度分布不均而引起的热应力过大等问题,文章在不改变聚光器结构的条件下,提出了一种新型的槽式太阳能真空吸热管的设计方法,通过减小金属内管直径、下移金属内管位置以及在金属内管上方加装双曲线型二次聚光器来提高太阳能聚光比,改善了金属吸热管表面能流密度分布。利用仿真计算方法研究了新型槽式太阳能真空吸热管的光学性能,结果表明:和传统槽式太阳能真空吸热管相比,该新型结构在仅损失1.88%光学效率的情况下将聚光比从62 kW/m^(2)提升至71 kW/m^(2);能流密度分布均匀度改善了55.05%,提升了聚光-吸热系统的整体性能。 展开更多
关键词 槽式太阳能集热器 真空吸热管 聚光比 能流密度分布 光学效率
下载PDF
内聚焦真空管集热器热泵系统实验研究及分析
14
作者 扶星雨 胡晓微 +2 位作者 董胜明 石晨阳 靳茗森 《节能技术》 CAS 2024年第3期284-288,F0003,共6页
本文提出了一种集热蒸发器为内聚焦真空管的直膨式太阳能热泵来提升系统性能,并搭建实验台获取实验数据,深入研究不同工况下系统的热力学性能。结果表明,太阳辐照强度对系统性能影响显著,当太阳辐照强度由400 W/m^(2)上升到800 W/m^(2)... 本文提出了一种集热蒸发器为内聚焦真空管的直膨式太阳能热泵来提升系统性能,并搭建实验台获取实验数据,深入研究不同工况下系统的热力学性能。结果表明,太阳辐照强度对系统性能影响显著,当太阳辐照强度由400 W/m^(2)上升到800 W/m^(2)时,系统COP由4.18升至5.34,集热效率由0.94降至0.67,此时系统损由1175.33 W升高到2290.27 W,系统效率由16.82%下降到11.99%,此外循环水入水温度和环境温度对系统的性能影响远小于太阳辐照强度。集热蒸发器是系统从太阳辐射获取能量的部件,对它的设计优化将有助于改善系统性能。 展开更多
关键词 太阳能 全玻璃真空管 COP 集热效率
下载PDF
全玻璃真空管型太阳能热水器在嘉兴地区节能量与减排量分析
15
作者 凌德力 韩雷涛 +2 位作者 沈斌 杭创明 袁逸中 《云南师范大学学报(自然科学版)》 2024年第4期6-9,共4页
为评估太阳能热水器对“双碳”战略的贡献,减少对化石燃料的依赖,推动能源结构的优化和转型升级,在嘉兴地区通过对全玻璃真空管型太阳能热水器在实际使用工况下进行热性能测试分析.试验结果表明:在实际使用工况下,环境温度和辐照量是影... 为评估太阳能热水器对“双碳”战略的贡献,减少对化石燃料的依赖,推动能源结构的优化和转型升级,在嘉兴地区通过对全玻璃真空管型太阳能热水器在实际使用工况下进行热性能测试分析.试验结果表明:在实际使用工况下,环境温度和辐照量是影响太阳能热水器日有用得热量的重要因素;78和75管间距的年节能量分别为451.87 kWh/(m^(2)·a)、467.46 kWh/(m^(2)·a),CO_(2)年减排量分别为338.9 kg/(m^(2)·a)、350.6 kg/(m^(2)·a),经估算2021年太阳能光热利用CO_(2)减排量约占全国碳排放总量的12.6%. 展开更多
关键词 双碳 全玻璃真空管型太阳能热水器 实际使用工况 节能量 减排量
下载PDF
内插式真空管集热器集热性能提升技术研究综述
16
作者 田宇 赵笑言 +3 位作者 史建军 荣志强 董知非 姜鑫 《沈阳工程学院学报(自然科学版)》 2024年第1期23-27,共5页
真空管太阳能集热器是太阳能热利用的重要途径。内插式真空管集热器是一种结构优化后的真空管集热器,为提升其集热性能,介绍了内插式真空管集热器的工作原理,对其传热机理进行了分析,归纳了当前对内插式真空管集热器的集热性能的研究现... 真空管太阳能集热器是太阳能热利用的重要途径。内插式真空管集热器是一种结构优化后的真空管集热器,为提升其集热性能,介绍了内插式真空管集热器的工作原理,对其传热机理进行了分析,归纳了当前对内插式真空管集热器的集热性能的研究现状,并在此基础上通过建立集热效率关于环境参数及流量的关联式、改进内插管主管和支管管径尺寸、综合优化集热器布置方式及管间距并设置反射板的方式等方法分析了存在的问题,为低成本、高效率的内插式真空管集热器的研究发展提供了参考依据。 展开更多
关键词 内插式 真空管集热器 集热性能
下载PDF
管式PECVD工艺对“SE+PERC”晶体硅太阳电池镀膜均匀性的影响及改善研究
17
作者 张福庆 张若凡 +2 位作者 王贵梅 胡明强 张鹏程 《太阳能》 2024年第6期41-50,共10页
针对在“SE+PERC”晶体硅太阳电池制备过程中,采用管式等离子体增强化学气相沉积(PECVD)工艺沉积正面钝化介质膜后,硅片正面会出现角部发红色差,即镀膜均匀性异常的问题,通过实验,对硅片厚度、工器具状态、背面膜层结构、正面钝化介质... 针对在“SE+PERC”晶体硅太阳电池制备过程中,采用管式等离子体增强化学气相沉积(PECVD)工艺沉积正面钝化介质膜后,硅片正面会出现角部发红色差,即镀膜均匀性异常的问题,通过实验,对硅片厚度、工器具状态、背面膜层结构、正面钝化介质膜沉积工艺等影响因素对硅片正面角部发红色差的影响分别进行分析和讨论,并提出解决方案。研究结果表明:硅片正面角部发红色差的产生与硅片自身厚度、工器具状态、背面膜层结构、正面钝化介质膜沉积工艺均存在一定关系。通过采用最具优势的管式PECVD工艺条件,即优化自动化装片技术、控制石墨舟形变量、采用合适的背面膜层结构,以及正面钝化介质膜沉积工艺采用高射频功率叠加高腔体压力,可将正面角部发红色差硅片的占比降低至0%,从而可有效提升“SE+PERC”晶体硅太阳电池的成品率,提升生产线的经济效益。 展开更多
关键词 管式等离子体增强化学气相沉积 “SE+PERC”太阳电池 硅片 沉积工艺 薄膜应力 石墨舟 射频功率 色差
下载PDF
Study of the Solar Energy Drying Device and Its Application in Traditional Chinese Medicine in Drying 被引量:1
18
作者 Mingle Liu Shuangyan Wang Kerong Li 《International Journal of Clinical Medicine》 2015年第4期271-280,共10页
