冷却剂

lěng què jì
  • coolant;cryogen;cooling material;cooling agency
冷却剂冷却剂
冷却剂[lěng què jì]
  1. 建议应用冷却剂。

    It is advisable to apply a coolant .

  2. 利用反应堆~(16)Nγ噪声监测一回路冷却剂流量

    Reactor ~ ( 16 ) N γ Noise Monitoring for PWR Coolant Flow Measurement

  3. 用6种不同的冷却剂,355个实验数据进行修正处理求得了常数A和指数h,m,n的数值。

    Correlated with 6 different coolant , 355 experimental data , constant A and exponents K , m , n are obtained .

  4. 球床堆内冷却剂流动与传热特性的CFD研究

    CFD Research on Flow and Heat Transfer Characteristics of Coolant in Pebble Bed Reactor Core

  5. 介绍了一种新的探测反应堆一回路冷却剂向二回路泄漏的方法&~(16)N测量法。

    A new method , the nitrogen 16 measurement method for monitoring the leakage of the primary coolant into the second circuit in the reactor has been presented .

  6. 核级阴树脂在PWR主回路冷却剂中的氯离子释放行为研究

    Investigation of chloride release of nuclear grade resin in PWR primary system coolant

  7. 在堆芯内装载武器级钚,包层内装载Th,选取液态钠为冷却剂。

    Weapons grade Pu was loaded into the core with Th in the blanket . Liquid sodium was used as the coolant .

  8. 采用BP网络确定控制变量,即吹炼终点所需要补吹的氧气量和冷却剂加入量。

    BP network used to determine control variables , namely , the need to fill the end of blowing blowing oxygen and the amount of refrigerant .

  9. CARR冷却剂系统设计及分析

    Design and Analysis of Coolant System of CARR

  10. 为了能够运作,ISS需要支撑架帮它定型以方便电流和液态冷却剂的输送。

    To function , the ISS needs trusses to keep it rigid and to route electricity and liquid coolants .

  11. 为了减少MHD的压降,冷却剂LiPb轴向流入再生区。

    In order to reduce the MHD pressure drop , LiPb flows in the blanket axially .

  12. 建模与仿真的范围是:反应堆冷却剂系统(RCP)、与安全分析相关的一回路辅助系统。

    The range of modeling and simulation are : the reactor coolant system ( RCP ) and the auxiliary systems relative to security analysis .

  13. 主循环泵机组是CARR反应堆冷却剂系统中的主要设备。

    The Main circulating pumps are the most important equipments of Reactor Cooling System ( RCS ) of China Advanced Research Reactor ( CARR ) .

  14. 同时,还分析了包层冷却剂丧失事故LOCA的瞬态热工过程。

    Also , the analysis of transient thermal process in the blanket after a loss-of-coolant accident ( LOCA ) has been made .

  15. 并为中国氦冷固体增殖实验包层模块冷却剂丧失事故(LOCA)分析开发了一维喷放和余热排除计算模型。

    A1-D flow discharge model for coolant blow-down and1-D heat transfer model for afterheat removal aiming at TBM LOCA analysis are developed .

  16. 由于堆芯冷却剂密度低,因此SCWR可设计为热堆,也可设计为快堆。

    The coolant density of SCWR is low , soit can be designed into a thermal reactor or fast reactor .

  17. 在实时仿真支撑平台ASCA下对反应堆主冷却剂系统进行了建模、编程和计算。

    Under the real-time simulation support system ASCA , a reactor coolant system is modeled , programmed and computed .

  18. 结果最佳工艺条件为药液温度95℃,冷却剂温度6℃,滴距10cm。

    Results The optimum preparation conditions could be seen as the temperature of drug liquid 95 ℃, the temperature of 6 ℃, and the dropping distance 10 cm .

