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- Relation Between Ablating Rate and Surface Heating Power 金属表面烧蚀速率与表面加热功率关系的探讨
- Research on the relation between the ablating rate and surface heating power 固体烧蚀速率与表面加热功率关系的探讨
- Keywords thermology;ablation rate;surface heating power;heat transfer;integral approximation; 热学;烧蚀速率;表面加热功率;热传递;积分近似解;
- surface heating power 表面加热功率
- Average surface heat transfer coef. 平均换热系数
- Desplay => Contours => Wall fluxes => Surface heat transfer coef. 选择有关的流-固表面即可显示和输出传热系数。
- Lastly, the surface heat source/sink are discussed briefly. 最后还简要地讨论了本区地表的冷热源状况。
- The crackle of rice emerges frequently during drying by heating power. 稻谷在进行热力干燥时,往往产生爆腰现象。
- Use clamp ampere meter to measure the current and check if the heating power is normal. 用钳形表测量电流,检查发热功率是否正常。
- Semi-conductor devices have no filamentor heatersand therefore require no heating power or warmed up time. 半导体器件没有灯丝,因此不需加热功率或加热时间。
- Semiconductor devices have no filament or heaters and therefore require no heating power or warm-up time. 半导体器件没有灯丝,因此也不需加热功率或加热时间。
- Surface heating provides temperature maintenance for vicious products and condensation control for hydroscopic granular or air-borne media. 表面加热系统可以维持容器温度,从而防止内部液体或气体介质凝固。
- In this paper, we introduce DCS and FCS, the application of DCS and FCS in heat power plant is mainly analyzed. 摘要简要介绍了集散控制系统和现场总线控制系统及其在火电厂中的应用,并做进一步的分析。
- At top speeds, the surface heat of the airframe could reach 900 degrees Fahrenheit. 以最快速度飞行时,机身表面温度可达华氏900度。
- This paper introduces a Pulse-Density-Modulated (PDM) load resonant induction heating power based on DSP. 介绍了基于数字信号处理器(DSP)设计的PDM(Pulse鄄Density鄄Modulation)负载谐振式感应加热电源。
- The value of static shield reaches above 40 dB, and the heating power of the paint in water is about 7 W/cm 2. 经计算 ,该种涂层是一种优良的静电屏蔽和导静电材料 ,电磁屏蔽效能达 40 d B以上 ,水中加热功率密度达到 7W/ cm2左右。
- The results show that the distributions of the surface heat fl ow density and temperature around tube billets are relative. 计算结果表明,管坯表面热流密度沿周向分布的不均匀性造成了管坯温度沿周向分布不均。
- The model of induction heating power for unit volume of plate-form part with big flakiness ratio was obtained. 研究了电磁成形大宽厚比板状件的感应加热特性,推导了电磁成形大宽厚比板状件单位体积感应加热功率公式。
- Conclusion The real HTC of the main thermostatic region is affected by surface heat dispersion and wiring holes of transpiration container. 结论:蒸发舱表面散热与舱体布线孔明显影响主温区库体的传热系数实测值。
- Features: low heating power, long life, good insulating properties, thermal effects. 特点:加热功率低,使用寿命长,绝缘性能好,散热效果好。