Background: We referred to nearly 40 years of development and application progress of solar dryer in China literature, especially its application in the field of Chinese herbal medicine drying. Objective: We explored ... Background: We referred to nearly 40 years of development and application progress of solar dryer in China literature, especially its application in the field of Chinese herbal medicine drying. Objective: We explored the development direction of China’s development and application of solar dryers, especially focusing on its development and application in traditional Chinese medicine drying. Method: Five types of solar dryers including the greenhouse type solar dryer, the collector type solar dryer, the collector-greenhouse type hybrid solar dryer, the integrated solar dryer and the focusing type solar dryer accounted for the development and application of solar dryers up to 95% in China. The first three types of solar dryers are low temperature dryer (less than or equal to 70°C), while the latter two kinds of solar dryers are high temperature dryer (more than 70°C). In this paper, we respectively introduced and compared the structure, working principle, applications, advantages and disadvantages, and the research status of these five dryer. Results: The integrated solar dryer and the focusing type solar dryer belong to the high temperature dryer types are the future direction of development. Among them, the integrated solar dryer is relatively simple structure and has more promotion prospects. These two kinds of key drying device used in the dryer is the development direction of high efficient vacuum tube. On the other hand, because of their low cost, simple structure and the dry material requirements etc., the three types of low temperature dryers at low temperature for drying materials are also indispensable in the practical application. In contrast, the collector-greenhouse type hybrid solar dryer has more advantages, is the development direction of low temperature drying category. Conclusion: The collector tube which is the key element of the dryer was the core technology of solar dryer. Our country develops more successful of the all-glass vacuum solar thermal collectors and heat pipe-glass vacuum tube. Efficient vacuum tube collector technology is the future developed direction and is equally important to improve the quality of traditional Chinese medicine and dried. 展开更多
关键词 The solar Energy DRYING DEVICE Vacuum tube COLLECTOR Traditional Chinese MEDICINE DRYING
下载PDF
寒冷地区空气源热泵辅助太阳能热水器供暖性能 被引量:4
19
作者 李金平 董玉慧 +3 位作者 李彩军 代静波 牛轶男 NOVAKOVIC Vojislav 《上海交通大学学报》 EI CAS CSCD 北大核心 2023年第7期910-920,共11页
