1. 西安交通大学动力工程多相流国家重点实验室,西安,710049
2. 西安交通大学能源与动力工程学院,西安,710049
网络首发:2012-01-10,
纸质出版:2012
移动端阅览
张侨禹 1, 2, 赵红利 2, 等. 间壁式筛网网格换热器的性能分析[J]. 西安交通大学学报, 2012,46(1):24-29.
Performance Analysis on Wall-Type Woven Wire Screen Matrix Heat Exchanger[J]. 2012, 46(1): 24-29.
为揭示间壁式筛网网格换热器中网片与隔热片厚度比对换热器效率的影响规律
在数值计算中引入了间壁热阻和隔热片导热系数
改进了传统间壁式网格换热器的数值计算方法.通过与传统计算方法对比
发现改进方法使间壁式网格换热器计算更加精确并更体现其结构特点.利用改进的方法对换热器进行性能分析
得到了换热器效率及其内部温度分布特性.结果显示
隔热片与网片厚度的选取对换热器性能具有明显的影响
当隔热片厚度为0.2 mm 及网片与隔热片的厚度比为4:1时
相同长度下的换热器性能达到最优.
In order to examine the influence of the thickness ratio of wire-screen over spacer on the effectiveness of a wall-type matrix heat exchanger
the wall and spacer heat resistances were adopted to improve the numerical computing method for the structure and thermal performance analysis of the wall-type matrix heat exchanger. The comparison with the conventional numerical computing method shows that the improved method can enhance the computation accuracy of the matrix heat exchanger and exhibit its structural features better. The performance analysis on the exchanger by the improved method indicates that the wire-screen thickness and the spacer thickness will influence the exchanger effectiveness significantly. In the case of the identical size
the matrix heat exchanger could obtain the optimum effectiveness when spacer thickness is 0.2 mm and the thickness ratio of wire-screen over spacer is 4:1.
VENKATARATHNAM G, SARANGI S. Matrix heat exchangers and their application in cryogenic systems[J]. Cryogenics, 1990,30(11):907-918.
NELLIS G F. A heat exchanger model that includes axial conduction, parasitic heat loads, and property variations[J]. Cryogenics, 2003,43(9):523-538.
CHEN Shuangtao, HOU Yu, ZHAO Hongli,et al. A numerical model of thermal analysis for woven wire screen matrix heat exchanger[J]. Cryogenics, 2009,49(9):497-503.
DELALIC N, MULAHASANOVIC D Z, GANIC E N. Porous media compact heat exchanger unit-experiment and analysis[J]. Experimental Thermal and Fluid Science, 2004,28(2):185-192.
MURPHY T, BOWMAN W J. Compactness factors for rolled, stacked-screen regenerative heat exchangers[J]. Cryogenics, 1998,38(10): 959-965.
VENKATARATHNAM G. Effectiveness-Ntu relationship in perforated plate matrix heat exchangers[J]. Cryogenics, 1996,36(4):235-241.
TAO Y B, LIU Y W, GAO F,et al. Numerical analysis on pressure drop and heat transfer performance of mesh regenerators used in cryocoolers[J]. Cryogenics, 2009,49(9): 497-503.
高原,郭良珠,王国香.网格低温换热器的实用性能测试[J].低温与超导,1991,19(4):10-14.
GAO Yuan, GUO Liangzhu, WANG Guoxiang. Practical performance measurements of a wire screen cryogenic heat exchanger[J]. Cryogenics and Superconductivity,1991,19(4):10-14.
VENKATARATHNAM G, PRADEEP S N. Performance of a counter flow heat exchanger with longitudinal heat conduction through the wall separating the fluid streams from the environment[J]. Cryogenics, 1999,39(10):811-819.
KROEGER P G. Performance deterioration in high effectiveness heat exchanger due to axial heat conduction effects[J]. Advances in Cryogenic Engineering, 1966,31(12):363-372.
0
浏览量
4
下载量
0
CSCD
关联资源
相关文章
相关作者
相关机构
京公网安备11010802024621