基于实际应用的无人煤质化验系统测试性能分析Performance Analysis of Unmanned Coal Quality Testing System Based on Practical Applications
郭莉莉,戴慧,柯妍,周思旭,王康
摘要(Abstract):
通过开发先进的全自动无人煤质检测系统,确保煤炭开采和加工系统不受人为干扰,保证数据不落地,具有极为重要的意义。本文介绍了全自动无人煤质检测系统的工作条件、系统组成以及工艺流程,并将测量的标准煤的发热量、硫含量、水分、灰分、挥发分和碳氢氮含量数据与标准值进行了比较和分析。结果表明,无人煤质检测系统能够自动检测煤炭的相关参数,检测结果符合国家相关标准。
关键词(KeyWords): 无人煤质检测系统;数据对比分析;准确度;标煤
基金项目(Foundation): 国电环境保护研究院有限公司科技项目(MJ2023Y01)
作者(Author): 郭莉莉,戴慧,柯妍,周思旭,王康
参考文献(References):
- [1]姜立永.论智能数字化煤场管理系统在火电厂燃料管理中的应用[J].中国石油和化工标准与质量,2018, 38(5):50-1.JIANG L. Application of intelligent digital coal yard management system in fuel management of thermal power plants[J]. China Petroleum and Chemical Standard and Quality, 2018, 38(5):48-49.
- [2]安海泉,刘臻,方薪晖,等.煤质在线分析技术进展及在煤气化技术中的应用分析[J].煤化工,2020, 48(5):51-5.AN H,LIU Z,FANG X,et al.Progress of online coal quality analysis technology and application analysis in coal gasification technology[J].Coal Chemical Indastry, 2020, 48(5):45-49.
- [3]冯佐江,李红建,杨勇,等. 1000 MW燃煤机组燃料智能管控系统整体解决方案及应用[J].华电技术,2020(42):22-27.FENG Z, LI H, YANG Y, et al. Overall solution and application of fuel intelligent management and control system for 1000 MW coal-fired units[J]. Huadian Technology, 2020(42):22-27.
- [4]高满达,李庚达,王昕,等.火电厂智能燃料典型建设方向与应用研究进展[J].热力发电,2021, 50(5):10-17.GAO M,LI G,WANG X,et al. Progresson typical construction direction and application for smart fuel in thermal power plants[J].Thermal Power Generation, 2021, 50(5):10-17.
- [5]邵颖.多场所煤质检测实验室质量抽查经验总结[J].煤炭加工与综合利用,2020, 256(11):74-7.SHAO Y.Summary of quality inspection experience in multi site coal quality testing laboratories[J]. Coal Processing&Comprehensive Utilization, 2020(11):66-69.
- [6]龚福.电厂燃料智能化系统建设初探[J].煤质技术,2018, 217(2):35-7,40.GONG F.Preliminary exploration on the construction of intelligent fuel system in power plants[J]. Coal Quality Technology, 2018(2):30-32,35.
- [7]王凯杰,朱潘鑫,臧剑南.火电厂智能燃料全流程一体化发展方向[J].现代制造技术与装备,2020(11):29-34.WANG K, ZHU P, ZANG J. Integrated development of intelligent fuel overall processin coal-fired power plant[J]. Modern Manufacturing Technology and Equipment, 2020(11):29-34.
- [8]程盼,姚春雨.基础地理信息共享平台设计与实现[J].中国煤炭地质,2022, 34(9):73-76.CHENG P, YAO C. Design and implementation of basic geographic information sharing platform[J]. Coal Geology of China, 2022, 34(9):73-76.
- [9]陈东彪.燃料数字智能一体化管控系统规划与设计研究[J].科技创新导报,2019, 16(27):7-9.CHEN D. Research on planning and design of fuel digital intelligent integrated control system[J]. Science and Technology Innovation Herald, 2019, 16(27):1,3.
- [10]杨新荣.燃料智能化管理系统建设及其成效初探[J].煤质技术,2019,(1):40-2.YANG X. Construction and preliminary exploration of fuel intelligent management system and its effectiveness[J]. Coal Quality Technology,2019, 34(1):40-42.
- [11]喻军.火电厂入厂煤质检测结果质量分析[J].煤质技术,2020, 35(1):90-92.YU J.Quality analysis of coal quality testing results for thermal power plants entering the plant[J]. Coal Quality Technology, 2020, 35(1):90-92.
- [12]丁恋,任辉,孙杰,等“.东数西算”战略背景下煤炭行业智能矿山建设存在的问题与对策[J].中国煤炭地质,2022, 34(4):14-18,78.DING L, REN H, SUN J, et al. Problems and countermeasures in the construction of intelligent mines in the coal industry under the background of the"East Calculation and West Calculation"strategy[J].Coal Geology of China, 2022, 34(4):14-18,78.
- [13]赵欣.“双碳”背景下国外能源生产消费现状对我国能源安全保障的启示[J].中国煤炭地质,2022, 34(11):35-40,45.ZHAO X. The Enlightenment of foreign energy production and consumption status on China’s energy security under the background of"dual carbon"[J]. Coal Geology of China, 2022, 34(11):35-40,45.
- [14]周娟.浅析火电厂煤质检测的质量控制[J].煤质技术,2019,(4):45-48.ZHOU J. Quality analysis of coal quality testing results for thermal power plants and quality control of coal quality testing in thermal power plants[J]. Coal Quality Technology, 2019, 34(4):45-48.
- [15]罗建明,陈超,何帅,等.煤质化验无人化智能分析系统的研究探讨[J].煤质技术,2019,34(6):44-47.LUO J,CHEN C,HE S,et al. Research on unmanned intelligent analysis system of coal quality testing[J]. Coal Quality Technology,2019, 34(11):44-47.