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1)  cold-end reservoir
冷端气库
1.
Analysis of pulse tube cooler with cold-end reservoir;
冷端气库型脉管制冷机性能分析
2)  controlled atmosphere cold storage
气调冷库
1.
This system uses 80C51 as the core, collects data bysensor, transmitter and A/D switc her, realizes fuzzy control of environment parameters of controlled atmosphere cold storage by software.
介绍了一个智能化监测与控制系统,以对果蔬气调冷库的贮藏温度、相对湿度、O2、CO2等直接影响贮藏食品质量的环境参数进行高精度监控。
3)  extreme cold weather
极端寒冷天气
4)  cold end
冷端
1.
With a normalization of the bidding procedures for current projects, We can propose proper parameters for turbine cold end, based on the some power plant.
针对目前工程中招标已走向正轨,根据不同的工程应提出适合本工程的汽轮机的冷端参数,结合某电厂实例,通过介绍优化设计的方法,分析各参数之间的相互影响关系,消除人们的一些误解,提出一些粗浅的看
2.
Some procedures of improvement and treatment for the dust removal system at the cold end were recommended based on summarization and analysis of the facts in practical design of the said system.
对浮法玻璃生产线冷端除尘设计中的实践进行归纳和分析,提出了改进和处理方法。
3.
On the basis of optional regrouping of cold end facilities the U-type cold end transportation scheme can cut the length of main line of cold end down significantly,which is important to the short construction sit
浮法玻璃U型冷端输送方案,在优化组合冷端设备的基础上,可以大大缩短冷端主线长度,对解决建设场地短的问题有着非常重要的意义。
5)  cold-end
冷端
1.
This paper makes out detailed analyse and research for operational performance of air-cooling cold-end system, based on the acquired production inside and abroad and the practice of fengzhen power plant.
本文在结合国内外空冷机组冷端系统运行特性问题研究已有的成果基础上,以内蒙古丰镇电厂三号空冷机组冷端系统为对象,从凝汽器压力入手,在综合考虑风速、风向、环境温度等条件下,构建了空冷冷端系统凝汽器压力的分析计算模型。
6)  Cold store
冷库
1.
Theoretical study and CFD prediction of infiltration rate through a cold store entrance under thermal pressure;
三维CFD模型预测热压作用下冷库门的冷风渗透率
2.
Numerical simulation on temperature field in the doorway of a minitype cold store;
小型冷库开关门过程温度场的数值模拟
3.
Discussion about the speed regulation by frequency conversion technology for cold store energy saving;
关于变频调速技术用于冷库节能的探讨
补充资料:冷端温度补偿器
分子式:
CAS号:

性质:一种用于补偿热电偶参比端温度不在0℃时引起热电势变化的装置。本质上是一个直流毫伏发生器,其输出的直流电压正好是热电偶参比端(冷端)温度不在0℃时所减少的热电势。将它串接在热电偶回路中,当热电偶参比端温度不在0℃时,能得到自动补偿。

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