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1)  heat transfer boundary
边界换热
1.
It is pointed out that laser phase transformation hardening can be controlled by altering the heat transfer boundary conditions,i.
提出通过改变边界换热条件,从而改变冷却速度,达到控制激光相变硬化。
2)  convective heat transfer boundary
对流换热边界
1.
The steady thermal stress distribution under the convective heat transfer boundary obtained.
用有限元和辛普生法研究了由ZrO2和Ti 6Al 4V组成的梯度功能材料板的稳态热应力问题,检验了孔隙度P为零时数值模拟模型的正确性,给出了对流换热边界下的稳态热应力场分布。
2.
In this paper, the transient heat conduction in the plate made of a functionally gradient material that consists of ZrO 2 and Ti-6Al-4V with convective heat transfer boundary is analyzed by finite element method(FEM) and finite difference method (FDM).
用有限元法与有限差分法相结合的方法 ,对处在对流换热边界条件下的梯度功能材料板的瞬态热传导问题进行了分析 ,并且通过由ZrO2 和Ti 6A1 4V组成的梯度功能材料板对本方法的正确性进行了检验 ,最后给出了对流换热边界下的瞬态温度场分布。
3.
Taking into account the effect of temperature dependency of material properties,the transient temperature fields in the plate made of a functionally gradient material that consists of ZrO2 and Ti6Al4V under convective heat transfer boundary are analyzed by the finite element method(FEM)and the finite difference method (FDM).
 用有限元法和有限差分法相结合的方法,分析了由ZrO2和Ti-6Al-4V组成的变物性梯度功能材料板在对流换热边界条件下的非线性瞬态热传导问题,检验了方法的正确性,给出了对流换热边界下的瞬态温度场分布,并与不考虑变物性时的结果进行了比较。
3)  transform boundary
转换边界
4)  temperature boundary layer
热边界层
1.
People are not completely aware of the importance in making use of the temperature boundary layer to reduce the resistance of the pipeline.
人们还没有完全认识到利用热边界层进行减阻的重要意义。
2.
In details, the reducing resistance theory and its application of temperature boundary layer in pipeline are studied in the paper.
全面研究了高粘性液体管道流动的热边界层减阻理论的应用。
3.
Wholly the theory of temperature boundary layer in pipeline is studied by the paper.
研究了高粘性液体管道流动的热边界层理论。
5)  adiabatic boundary
绝热边界
1.
The width of the adiabatic boundary exerts a remarkable influence on the spraying time by means of method of analysis of variance.
采用无交互作用方差法,得出绝热边界对喷水时间的影响比水流速度对喷水时间的影响大的分析结果。
6)  warm edge
热边界
1.
This study is focused on developing appropriate methods for determining the "warm edge" and "cold edge" of vegetation temperature condition index(VTCI) drought monitoring approach.
应用NOAA-AVHRR多时段卫星遥感数据,以陕西省关中平原为研究区域,建立了条件植被温度指数干旱监测方法,讨论了植被指数和地表温度特征空间中冷边界和热边界的确定方法。
补充资料:蓄热式换热
分子式:
CAS号:

性质:工业中的换热方式之一。利用固体填充物贮蓄热量以达到换热目的。当气体通过时,根据气体的温度高于或低于填充物的温度,可将热量传给填充物或从填充物吸取热量。常用于冶金工业,也用于化学工业等。例如炼钢平炉和煤气炉常用来预热空气等。

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