期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
液冷板结构对电池模组液冷性能的影响研究 被引量:9
1
作者 付平 毕杰 杨明飞 《电源技术》 CAS 北大核心 2021年第3期313-316,共4页
针对不同结构的液冷板,采用标准的k-e湍流模型,运用有限元分析软件FLUENT对电池模组液冷板进行建模仿真。研究结果表明,双进出水口结构液冷板对冷却液的散热性能明显好于单进出水口,但对电池模组的液冷效果不理想。内置式液冷板结构液... 针对不同结构的液冷板,采用标准的k-e湍流模型,运用有限元分析软件FLUENT对电池模组液冷板进行建模仿真。研究结果表明,双进出水口结构液冷板对冷却液的散热性能明显好于单进出水口,但对电池模组的液冷效果不理想。内置式液冷板结构液冷效果好于电池模组上置式液冷板结构,且散热均匀高效,从而确定了一种散热高效均匀的液冷板结构。为了验证建模仿真的可靠性,在设计生产出实物后,对内置式双进出水口液冷板实物模型进行了0.7 C放电液冷实验。实验结果表明,采用此结构的电池模组在放电时,温升的实验结果与仿真结果基本一致,在一定程度上验证了模拟仿真的可靠性。 展开更多
关键词 板结构 电池模组 建模仿真 液冷性能
在线阅读 下载PDF
Enhanced permeability mechanism in coal seams through liquid nitrogen immersion:multi-scale pore structure analysis
2
作者 LI Xue-long CHEN De-you +5 位作者 LIU Shu-min WANG Deng-ke SUN Hai-tao YIN Da-wei ZHANG Yong-gang GONG Bin 《Journal of Central South University》 2025年第7期2732-2749,共18页
The geological structure of coal seams in China is remarkably varied and complex,with coalbed methane reservoirs marked by significant heterogeneity and low permeability,creating substantial technical challenges for e... The geological structure of coal seams in China is remarkably varied and complex,with coalbed methane reservoirs marked by significant heterogeneity and low permeability,creating substantial technical challenges for efficient extraction.This study systematically investigates the impact of liquid nitrogen immersion(LNI)on the coal’s pore structure and its mechanism of enhancing permeability with a combination of quantitative nuclear magnetic resonance(NMR)analysis,nitrogen adsorption experiments,and fractal dimension calculations.The results demonstrate that LNI can damage the coal’s pore structure and promote fracture expansion through thermal stress induction and moisture phase transformation,thereby enhancing the permeability of coal seams.The T_(2)peak area in the NMR experiments on coal samples subjected to LNI treatment shows a significant increase,the Brunauer-Emmett-Teller(BET)specific surface area decreases to 6.02 m^(2)/g,and the Barrett-Joyner-Halenda(BJH)total pore volume increases to 14.99 mm^(3)/g.Furthermore,changes in fractal dimensions(D_(1)rising from 2.804 to 2.837,and D_(2)falling from 2.757 to 2.594)indicate a notable enhancement in the complexity of the pore structure.With increasing LNI cycles,the adsorption capacity of the coal samples diminishes,suggesting a significant optimization of the pore structure.This optimization is particularly evident in the reconstruction of the micropore structure,which in turn greatly enhances the complexity and connectivity of the sample’s pore network.In summary,the study concludes that LNI technology can effectively improve the permeability of coal seams and the extraction efficiency of coalbed methane by optimizing the micropore structure and enhancing pore connectivity,which offers a potential method for enhancing the permeability of gas-bearing coal seams and facilitating the development and utilization of coalbed methane. 展开更多
关键词 liquid nitrogen immersion(LNI) coal seam pore structure permeability nuclear magnetic resonance(NMR) fractal dimension
在线阅读 下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部