基本信息来源于合作网站,原文需代理用户跳转至来源网站获取       
摘要:
The goal of Collaborative Research Centre (SFB) 561 "thermally highly loaded, porous and cooled multi-layer systems for combined cycle power plants" is to expand the current technological and scientific knowledge on power plants in order to achieve total efficiencies of 65% in a combined cycle power plant in the year 2025. Therefore, the aero-thermomechanical, structural-mechanical, materials' scientific and production fundamentals for the development of steam and gas turbine components that are able to withstand highest thermal loads are being worked out within this SFB. This means for the gas turbine that combustion chamber outlet temperatures of 1520℃ at 1.7MPa are to be attained. In order to control these high temperatures, it is not only required to develop new materials' solutions, including thermal barrier coatings, but also to apply improved cooling techniques, as for example effusion cooling. This novel cooling concept is to be realised through open-porous structures. These structures can consist of drilled open-porous multi-layer systems or open-porous metallic foams. The development of graded multi-layer systems is also extremely important, as the grading will enable the use of coolant in dependence of the requirements. The live steam parameters in the high pressure turbine are expected to be increased up to approximately 700℃ with pressure of 30MPa. These elevated steam parameters can be encountered with Ni-base alloys, but this is a costly alternative, associated with many manufacturing difficulties. Therefore, the SFB proposes cooling the highly loaded turbines instead, as this would necessitate the application of far less Ni-base alloys. To protect the thermally highly loaded casing, a sandwich material consisting of two thin face sheets with a core of a woven wire mesh is used to cover the walls of the steam turbine casing.The current state of the research shows that by utilising innovative cooling technologies a total efficiency of 65% can be reached without exceeding the maximum allowable material temperature, thereby prolonging the life-span.
推荐文章
Concentration-discharge patterns of weathering products from global rivers
Concentration-discharge
Rivers
Silicate weathering
Solutes
Soil organic carbon dynamics study bias deduced from isotopic fractionation in corn plant
Bias of SOC dynamics study
Isotopic fractionation in corn
Isotope mass balance equation
Bias range
Sources of dissolved inorganic carbon in rivers from the Changbaishan area, an active volcanic zone
Carbon isotopes
Dissolved inorganic carbon
Rivers
Chemical weathering
Changbaishan
Active volcanic zone
黄曲条跳甲食性的研究
黄曲条跳甲
硫代葡萄糖苷
多食性
寡食性
内容分析
关键词云
关键词热度
相关文献总数  
(/次)
(/年)
文献信息
篇名 Designing a power plant with highest efficiency: results from SFB 561
来源期刊 航空动力学报 学科 工学
关键词 gas turbine steam turbine cooling novel materials process calculation
年,卷(期) 2009,(4) 所属期刊栏目 燃烧、传热、传质
研究方向 页码范围 717-728
页数 12页 分类号 TK2|V231
字数 语种 中文
DOI
五维指标
传播情况
(/次)
(/年)
引文网络
引文网络
二级参考文献  (0)
共引文献  (0)
参考文献  (13)
节点文献
引证文献  (0)
同被引文献  (0)
二级引证文献  (0)
2004(3)
  • 参考文献(3)
  • 二级参考文献(0)
2005(2)
  • 参考文献(2)
  • 二级参考文献(0)
2006(6)
  • 参考文献(6)
  • 二级参考文献(0)
2007(2)
  • 参考文献(2)
  • 二级参考文献(0)
2009(0)
  • 参考文献(0)
  • 二级参考文献(0)
  • 引证文献(0)
  • 二级引证文献(0)
研究主题发展历程
节点文献
gas turbine
steam turbine
cooling
novel materials
process calculation
研究起点
研究来源
研究分支
研究去脉
引文网络交叉学科
相关学者/机构
期刊影响力
航空动力学报
月刊
1000-8055
11-2297/V
大16开
北京市海淀区学院37号
1986
chi
出版文献量(篇)
6663
总下载数(次)
19
总被引数(次)
63928
论文1v1指导