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新一代太阳能热发电高温集热场光热力耦合设计方法研究 被引量:7
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作者 王志峰 廖志荣 张剑寒 《中国科学:技术科学》 EI CSCD 北大核心 2020年第10期1316-1328,共13页
以800℃太阳能吸热器和超临界二氧化碳发电机组为特征的新一代太阳能热发电技术因成本低的优势得到了欧盟、美国、澳大利亚和中国等的立项支持.高温太阳能集热场是太阳能热发电核心技术之一,对高温吸热器的安全性和效率极为重要.本文提... 以800℃太阳能吸热器和超临界二氧化碳发电机组为特征的新一代太阳能热发电技术因成本低的优势得到了欧盟、美国、澳大利亚和中国等的立项支持.高温太阳能集热场是太阳能热发电核心技术之一,对高温吸热器的安全性和效率极为重要.本文提出了以安全性和效率为目标,以吸热器许用能流密度为牵引,基于"光学-热学-力学"在电站设计点耦合分析的800℃高温集热场设计方法. 展开更多
关键词 新一代太阳能热发电 定日镜场 吸热器 耦合设计方法
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转子式压缩机泵体压插管力与螺钉拧紧力矩关系的分析与验证
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作者 伦成钢 武小娟 +1 位作者 孙民 王澈 《流体机械》 CSCD 北大核心 2024年第11期17-22,共6页
为了提升转子式压缩机产品能力与能效,本文通过理论分析,提出了一种转子式压缩机泵体压插管力与螺钉拧紧力矩的耦合设计方法,确保泵体的径向间隙设计参数在加工过程中不会发生变化。首先,通过调整过盈配合量为12.7~39.1μm和长度为9 mm... 为了提升转子式压缩机产品能力与能效,本文通过理论分析,提出了一种转子式压缩机泵体压插管力与螺钉拧紧力矩的耦合设计方法,确保泵体的径向间隙设计参数在加工过程中不会发生变化。首先,通过调整过盈配合量为12.7~39.1μm和长度为9 mm来控制压插管力大小,满足联结处无工质泄漏且不会导致泵体产生横向位移;其次,考虑气缸螺钉拧紧力矩力为5 N·m,在保证其所产生摩擦力足以抵抗压入插管所产生的横向力以及泵体工作时的气体最大压差力前提下,螺钉拧紧力矩最小,以便相关零件之间产生的应力和变形最小。通过试验验证了理论方法的可行性,两者的误差在5%以内,实现了产品性能的提高。研究结果可为转子式压缩机的优化设计提供参考。 展开更多
关键词 转子式压缩机 压插管力 螺钉拧紧力矩 耦合设计方法
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Development of an aero-thermal coupled through-flow method for cooled turbines 被引量:3
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作者 GU ChunWei LI HaiBo SONG Yin 《Science China(Technological Sciences)》 SCIE EI CAS CSCD 2015年第12期2060-2071,共12页
The influence of complicated interaction between the flow field and heat transfer in cooled turbines becomes more and more significant with the increasing turbine inlet temperature. However, classical through-flow met... The influence of complicated interaction between the flow field and heat transfer in cooled turbines becomes more and more significant with the increasing turbine inlet temperature. However, classical through-flow methods did not take into account the influence of the interaction caused by air cooling. The aerodynamic design and cooling design of cooled turbines were carried out separately, and the iterations between the aerodynamic design and cooling design led to a long design period and raised the design cost. To shorten the design period and decrease the design cost, this paper proposes a concise aero-thermal coupled through-flow method for the design of cooled turbines, taking into account the influence of the complicated interaction between the flow field and heat transfer in cooled turbines. The governing equations, such as energy equation and continuity equation in classical through-flow method are re-derived theoretically by considering the historical influence of cooling with the same method that deals with viscous losses in this paper. A cooling model is developed in this method. The cooled blade is split into a number of heat transfer elements, and the heat transfer is studied element by element along both the span and the chord in detail. This paper applies the method in the design of a two-stage axial turbine, of which the first stator is cooled with convective cooling. With the prescribed blade temperature limitation and the knowledge of the flow variables of the mainstream at the turbine inlet, such as the total pressure, total temperature and mass flow rate, the convergence of the calculation is then obtained and the properties of the flow field, velocity triangles and coolant requirement are well predicted. The calculated results prove that the aero-thermal coupled through-flow method is a reliable tool for flow analysis and coolant requirement prediction in the design of cooled turbines. 展开更多
关键词 aero-thermal coupled through-flow method cooling model cooled turbines
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