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    PATTERN RECOGNITION FOR COAL GAS TEMPERATURE DISTRIBUTION OF THE TOP OF BLAST FURNACE BASED ON NEURAL NETWORKS
    基于神经网络的高炉炉顶煤气温度分布的模式识别
    Discussion on Gas Temperature at the Final Cooling Stage
    终冷段煤气温度的探讨
    Effect of Wet Gas Temperature on Production and the Control
    湿煤气温度对生产的影响及其控制
    Suggestions and Measures to Decrease Temperature of Blast Furnace Gas
    降低高炉煤气温度的建议与措施
    Study on Neural Network for the Recognition of Blast Furnace Top Gas Temperature Distribution
    高炉炉顶煤气温度分布模式识别神经元网络的研究
    3 BF (318 m3) pebble stoves on blast furnace gas only , the air is preheated to 100~160℃ by the residual heat of store off-gas , the BF gas is cleaned by bag dedusting system and the temperature is 80~150℃ .
    利用热风炉烟道废气余热将助燃空气预热到100~160℃; 高炉煤气用布袋除尘技术使净煤气温度保持在80~150℃。
    The temperature of desulfurization solution is 35℃~45℃ and gas temperature is 25℃~35℃.
    控制脱硫液温度35℃ ̄40℃,煤气温度25℃ ̄35℃,保证系统正常运行;
    Research on raw coal gas temperature to judge final coking time
    用粗煤气温度判断结焦终了时间的研究
    This paper describes the industrial tests on the main gas parameters having impact on TRT power, the flow rate, pressure, temperature and dust content of the gas into turbine.
    本文对影响TRT功率的主要煤气参数,进入透平机的煤气流量、煤气压力、煤气温度、煤气含尘量进行了工业实验。
    In order to effectively increase gas temperature at TRT entry and increase turbine delivery as well as to ensure gas quality at exit of gas cleaning system, the water supply process and packing layer of the packing dewaterer are upgrade based on industrial tests . By reducing water supply volume, the gas temperature at entry of turbine is increased to 60癈,and the annual recovered electricity by TRT is increased by 1,855,000 kWh.
    为有效提高TRT入口煤气温度,使透平机的出力增加,同时保证煤气洗涤系统出口煤气品质,在工业实验的基础上,对填料式脱水器供水工艺及填料层西安建筑科技大学工程硕士论文一 进行改造,通过减少供水水量,使透平机的入口煤气温度提高到 60oC,使 TRT每年多回收电能185.5万h。
    The new method has been successfully applied to the optimization of the flowrate of circulating water for the CO shift section in ammonia synthesis.
    通过对合成氨变换工段循环热水系统以饱和塔出口半水煤气温度最大为目标函数进行优化计算,证明本文方法是成功的.
    gas temperature control system.
    设有控制煤气温度的升、降温装置。
    Bag selection improvement of hanging structure, temperature control of the half-cleaned gas, dust transporting and dumping, reverse-blowing for dust cleaning are emphasized.
    对滤袋选择及吊挂结构的改进以及半净煤气温度控制、输卸灰和反吹清灰等的改进作了重点论述。
 

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