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缓冲气体对循环流动铯蒸汽激光器气体温度分布和输出特性的影响
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作者 万浩华 何洋 +1 位作者 季艳慧 陈飞 《红外与激光工程》 EI CSCD 北大核心 2022年第10期107-115,共9页
为研究缓冲气体对循环流动半导体泵浦碱金属蒸汽激光器(DPAL)气体温度三维分布和输出性能的影响,将光束传播方程引入循环流动DPAL理论模型,仿真分析了高功率泵浦情况下缓冲气体配比和压强对端面泵浦横向流动铯蒸汽激光器(Cs-DPAL)输出... 为研究缓冲气体对循环流动半导体泵浦碱金属蒸汽激光器(DPAL)气体温度三维分布和输出性能的影响,将光束传播方程引入循环流动DPAL理论模型,仿真分析了高功率泵浦情况下缓冲气体配比和压强对端面泵浦横向流动铯蒸汽激光器(Cs-DPAL)输出性能的影响,获得了蒸汽池内工作气体温度的三维分布和对应的输出功率。结果表明,使用纯烷烃作为缓冲气体时,相比于CH_(4),相同压强的C_(2)H_(6)对应的蒸汽池内温度更低,激光输出功率更高;使用烷烃气体和惰性气体的混合物作为缓冲气体时,若烷烃的压强较低,加入适量的He或Ar可降低蒸汽池内温度并提升激光输出功率。 展开更多
关键词 碱金属蒸汽激光器 气体循环流动 高功率激光器
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高功率循环流动型半导体泵浦碱金属蒸汽激光器研究进展(特邀) 被引量:3
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作者 季艳慧 何洋 +2 位作者 万浩华 孙俊杰 陈飞 《红外与激光工程》 EI CSCD 北大核心 2020年第12期144-154,共11页
半导体泵浦碱金属蒸汽激光器(DPAL)兼具半导体激光器和气体激光器的技术特点,具有量子效率高、受激发射截面大、折射率扰动较小和热管理便捷等优势,可实现高效率、高功率和高光束质量近红外激光输出,在工业制造、军事、医疗和科研等领... 半导体泵浦碱金属蒸汽激光器(DPAL)兼具半导体激光器和气体激光器的技术特点,具有量子效率高、受激发射截面大、折射率扰动较小和热管理便捷等优势,可实现高效率、高功率和高光束质量近红外激光输出,在工业制造、军事、医疗和科研等领域具有重要的应用价值。对于封闭静止型DPAL,在高功率泵浦情况下,蒸汽池内工作气体温度升高,热效应严重,造成DPAL性能下降。而循环流动型DPAL利用气体流动带走废热,可显著缓解工作气体的热效应,从而实现高功率激光输出。目前,循环流动型DPAL已成为实现高功率激光输出的主要技术路线,引发了越来越多的关注和研究。文中将介绍循环流动型DPAL的基本原理,概述其国内外发展现状,分析其高功率运转情况下的主要问题和解决途径,并对循环流动型DPAL的发展趋势进行展望。 展开更多
关键词 半导体泵浦碱金属蒸汽激光器 气体循环流动 高功率激光器
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Effects of Different Draft Baffles on the Hydrodynamics in Internal-Loop Airlift Reactors 被引量:2
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作者 郄思远 高飞 +2 位作者 刘晨 黄哲庆 刘春江 《Transactions of Tianjin University》 EI CAS 2015年第5期446-452,共7页
In this paper, a 2-D airlift reactor was developed. The streamline and hydrodynamic parameters were measured in a 2-D airlift loop reactor(ALR)with different draft baffles. Three regimes were observed under different ... In this paper, a 2-D airlift reactor was developed. The streamline and hydrodynamic parameters were measured in a 2-D airlift loop reactor(ALR)with different draft baffles. Three regimes were observed under different conditions. Particle image velocimetry(PIV)measurement showed that the liquid velocity distribution in horizontal direction presented different profiles in the three regimes. The length, the height and the spacing of draft baffles were applied in the experiments to optimize the ALR structure. It was found that the draft tube structure is of great importance in determining the hydrodynamics of ALRs. Additionally, the experimental results may serve as a step to the further optimization and design of ALR. 展开更多
关键词 internal-loop airlift reactor HYDRODYNAMICS draft baffle structure particle image velocimetry
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Bubble Pump Models Verification Based on the Experimental Results
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作者 Bella Gurevich 《Journal of Energy and Power Engineering》 2017年第10期665-669,共5页
DAR (diffusion absorption refrigeration) cycle is driven by heat and has no moving parts. It is based on refrigerant and absorbent as the working fluid together with hydrogen as an auxiliary inert gas. To circulate ... DAR (diffusion absorption refrigeration) cycle is driven by heat and has no moving parts. It is based on refrigerant and absorbent as the working fluid together with hydrogen as an auxiliary inert gas. To circulate the working fluid without a mechanical pump, the diffusion absorption cycle relies on a bubble pump. Experimental system was designed and operated. Its aim was to investigate the performance of a bubble pump operating with three lifting tubes. The experimental results of the system were compared to existing models. The comparison showed that there was a bad agreement between the experimental and the theoretical results. 展开更多
关键词 Bubble pump DAR cycle multiple lift tubes binary solution.
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Experimental Study on Structural Optimization of a Supercritical Circulating Fluidized Bed Boiler with an Annular Furnace and Six Cyclones 被引量:2
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作者 WANG Xiaofang SHUAI Daping LYU Qinggang 《Journal of Thermal Science》 SCIE EI CAS CSCD 2017年第5期472-482,共11页
Annular furnace CFBs with six cyclones represent new designs for large capacity CFB boilers over 660 MW. To investigate the gas-solid flow non-uniformity and its main influencing factors, an experimental study was car... Annular furnace CFBs with six cyclones represent new designs for large capacity CFB boilers over 660 MW. To investigate the gas-solid flow non-uniformity and its main influencing factors, an experimental study was carried out in the cold-test rig of an annular furnace CFB with six cyclones. The influence of furnace structure and cyclone arrangement on the non-uniformity of gas-solid flow was obtained. On the basis of these findings, the structure of the annular furnace CFB with six cyclones was optimized, and an optimal structure was obtained. The results show that for newly designed annular furnace CFBs, the non-uniformity of gas-solid flow among loops is no greater than that of traditional CFBs. In terms of uniformity, side cyclones rotating inward are superior to those rotating outward. The position of the side cyclones determines the basic solid circulating rate distribution trend and can dramatically improve flow non-uniformity. The middle cyclone positions and the symmetric modes of the cyclones do not determine the solid circulating rate distribution trend and have less effect on DEVGs. Forty-five degree chamfers of outer ring walls can reduce wall erosion and the non-uniformity of gas-solid flow in the circulating fluidized bed. Regarding the operating and structural conditions in this work, the optimal structure of annular furnace CFBs is Type 6: side cyclones rotating inward and b = a/2, d = 0.1c; the center of the middle cyclone inlet located at the centerline of the furnace cross-section; cyclones on the two sides of the furnace in an axisymmetric arrangement; and a furnace corner shape of 45° chamfers. Under the given operating conditions, the DEV_(Gs) for the optimal structure are approximately 4.0%~10.3%. 展开更多
关键词 circulating fluidized bed annular furnace parallel cyclones flow non-uniformity structure optimization
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