  19. 国内池式轻水研究反应堆中,尽管其燃料元件包壳材料、反应堆水池覆面材料和主要堆内构件材料以及运行温度不一样,其冷却剂pH值都定为偏酸性。

    Although the materials of nuclear fuel cladding , internal surface and the main reactor internals , and operating temperatures of the pool type light water reactors in China are different from each other . All of pH value of water in the pools are always selected as slight acidity .

  20. 堆芯冷却剂平均流速为3.2m/s,小于临界流速;

    The average flowrate of reactor core coolant is 3.2 m / s , lower than the value of critical flowrate ;

  21. 200MW核供热堆堆芯燃料元件盒冷却剂出口温度测量方法实验研究

    Experimental Study on Measurement Method of Exit Temperature of Coolant of Fuel Assembly in Core of 200 MW Nuclear Heating Reactor

  22. 用WIMS-AECL程序计算了参考栅元的冷却剂空泡反应性、燃耗等参数。

    Some important parameters ( coolant void reactivity , burn-up and etc. ) are calculated using the code WIMS-AECL .

  23. 高温气冷实验堆(HTR-10)堆底流道结构的作用之一是使径向温度分布不均匀的堆芯出口冷却剂得到足够的热混合。

    To make the outlet coolant of the pebble bed core of the 10 MW HTR-test module ( HTR-10 ) a sufficient thermal mixing is one of functions of the coolant channel in the core bottom reflector .

  24. 热浸深度、流体与层板壁面的温差大小要受层板的导热系数、冷却剂流量及流动的Kn数等因素的影响。

    The hot-dip-depth and temperature difference between fluid and platelet wall are influenced by many factors , such as the coefficient of heat conductivity of platelet and fluid , the coolant fluid , the Knudsen number , and so on .

  25. 采用二维轴对称N-S方程描述推力室内部燃气的湍流流动与传热,对冷却剂流动采用简化的一维模型,通过室壁的偶合传热采用一维传热模型。

    The two-dimensional Navier-Stokes equations were adopted to describe the hot gas flow , while a reduced one-dimensional model was employed for the coolant flow and heat transfer , and one dimensional heat transfer model was used to calculate the coupling heat transfer through the wall .

  26. LBE和纯Pb之间随Bi含量减少,熔点缓慢上升,没有陡峭边界,结合Pb和LBE的各自优点,可考虑减少Bi的含量,选用亚共晶合金作为冷却剂材料。

    The melting rose slowly with content of Bi decreased Between LBE and pure Pb , and there is no sharp boundary . Thus combining the advantages of Pb and LBE , it can consider to reduce the content of Bi and to use hypoeutectic alloy as the coolant .

  27. 采用U-Pu循环,完成了不同氚增殖剂和冷却剂的裂变抑制包层设计。

    The designs of fission - suppressed blanket were performed for different tritium breeders and coolants , U - Pu Cycle was adopted due to its available technology .

  28. 检测结果还表明,保藏在传统冰块及盐水-冰混合冷却剂中虾的细菌总数(TVC)增加最快,其次是保藏在液态冰中1.5℃的环境下。

    Total viable counts ( TVC ) showed that bacteria grew most quickly in shrimp stored in ice and in salt-water ice , followed by those in liquid ice at 1.5 ℃ or - 1.5 ℃ respectively throughout the storage period .

  29. 根据误差分析,在NHR-200运行工况下堆芯冷却剂出口温度的最大误差是±20℃,满足工程精度的要求。

    According to the error analysis the maximal error of outlet temperature of outlet coolant under operation of NHR-200 is + / - 2 0 degree C which is met with the design requirement .

  30. 以最新微电子设备冷却剂FC-72为工质,实验研究了自由和浸没情况下,圆形射流冲击5mm×5mm模拟电子芯片的局部对流换热情况。

    This study investigates local characteristics of heat transfer from a simulated microelectronic chip to an impinging circular jet , using dielectric liquid ( FC-72 ) as working fluid . The jet diameter studied is 0.987 mm , and the simulated microelectronic chip size is 5 min × 5mm .