| 1. | Heat transfer by radiation must also be considered in rocks at very high temperatures . 如果岩体的温度很高,辐射传热也必须予以考虑。 |
| 2. | Automatic radiation heat transfer view factor calculations 自动辐射传热系数的计算。 |
| 3. | Panel heating radiant heating 以辐射传热为主的采暖方式 |
| 4. | New model for computing flame radiation heat transfer in cylinder of diesel engine 柴油机缸内火焰辐射传热新模型 |
| 5. | Comparison of two radiative heat transfer models in three - dimension turbulent gas and coal - particle combustion 三维湍流回流气相和煤粉燃烧辐射传热离散坐标模型和热流模型比较 |
| 6. | The important significance of industrial furnace using infrared radiant material was analyzed through radiant heat transfer enhanced in industrial furnace with high temperature 摘要从高温工业炉强化炉内辐射传热过程的角度出发,分析了工业炉应用红外辐射材料的重要意义。 |
| 7. | This model does improve the models of fuel spray and atomization , soot formation and oxidation , heat transfer of substance in cylinder is also considered 此模型改进了燃油喷射模型以及碳烟的生成与氧化模型,考虑了燃烧区的区间传热和缸内工质的对流辐射传热,由此对一台高压共轨柴油机进行了仿真计算。 |
| 8. | The result proves that the circular temperature change caused by the radiation between the chambers is mostly decided by the dimensionless distance l / d and is foreign to the original wall temperature 计算表明,推力室之间的辐射传热引起的周向温度畸变,主要取决于推力室间的相对间距l / d ,而与原壁温水平无关。 |
| 9. | Theoretical analysis and experimental results showed that the high emissivity coating speeds up the heat - absorption and heat release process , strengthens heat transfer by radiation and heat conduction in the regenerator , improves heat transfer efficiency and the blast temperature 理论分析和实验结果表明,热风炉蓄热体表面高发射率涂层可以提高蓄热体的蓄热和放热能力,强化炉内辐射传热和蓄热体的导热,从而提高热风温度。 |
| 10. | Abstract : by using the 3 - d unsteady state heat transfer equation , the heat convection and radiation between the checker and the gas which flows through the checker holes , and the heat conduction among the checker in the chamber of the hot blast stove were studied . the time dependable gas temperature and the temperature distributions within the checker were obtained 文摘:应用三维非稳态热量传输方程,对高炉热风炉在燃烧过程中蓄热室内格子砖与气体之间的对流和辐射传热,以及格子砖内部的导热过程进行了耦合求解.得到了在燃烧期内格子砖及燃烧过程中燃烧废气的温度分布情况及其随时间的变化规律 |