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水深与水面风力对湖水源热泵系统性能的影响
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作者 陈晓 林汉柱 张国强 《可再生能源》 CAS 北大核心 2013年第3期107-111,共5页
为了研究水深与水面风力对湖水源热泵系统性能的影响,建立了垂向一维湖泊水温模型。根据株洲的典型气象年逐时气象参数,对4,8,5.6 m水深时的全年垂向水温分布进行了逐时模拟。模拟结果表明,由于水面风力的混合作用,水体应达到一定的水深... 为了研究水深与水面风力对湖水源热泵系统性能的影响,建立了垂向一维湖泊水温模型。根据株洲的典型气象年逐时气象参数,对4,8,5.6 m水深时的全年垂向水温分布进行了逐时模拟。模拟结果表明,由于水面风力的混合作用,水体应达到一定的水深,才会出现温度分层现象。如果株洲的湖水深度不小于5.6 m,夏季可以从底层取到温度较低的水,热泵机组的制冷性能优于带冷却塔的冷水机组;而且,冬季取水温度在4℃以上,能够保证在冬季大部分时间内热泵系统的正常制热运行。文章得出的结论也适用于与株洲气候类似的地区。 展开更多
关键词 水深 水面风力 湖水源热泵系统 数学模型
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Study on Blade Surface Flow around Wind Turbine by Using LDV Measurements 被引量:4
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作者 Tinnapob Phengpom Yasunari Kamada +3 位作者 Takao Maeda Junsuke Murata Shogo Nishimura Tasuku Matsuno 《Journal of Thermal Science》 SCIE EI CAS CSCD 2015年第2期131-139,共9页
This paper has attempted to study a mechanism of three-dimensional flow around a horizontal axis wind turbine(HAWT) rotor blade. An experimental study of the flow phenomenon in the vicinity of the wind turbine blade i... This paper has attempted to study a mechanism of three-dimensional flow around a horizontal axis wind turbine(HAWT) rotor blade. An experimental study of the flow phenomenon in the vicinity of the wind turbine blade is a challenging endeavor. In this research, the HAWT model with 2.4 m diameter was tested in the large wind tunnel. The flow around the rotating blade surface was measured simultaneously for three velocity components, and two probes were used for the synchronized measurement of three-dimensional flow components. The local velocity was detected for the single seeding particle measured in the point where three pairs of laser beams intersected. Blade sections of interest in this study are composed of radial positions r/R = 0.3, 0.5 and 0.7. Optimum and low tip speed ratio flow characteristics were also compared. The velocity flow vector, skin friction coefficient and bound circulation were calculated from LDV measurements, and the experimental research showed reasonably and clearly the experimental results. 展开更多
关键词 LDV measurement Sectional performance Wind turbine Boundary layer flow Span-wise flow
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