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调桨技术在小微型轴流式水轮机上的应用
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作者 陈泉开 《新技术新工艺》 2009年第6期70-72,共3页
小型电站轴流式水轮机的工作转轮可分为轴流定桨和轴流调桨两类。转轮直径在600~1 400 mm之间的小尺寸轴流调桨机型,国内生产厂家极少。小微型轴流调桨式水轮机的调桨装置核心结构是:蜗杆蜗轮传动—螺旋传动—空间曲柄滑块机构,该... 小型电站轴流式水轮机的工作转轮可分为轴流定桨和轴流调桨两类。转轮直径在600~1 400 mm之间的小尺寸轴流调桨机型,国内生产厂家极少。小微型轴流调桨式水轮机的调桨装置核心结构是:蜗杆蜗轮传动—螺旋传动—空间曲柄滑块机构,该装置能实现停机连续调桨,桨叶角度在初始角度的基础上有0°~15°的调整范围,具有广泛地运用前景和极大地推广价值。 展开更多
关键词 调桨技术 工作转轮 小微型轴流调桨式水轮机
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Improvement of prediction model for work roll thermal contour in hot strip mill 被引量:2
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作者 王连生 杨荃 +2 位作者 何安瑞 郑宣 于洪瑞 《Journal of Central South University》 SCIE EI CAS 2010年第6期1251-1257,共7页
Though high accuracy of the thermal contour was obtained while adopting finite element method,it could not meet the real-time requirement.One-dimensional finite difference method could realize real-time control in the... Though high accuracy of the thermal contour was obtained while adopting finite element method,it could not meet the real-time requirement.One-dimensional finite difference method could realize real-time control in the case of neglecting both the circumferential and radical heat exchange,but the over-simplified modes resulted in poor accuracy.And two-dimensional full explicit difference was also limited in practical application since its time step was restricted to keep the model stable.Consequently,a new method of alternating direction finite difference was introduced and discussed in the model's stability,calculating speed and precision.Specific work roll after one real rolling unit was researched,The result shows that error of temperature on work roll surface between measured and calculated values is within 5 ℃.The influence of rolling rhythm and strip width on thermal crown was also studied.The conclusion is verified theoretically and practically that it can maintain absolutely stable and meet the online requirement. 展开更多
关键词 hot rolling finite element finite difference work roll thermal contour
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Study on Combination of Engine/Steam Turbine Cycle for Improving the Energy Conversion
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作者 A.M. Barbosa S. Cardoso D. Bastos-Netto 《Journal of Energy and Power Engineering》 2011年第5期434-437,共4页
This work discusses the combination of two thermodynamic cycles seeking to improve the overall chemical energy conversion rate into mechanical energy. Here one engine operates according a Rankine cycle in order to use... This work discusses the combination of two thermodynamic cycles seeking to improve the overall chemical energy conversion rate into mechanical energy. Here one engine operates according a Rankine cycle in order to use part of the thermal energy released to the boundary, i.e., the neighboring atmosphere. The analysis of this combined cycle shows that it might, under proper condition, represent a gain of 1.2% in the overall delivered engine power. 展开更多
关键词 AVAILABILITY internal combustion engines chemical energy combined cycle Rankine cycle.
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