期刊文献+
共找到5篇文章
< 1 >
每页显示 20 50 100
高压加热器汽液相变区氧化处理技术在超超临界发电机组上的应用 被引量:1
1
作者 施国忠 刘春红 《浙江电力》 2015年第11期12-14,共3页
传统的给水加氧工艺由于存在过热器氧化皮剥落风险,危及机组安全运行,而给水低氧处理工艺又无法彻底解决给水和汽液相变区流动加速腐蚀的问题。对超超临界发电机组高压加热器汽液相变区采用氧化处理技术,实现精确、定点、定量加氧处理,... 传统的给水加氧工艺由于存在过热器氧化皮剥落风险,危及机组安全运行,而给水低氧处理工艺又无法彻底解决给水和汽液相变区流动加速腐蚀的问题。对超超临界发电机组高压加热器汽液相变区采用氧化处理技术,实现精确、定点、定量加氧处理,成功解决了高压加热器汽液相变区的流动加速腐蚀问题,又避免了过热器氧化皮剥落的风险,提高了机组的安全经济性。高加汽液相变区进行氧化处理后,致密的Fe2O3氧化膜转化速度快,高加疏水Fe浓度下降达85%,Fe浓度小于1μg/L。 展开更多
关键词 超超临界机组 高压加热器 液相变区 氧化处理 腐蚀
下载PDF
冻结土壤、水-水平换热管耦合传热分析 被引量:1
2
作者 杨伟 薛思浩 +2 位作者 杨秋实 康凯 张树光 《土木建筑与环境工程》 CSCD 北大核心 2012年第S1期120-123,共4页
以冻结土壤、水-水平换热管之间耦合传热作用为研究对象,对冻结条件下非饱和土壤连续性方程和热量迁移方程,采用有限容积数值方法进行离散求解,给出了部分温度场、冻结率分布图,并分析了耦合传热原因。分析结果表明:冻结土壤温度场是大... 以冻结土壤、水-水平换热管之间耦合传热作用为研究对象,对冻结条件下非饱和土壤连续性方程和热量迁移方程,采用有限容积数值方法进行离散求解,给出了部分温度场、冻结率分布图,并分析了耦合传热原因。分析结果表明:冻结土壤温度场是大致与地表平行的水平线,固液相变区高峰值发生在有回水管的上部,低值发生在无水平换热管的地方,水平换热管使冻结锋面向地表方向偏移,水平换热管进回水位置布置方式不同影响冻结土壤相变区域的大小与位置,回水管在单侧和中间布置是较优的布置方式。 展开更多
关键词 冻结土壤 水平换热管 液相变区 温度场 耦合分析
下载PDF
高参数发电机组水汽循环系统分段氧化处理技术研究 被引量:3
3
作者 刘春红 施国忠 《电力科技与环保》 2016年第5期55-57,共3页
从高参数发电机组给水、回热系统相变区和核电二回路、高温蒸汽通道的水汽理化过程,分析了给水单相流和相变区双相流区域存在的流动加速腐蚀及高温蒸汽通道的高温氧化皮剥离问题,提出了同时解决单相、双相流区域流动加速腐蚀,防止高温... 从高参数发电机组给水、回热系统相变区和核电二回路、高温蒸汽通道的水汽理化过程,分析了给水单相流和相变区双相流区域存在的流动加速腐蚀及高温蒸汽通道的高温氧化皮剥离问题,提出了同时解决单相、双相流区域流动加速腐蚀,防止高温金属氧化皮剥落的一种新型分段氧化处理工艺,并介绍了实现这种工艺的装置以及实施后的效果。 展开更多
关键词 高压加热器汽 液相变区 分段氧化处理 高参数发电机组 流动加速腐蚀
下载PDF
Lattice Boltzmann Simulation of 3D Nematic Liquid Crystal near Phase Transition
4
作者 ZHANGJun TAORui-Bao 《Communications in Theoretical Physics》 SCIE CAS CSCD 2002年第2期253-256,共4页
Phase transition between nematic and isotropic liquid crystal is a very weak first order phase transition.We avoid to use the normal Landau-de Gennes's free energy that reduces a strong first order transition, and... Phase transition between nematic and isotropic liquid crystal is a very weak first order phase transition.We avoid to use the normal Landau-de Gennes's free energy that reduces a strong first order transition, and set up adata base of free energy calculated by means of Tao-Sheng Lin's extended molecular field theory that can explain theexperiments of the equilibrium properties of nematic liquid crystal very well. Then we use the free energy method oflattice Boltzmann developed by Oxford group to study the phase decomposition, pattern formation in the flow of theliquid crystal near transition temperature. 展开更多
关键词 nematic liquid crystal lattice Boltzmann spinodal decomposition
下载PDF
Thermal Analysis of Metal Foam Matrix Composite Phase Change Material 被引量:1
5
作者 SONG Xiange 《Journal of Thermal Science》 SCIE EI CAS CSCD 2015年第4期386-390,共5页
In this paper,CPCM(Composite Phase Change Material)was manufactured with metal foam matrix used as filling material.The temperature curves were obtained by experiment.The performance of heat transfer was analyzed.The ... In this paper,CPCM(Composite Phase Change Material)was manufactured with metal foam matrix used as filling material.The temperature curves were obtained by experiment.The performance of heat transfer was analyzed.The experimental results show that metal foam matrix can improve temperature uniformity in phase change thermal storage material and enhance heat conduction ability.The thermal performance of CPCM is significantly improved.The efficiency of temperature control can be obviously improved by adding metal foam in phase change material.CPCM is in solid-liquid two-phase region when temperature is close to phase change point of paraffin.An approximate plateau appears.The plateau can be considered as the temperature control zone of CPCM.Heat can be transferred fiom hot source and be uniformly spread in thermal storage material by using metal foam matrix since thermal storage material has the advantage of strong heat storage capacity and disadvantage of poor heat conduction ability.Natural convection promotes the melting of solid-liquid phase change material.Good thermal conductivity of foam metal accelerates heat conduction of solid-liquid phase change material.The interior temperature difference decreases and the whole temperature becomes more uniform.For the same porosity with a metal foam,melting time of solid-liquid phase change material decreases.Heat conduction is enhanced and natural convection is suppressed when pore size of metal foam is smaller.The thermal storage time decreases and heat absorption rate increases when the pore size of metal foam reduces.The research results can be used to guide fabricating the CPCM. 展开更多
关键词 Metal Foam Matrix Composite Phase Change Material Thermal Storage Heat Absorption Rate
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部