为提高太阳能热水器供暖的稳定性并大幅降低空气源热泵供暖的成本,提出空气源热泵辅助太阳能真空管热水器供暖构想,在甘肃省兰州市七里河区魏岭乡绿化村搭建空气源热泵辅助太阳能热水器供暖试验系统,详细研究了晴天、阴天及多云3种典型... 为提高太阳能热水器供暖的稳定性并大幅降低空气源热泵供暖的成本,提出空气源热泵辅助太阳能真空管热水器供暖构想,在甘肃省兰州市七里河区魏岭乡绿化村搭建空气源热泵辅助太阳能热水器供暖试验系统,详细研究了晴天、阴天及多云3种典型工况下系统的集热效率、热泵性能系数、系统太阳能保证率和系统能效比等.研究结果表明,晴天、阴天及多云工况下太阳能集热器有效得热量分别为75.5、4.1和49.2 kW·h,集热效率分别为61.3%、26.6%、55.2%,太阳能热泵平均性能系数(COP)分别为3.6、3.4、3.6,空气源热泵平均COP分别为0、2.9、3.1,系统实际供热量分别为113.4、125.9和124.8 kW·h,系统耗电量分别为33.4、50.5和42.7 kW·h,系统太阳能保证率分别为66.6%、3.3%、39.4%,系统能效比分别为3.4,2.5,2.9.研究证明了太阳能真空管集热器-空气源热泵系统用于寒冷地区供暖的可行性,为寒冷地区供暖提供了一种新途径. 展开更多
关键词 太阳能热水器 空气源热泵 集热效率 性能系数 系统太阳能保证率 系统能效比
下载PDF
Manufacturing and Thermal Performance Test of (Compound) Solar Collector in Damascus City
20
作者 Mohamad Sadek Jouhari Sinjar Touhmeh Nadeem Moukhayber 《Journal of Biomedical Science and Engineering》 2015年第6期370-379,共10页
Solar water collectors that uses for domestic and industrial applications within temperature up to, are classified under two main types: Flat Plate collector (FP), and Evacuated Tube collector (ET). Thermal performanc... Solar water collectors that uses for domestic and industrial applications within temperature up to, are classified under two main types: Flat Plate collector (FP), and Evacuated Tube collector (ET). Thermal performance test results showed that each type have different thermal features. Comparison between (FP & ET) collectors showed that they could take advantages of different thermal features of two types when they work in the same climatic conditions and overlap of these thermal features when they work in different operational conditions. They can take advantage of these features through (compound) solar collector. Compound solar water Collector (CO) composed of a part of flat plate collector shape (FP), and a part of evacuated tube collector shape (ET). Booth have equal reference area, and connected together to be as one Solar collector (CO). Water entered first flat part (FP), then evacuated tube part (ET) then to tank or end-use. In this paper, present design and manufacturing as well the thermal performance test of (compound) solar collector, according to Standard Specification of tests, was EN12975:2001. Mechanical test for (CO) collector conducted successfully according to durability, reliability, and safety requirements. In addition, thermal performance was tested in steady state at the climatic conditions of Damascus city, and concluded the thermal performance of (FP & ET) that constitute (CO) collector. The results showed enhancement of thermal performance. 展开更多
关键词 solar COLLECTOR COMPOUND COLLECTOR Evacuated tube COLLECTOR FLAT PLATE COLLECTOR
下载PDF
上一页 1 2 20 下一页 到第
使用帮助 返回顶部