|本期目录/Table of Contents|

[1]张建华,张 波,宫娜娜.热风高压试验装置温度跟踪保护控制系统设计与应用[J].工业仪表与自动化装置,2020,(02):28-32.
 ZHANG Jianhua,ZHANG Bo,GONG Nana.Design and application of temperature tracking protection control system for high pressure test equipment of electric hot air[J].Industrial Instrumentation & Automation,2020,(02):28-32.
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热风高压试验装置温度跟踪保护控制系统设计与应用

《工业仪表与自动化装置》[ISSN:1000-0682/CN:61-1121/TH]

卷:
期数:
2020年02期
页码:
28-32
栏目:
出版日期:
2020-04-15

文章信息/Info

Title:
Design and application of temperature tracking protection control system for high pressure test equipment of electric hot air
文章编号:
1000-0682(2020)02-0000-00
作者:
张建华1张 波2宫娜娜2
1.陕西能源职业技术学院,陕西 咸阳 712000;
2.中国石油集团川庆钻探工程有限公司长庆井下技术作业公司,西安 710021
Author(s):
ZHANG Jianhua1 ZHANG Bo2 GONG Nana2
1.Shaanxi Energy Institute, Shaanxi Xianyang,712000,China;
2.CCDC Changqing Downhole Technology Company, Xi,an 710021,China
关键词:
电热风高温高压串级控制跟踪保护控制系统
Keywords:
electric hot airhigh temperature and high pressurecascade controltracking protection control system
分类号:
TP273
DOI:
-
文献标志码:
A
摘要:
针对热风试验装置釜体热应力和升降温效率之间矛盾,根据电热风传导传热特性,将热风加热装置的温度测控系统划分为釜内和釜壁2个控制回路独立、执行回路关联的双回路温控系统,采用釜内与釜壁遥控跟踪的控制方式,实现釜壁温度自动校正,使釜体应力保护在限定温度范围。在保证釜体安全的前提下,系统自动根据釜内试验目标温度,调节加热电源功率调整装置的输出功率,以最快速度按照试验要求对釜内试验介质温度进行精确控制,完成热风加热的高温高压试验。
Abstract:
In view of the contradiction between the thermal stress and the temperature rise and fall efficiency of the hot air test device, according to the characteristics of electric hot air conduction and heat transfer, the temperature control system of the hot air heating device is divided into two loop temperature control systems, which are independent control loops in the kettle and the kettle wall and are associated with the executive loop. The control mode of remote control and tracking in the kettle and the kettle wall is adopted to realize the automatic temperature correction of the kettle wall, so that the kettle body should be The force protection is in the limited temperature range. On the premise of ensuring the safety of the kettle body, the system automatically adjusts the output power of the heating power supply power adjustment device according to the target temperature of the kettle test, accurately controls the temperature of the test medium in the kettle at the fastest speed according to the test requirements, and completes the high temperature and high pressure test of hot air heating.

参考文献/References:

[1]张建华.高温电阻炉温度区别跟踪测控系统[P].中国专利: CN203116546U,2013-08-07.?

[2] 张建华.一种热风加热试验装置温度跟踪保护控制系统 [P].中国专利:CN201320373062.8,2014-01-15.
[3] 刘辉,孙新波.高温高压釜加热系统的测温模型及控制[J].测井技术,2005(S1):30-32+84.
[4] 刘翠玲,王子才,陈建明,等.高温超高压釜加热过程的预测模型与研究[J].哈尔滨工业大学学报,2001(5):697- 699+705.
[5] 林建民.全氢罩式退火炉自动控制系统[J].工业加热, 2011(2):21-23.
[6] 张建华,樊新战,张永武,等.高温高压热风加热装置温度串级PID控制策略的研究与应用[J].工业加热,2013(5): 15-17.
[7] 陈爱金.浅谈高低温试验箱中PID控制新方法的应用[J].计算机产品与流通,2017(7):156.
[8] 钟佳岐,梁山,熊庆宇.德拜媒质微波加热过程的H∞保性能温度跟踪控制[J].自动化学报,2018(8):1518-1527.

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备注/Memo

备注/Memo:
收稿日期:2019-12-25
基金项目:陕西能源职业技术学院科技攻关资金支持项目(18KYG01);咸阳市2018年科学技术研究计划支持项目(2018k02-17)
作者简介:张建华(1982),陕西咸阳人,博士生,高级工程师,研究方向为电热设备节能控制与煤矿安全监控技术研究。
更新日期/Last Update: 1900-01-01