期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
机匣凹槽对轴流压气机性能的影响
1
作者 Naseem Ahmad Ghulam Ishaque +3 位作者 arif aziz Zubair Ali Shah Mushayyed Muhammad Ali Khan 郑群 《风机技术》 2021年第5期27-32,I0006,共7页
燃气轮机压气机的稳定运行范围由于每级最大负荷而减少。最大性能与稳定运行状态密切相关,如果运行状态发生一些快速变化,则会导致流动失稳,并导致旋转失速。为避免这种情况,应保持适当的失速裕度,使轴流压气机性能更好。通过叶尖和机... 燃气轮机压气机的稳定运行范围由于每级最大负荷而减少。最大性能与稳定运行状态密切相关,如果运行状态发生一些快速变化,则会导致流动失稳,并导致旋转失速。为避免这种情况,应保持适当的失速裕度,使轴流压气机性能更好。通过叶尖和机匣壁面处理可以提高失速裕度。为提高轴流压气机的失速裕度,机匣处理被广泛用于被动流动控制。当前的CFD研究使用NASA转子37通过有限体积技术离散3D RANS方程来研究凹槽的性能。为了验证转子37,对一个通道进行了稳态仿真。仿真结果与总压比和效率的实验测量数据非常吻合。根据收敛标准来预测失速。提出了矩形端壁凹槽模型并进行了数值验证。对矩形凹槽和光滑壁面的性能进行对比评估,发现与光滑壁面相比,矩形凹槽的失速裕度增加了6.37%。通过安装凹槽使TLV减至最小,矩形CGCT模型减少了涡流停滞区,有助于延迟失速的发生。机匣凹槽显著提高了轴流压气机的失速裕度,但导致了效率的略微下降。 展开更多
关键词 轴流压气机 失速裕度 最大负荷 旋转失速 稳态仿真 机匣处理 流动失稳 稳定运行状态
下载PDF
A Potential Approach to Enhance the Seebeck Coefficient of UHMWPE by Using the Graphene Oxide
2
作者 Aqsa Irfan Malik Naqash Mehmood +4 位作者 Malik Sajjad Mehmood arif aziz Mansoor Ahmad Baluch Muhammad Rizwan Tariq Yasin 《Non-Metallic Material Science》 2020年第2期21-27,共7页
Thermoelectric materials have been a competent source for the production of energy in the present decade.The most important and potential parameter required for the material to have better thermoelectric characteristi... Thermoelectric materials have been a competent source for the production of energy in the present decade.The most important and potential parameter required for the material to have better thermoelectric characteristics is the Seebeck coefficient.In this work,ultra high molecular weight polyethylene(UHMWPE)and graphene oxide(GO)nanocomposites were prepared by mechanical mixing by containing 10000ppm,50000ppm,70000ppm,100000ppm,150000ppm,and 200000ppm loadings of graphene oxide.Due to the intrinsic insulating nature of UHMWPE,the value of Seebeck for pristine UHMWPE and its nanocomposites with 10000ppm&50000ppm of GO concentration was too low to be detected.However,the Seebeck coefficient for composites with 70000ppm,100000ppm,150000ppm,and 200000ppm loadings of GO was found to be 180,206,230,and 235μV/K,respectively.These higher values of Seebeck coefficients were attributed to the superior thermal insulating nature of UHMWPE and the conductive network induced by the GO within the UHMWPE insulating matrix.Although,the values of the figure of merit and power factor were negligibly small due to the lower concentration of charge carriers in UHMWPE/GO nanocomposites but still reported,results are extremely hopeful for considering the composite as the potential candidate for thermoelectric applications. 展开更多
关键词 UHMWPE Graphene oxide Electrical conductivity Thermal conductivity Seebeck coefficient Figure of merit
下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部