1) aero-thermal coupling
气-热耦合
1.
The main flow characteristics are investigated by numerical simulation method of aero-thermal coupling in turbine stator of an aero-engine.
通过对某待定型航空发动机第一级涡轮导向器内部流场采用气-热耦合的数值模拟,研究分析了涡轮导向器内部流场的主要流动特征,给出了叶片表面的温度分布规律,对高性能的涡轮叶片设计有重要的指导意义。
2) conjugate heat transfer
气热耦合
1.
Numerical simulation of conjugate heat transfer for an internally cooled 3-D turbine blade;
内冷涡轮叶栅三维气热耦合数值模拟
2.
Numerical simulation of conjugate heat transfer in turbine blade with air cooling;
空气冷却涡轮叶片气热耦合数值计算
3.
Three-dimensional conjugate heat transfer was simulated in an internally-cooled gas turbine vane using a TVD scheme with 3rd order precision and an arbitrarily curved mesh generation tech- nique.
应用三阶精度TVD格式和自由型曲面网格技术,对涡轮内冷叶片进行气热耦合数值模拟。
3) Heat-flow coupling
气热耦合
1.
The position of cooling holes on the turbine blade was optimized using the heat-flow coupling method.
本文对涡轮叶片叶型优化设计进行了探索,并结合气热耦合的方法对设计出来的叶片进行了冷却孔布局优化;针对某涡轮导叶使用中被烧蚀情况,提出解决方案并进行数值模拟。
4) aero-thermal coupling
气热耦合
1.
The CFX software package was used to solve the aero-thermal coupling of this cooling scheme,and then the changes of temperature field,flow field and heat transfer coefficient were analyzed in detail.
应用CFX计算程序对冷却方案进行了气热耦合计算,并对温度场、流场及换热系数的变化进行了详细的分析。
5) three dimensional conjugate heat transfer
三维气热耦合
6) gas
气
1.
Enrichment features of oil,gas,coal and uranium in Ordos Basin;
鄂尔多斯盆地油、气、煤、铀富集特征分析
2.
This article annotates Fengshui's "gas", "pulse" and "shape" from the point of view of (science), and it also narrates the close relation of Fengshui and eco-environmental protection.
通过对风水学的再研究,发现在很早以前的风水学中就有可持续发展的思想,本文从科学的角度对风水学中的"气","脉","形"进行重新诠释,并叙述了风水与生态环境保护密不可分的关系。
3.
After bacterial degradation, the gas generation rate of Chlorella increased by 209%, and the value of hydrocarbon gases to non-hydrocarbon gases was doubled.
本文对比研究了枯草杆菌降解作用前后小球藻热模拟生成的气、油和类干酪根的特征。
参考词条
补充资料:热耦合精馏塔控制
分子式:
CAS号:
性质:多个精馏塔串联操作时,上一塔蒸汽可以做为下一塔热源,以便热量回收利用。首先要求上一塔的塔顶温度高于下一塔提供大部分能量,同时可自行压入下一塔再沸器,这种流程称为精馏塔的热耦合系统。热耦合精馏塔控制即为控制各塔操作状态以稳定热耦合操作。
CAS号:
性质:多个精馏塔串联操作时,上一塔蒸汽可以做为下一塔热源,以便热量回收利用。首先要求上一塔的塔顶温度高于下一塔提供大部分能量,同时可自行压入下一塔再沸器,这种流程称为精馏塔的热耦合系统。热耦合精馏塔控制即为控制各塔操作状态以稳定热耦合操作。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。