rate of heating

英 [reɪt ɒv ˈhiːtɪŋ] 美 [reɪt əv ˈhiːtɪŋ]

网络  加热速度

化学



双语例句

  1. Most also agree that the rate of heating is accelerating and that the consequences of this temperature change could become increasingly disruptive.
    并且大多数科学家认为变暖的速度正在加快,大气变化的结果具有日益加剧的破坏性。
  2. In any heat-treating operation the rate of heating is important.
    在任何热处理作业中,加热的速率都是重要的。
  3. The convection heat transfer, radiant heat transfer and electricity-heat transformation rate of the carbon fiber electric heating board are calculated.
    计算了电热板对流传热量、辐射传热量及电热转换率。
  4. And with the increase of pressure rate of compressor, the heating COP decreases sharply, and the discharge temperature increases rapidly, which can make compressor dilapidate.
    同时,随着压缩机压力比的增加,其COP急剧下降,排气温度迅速升高,从而导致压缩机不能正常运行甚至损坏。
  5. Application of Maximum Unbalance Rate of Direct Return Heating System
    异程式供暖系统最大不平衡率的应用
  6. For the parameters of typical tokamak fusion reactor, the set of equations are solved analytically with simplified conditions. Thus the distribution of a particles and the rate of self heating are obtained.
    对于典型的托卡马克聚变堆参数,在简化的条件下解析地求解了方程组,得到了α粒子的分布和自加热率。
  7. The reduction rate of aflatoxin during heating depends on the initial level of contamination. Hot-water Pretreatment Reduces the Contamination in Initial Cultural Stage of Zantedeschia
    黄曲霉毒素减少速率与样品最初被污染的水平有关;热水浴预处理对马蹄莲初代培养过程中污染的控制
  8. The results showed us that the key factors in preparation of SAC from IER were air oxidation, KOH impregnation, carbonization and the temperature rate of heating.
    研究结果表明,利用市售IER制备SAC是一个较佳的工艺路线,其关键因素是空气氧化、KOH浸渍、碳化温度和升温速率。
  9. The influence of the rate of heating at phase transformation region, temperature of austenitizing and holding time on the austenite grains are studied.
    讨论了在相变区的加热速度、奥氏体化温度及保温时间对奥氏体晶粒的影响。
  10. The measure and finite element method analysis both prove that rational of the rate of heating and cooling in exhaust technology is necessary.
    测试和有限元法分析都证实需要合理设计排气工艺中的升降温速度。
  11. The simulation was mainly used to analyze the temperature distribution of the sample and the rate of heating and cooling.
    主要分析了样品的升、降温速度和样品内部的温度均一性。
  12. The coefficient of performance and rate of heating of a three source heat pump are treated for the case where the heat transfer between the working substance and sources is irreversible.
    本文讨论了三热源热泵在传热不可逆情况下的供热系数和供热率。
  13. Influence of Temperature Parameter on Maximum Unbalance Rate of Heating System
    温度参数对供暖系统最大不平衡率的影响
  14. This article studied the influence of different heating temperature, different rate of heating, different time of heat preservation, relaxation annealing and element to the process of alloy crystallization by XRD, DSC and SEM.
    本文通过XRD、DSC和SEM应用,研究了在不同温度、不同加热速度、不同保温时间、弛豫退火以及替代元素对合金晶化过程的影响。
  15. Study on Estimating Method of Utilization Rate of Geothermal Energy in Heating and Cooling System
    基于地热水资源供热供冷系统能源利用率评价方法的研究
  16. Failure rate statistics and spectrum analysis of heating network components based on an investigation
    基于热网调研的供热管网元件故障率统计与频谱分析
  17. However, when T0TH> Tp2, the optimal coefficient of performance is a monotonic decrease function of the rate of heating. The significance of these results have also been discussed.
    当THT0>TP~2时,最优供热系数是供热率的单调减函数。
  18. MC lowered the onset temperature and the maximum mass loss rate of EP on heating, and increased the thermal stability of EP at high temperatures (> 400 ℃).
    MC降低了EP的热起始分解温度和最大热失重速率,提高了EP在高温下的热稳定性。
  19. The effect of the concentration and flux on purifying rate of heating and oxygenation methane by experiment in lab was studied.
    通过系统试验,研究了浓度和流量对瓦斯气体加热氧化净化率的影响,为消除煤矿瓦斯积聚提供了实验基础和进一步研究的新途径。
  20. Based on thermo-viscoelasticity theory and dynamic finite element method, the strain-stress history and heat formation rate of viscous heating for solid propellant under the mechanical impact load were analyzed.
    利用热粘弹理论和动力有限元方法,分析了推进剂在机械冲击载荷下应力-应变时间历程及粘性加热生热率;
  21. Failure rate data of heating network components of Beijing and Shenyang could be taken as a reference for reliability research of heating networks in China.
    北京和沈阳热网元件故障率可作为我国热网可靠性研究的参考数据。
  22. By contrast, the power consumption of inside-wall heating furnace is lowest and the lifetime is longest, the heating rate of the double heating furnace is fastest, and the active furnace area of outside-wall heating furnace is largest.
    通过对比,内芯加热高温炉耗电量最低、使用寿命最长,双重加热高温炉升温速度最快,外壁加热高温炉的炉膛有效面积最大。
  23. The relation between optimal performance coefficient and rate of heating of a Endoreversible three source heat pump with nonlinear heat transfer
    非线性传热情况下内可逆三热源热泵的最佳供热系数与供热率间的关系
  24. Heat Transfer Effect on the Specific Rate of Heating of Continuous Flow Two-Heat-Sources Heal Pumps
    热传导对连续流两热源热泵供热率密度的影响
  25. By combining with the change of the flow pattern, the factors which affected the thermal transport properties of PHP, such as fill ration, inclination angle, the mass flow rate of heating/ cooling fluid were studied in this paper.
    结合流型的变化,研究了变充液率、倾角、加热/冷却流体质量流量,对脉动热管的热输运特性的影响。
  26. Because it was a nonlinear, time-delay system, and there was a big relation in its working process and working environment and the rate of heating and cooling.
    由于该系统是一个非线性、滞后性的温控系统,系统的工作过程与其工作环境以及升温及降温速率都有很大的关系。
  27. The yields of total anthraquinones by different heating modes in ethanol extraction process were compared. The extraction rate of ethanol extraction by normal heating mode is 94.91%, the rate of microwave-assisted extraction is 79.11%.
    比较了乙醇提取过程中采用不同加热方式对决明子总蒽醌提取率的影响,其中普通加热方式的乙醇回流提取为94.91%,微波辅助提取为79.11%。
  28. Learn from the experiment result we get to know: the reaction rate of the microwave radiation heating enhances 12 times and the production rate increases nearly 10% compare with the traditional heating.
    从实验结果可知,利用微波辐射加热合成,与传统加热合成相比,反应速度提高12倍,且产率增加近10%。
  29. The results showed that the leaching rate of manganese with water-bath heating is higher than that of microwave heating at the same temperature.
    论文以电解二氧化锰(EMD)为研究对象,对水浴加热和微波加热两种方式下锰浸出率进行了对比,实验结果表明:相同温度下,水浴加热的锰浸出率要高于微波加热。
  30. Obviously traditional welding method can not provide high enough rate of heating and cooling, so it is necessary to apply rapid heating and cooling methods such as laser and electron beam.
    传统的焊接方法显然不能提供足够快的加热和冷却速率,需要采用能够提供快速加热和冷却的激光和电子束等焊接方法。