1) temperature rise of flyer
飞片温升
2) Wall temperature uprise
壁温飞升
3) temperature run-away
飞温
1.
In a pilot scale reverse flow reactor with a liter of catalyst, catalytic combustion of typical industrial waste gas contaminated with volatile aromatic compounds (VOC) was systematically investigated, and the "temperature run-away"in the case of too high feed concentration and the "extinction of reactor" in the case of low feed concentration were observed.
在流向变换催化燃烧小型中试装置上利用国产催化剂进行了含混合芳烃模拟工业废气的净化试验 ,重点考察了挥发性有机物 (VOCs)能够通过调整换向周期在既不“飞温”也不“熄火”的条件下保持很高的VOCs转化率的浓度变化范围 ,初步观察了由于VOCs浓度过高或过低所引起的“飞温”或“熄火”过
4) runaway
[英]['rʌnəweɪ] [美]['rʌnə'we]
飞温
1.
The Criterion for Runaway of the n-th Order Reaction in Fixed Bed Reactor;
固定床反应器进行n级反应的飞温判据
2.
In this paper, the runaway phenomenon for parallel reactions in fixed bed catalytic reactors has been studied in detail when cooling medium temperature is fixed.
对在固定床催化反应器中冷却介质温度恒定时平行反应的飞温现象做了详尽的理论分析,推导出该系统安全操作所允许的温度上限和临界初始条件。
3.
In this paper, the runaway phenomenon for parallel reactions in fixed bed catalytic reactors with changes of cooling medium temperatures along the axis of the reactor has been studied.
对冷却介质温度沿反应器轴向变化时平行反应的飞温现象进行了研究,揭示出临界等浓度曲线拐点是冷却介质温度沿轴向变化时反应系统发生飞温的临界点。
5) flyer
[英]['flaɪə(r)] [美]['flaɪɚ]
飞片
1.
Numerical simulation on acceleration process of flyer driven by detonation product through an air cushion;
爆轰产物驱动飞片运动数值模拟研究
2.
Experimental Study on Al Flyer Driven by Laser and Increasing Material Pressure with Flyer;
激光驱动Al飞片及利用飞片增加材料压力的实验研究
3.
This paper described the physics process of a plastic flyer accelerated byan exploded metal foil, driven by a strong electric pulse.
本文分析了强电流脉冲引爆金属箔加速塑料飞片(冲击片)的物理过程,给出了近似计算飞片速度的几种方法,并与实测速度进行了比较。
6) flyer plate
飞片
1.
Launch technique for isentropic compression flyer plates magnetically driven by using fast pulsed power;
一维平面磁驱动等熵加载发射飞片技术
2.
5mm-thick steel flyer plate driven by the explosive T/Γ35/65.
为了获得有效的爆轰加载下的飞片自由面速度剖面的测量结果,设计了一种紧凑的Fabry-Perot干涉仪。
补充资料:飞温
分子式:
CAS号:
性质:反应器处在非稳定的操作状态下,当操作参数有小的扰动,反应器的局部地方或整个反应器中的温度便会大幅度地上升的现象。飞温是由于反应系统在操作条件下处于“多态”状况所致,它在很大程度上是由反应热效应与传热过程的相互作用产生的。它常导致正常运转的破坏,甚至把催化剂烧毁。可以通过理论分析加以防止。
CAS号:
性质:反应器处在非稳定的操作状态下,当操作参数有小的扰动,反应器的局部地方或整个反应器中的温度便会大幅度地上升的现象。飞温是由于反应系统在操作条件下处于“多态”状况所致,它在很大程度上是由反应热效应与传热过程的相互作用产生的。它常导致正常运转的破坏,甚至把催化剂烧毁。可以通过理论分析加以防止。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条