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快热式电热水器模拟控制技术
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作者 杨友林 《家电科技》 2013年第11期92-93,共2页
快热式电热水器的模拟控制技术,可以真正适应家用电器行业的需要,生产出一大批新的符合节能、环保、健康、生态的绿色新型产品。其核心技术是一种新型微型化的控制器,这个新型微型化控制器完全能在交流电源下工作,具备智能工作功能,能... 快热式电热水器的模拟控制技术,可以真正适应家用电器行业的需要,生产出一大批新的符合节能、环保、健康、生态的绿色新型产品。其核心技术是一种新型微型化的控制器,这个新型微型化控制器完全能在交流电源下工作,具备智能工作功能,能感知到外界工作条件的变化。如遇发热系统过温、加热器过载等故障,就会自动对控制加热器限流,甚至全部自动切断工作电流,确保快热式电热水器的安全。应用于中、高档淋浴器中,只要加上一个有限温55℃的LED显示屏和一个供电转换模块,就可以很方便组成一个全新的无级模拟控制系统。 展开更多
关键词 模拟控制技术 微型控制 控制系统
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石油化工流程模拟、先进控制与过程优化技术的现状与展望 被引量:18
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作者 徐用懋 杨尔辅 《工业控制计算机》 2001年第9期21-27,共7页
流程模拟、先进控制和过程优化技术的研究与应用是石油化工过程的一个重要方面。本文论述了该技术的发展现状和趋势,分析了我国在该研究中存在的主要问题、面临的机遇与挑战,指出了关键的技术问题。此外,对流程模拟、先进控制和过程优... 流程模拟、先进控制和过程优化技术的研究与应用是石油化工过程的一个重要方面。本文论述了该技术的发展现状和趋势,分析了我国在该研究中存在的主要问题、面临的机遇与挑战,指出了关键的技术问题。此外,对流程模拟、先进控制和过程优化技术的经济效益与应用前景也做了分析。最后,对于如何在我国开展石油化工流程模拟、先进控制与过程优化技术的研究与应用提出了几点建议和对策。 展开更多
关键词 石油化工 流程模拟 先进过程控制 优化技术 过程建模
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岩层控制模拟技术精品课程建设
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作者 赵国贞 李建忠 +1 位作者 王开 弓培林 《中国冶金教育》 2020年第2期23-25,共3页
在矿业类专业课岩层控制模拟技术精品课程建设过程中,更新教学理念,改进教学方法,探索"特色教材+虚拟仿真实验+慕课学习"一体化精品课程建设思路。在建设"十三五"特色教材的基础上,开发相似模拟虚拟仿真实验平台,... 在矿业类专业课岩层控制模拟技术精品课程建设过程中,更新教学理念,改进教学方法,探索"特色教材+虚拟仿真实验+慕课学习"一体化精品课程建设思路。在建设"十三五"特色教材的基础上,开发相似模拟虚拟仿真实验平台,打造微课慕课网络学习网站,深度融合现代教育技术与高等教育教学,实现"以生为本"、泛在化、个体化学习模式,提高课程教学质量。 展开更多
关键词 岩层控制模拟技术 特色教材 虚拟仿真 微课慕课 精品课程
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计算机模拟和控制技术在污水处理中的应用探析 被引量:1
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作者 路越 《信息与电脑(理论版)》 2015年第24期17-18,共2页
随着社会经济发展,大量工业废水和生活污水不可避免地产生,造成了严重的水资源浪费和水资源污染。水资源对于人类的意义不言而喻,因此,如何使用计算机技术来处理污水,是必须高度关注的问题。本文首先明确了污水处理的重要性,接着结合国... 随着社会经济发展,大量工业废水和生活污水不可避免地产生,造成了严重的水资源浪费和水资源污染。水资源对于人类的意义不言而喻,因此,如何使用计算机技术来处理污水,是必须高度关注的问题。本文首先明确了污水处理的重要性,接着结合国内外优秀做法,然后再通过具体实例,对计算机模拟和控制技术在污水处理中的应用进行了探讨。 展开更多
关键词 计算机技术:模拟控制:污水处理
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舞台灯光新科技应用今昔谈 被引量:1
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作者 涂怀军 《影剧新作》 2014年第3期73-74,共2页
专业舞台灯光设备控制技术的发展从15世纪欧洲宫廷及贵族欣赏节目演出开始,到后来伴随电力的发明产生焕然一新的变化。舞台灯光控制技术经历了原始控制技术阶段、模拟控制技术阶段、数字化技术控制阶段、以及智能化网络化控制阶段。清... 专业舞台灯光设备控制技术的发展从15世纪欧洲宫廷及贵族欣赏节目演出开始,到后来伴随电力的发明产生焕然一新的变化。舞台灯光控制技术经历了原始控制技术阶段、模拟控制技术阶段、数字化技术控制阶段、以及智能化网络化控制阶段。清代后期,宫中和民间都在演出"灯彩戏"。光绪十年(1884)慈禧寿诞时,一次演出就用去蜡烛448枝,而民间演出的《牛郎织女》也用了许多喜鹊灯。辛亥革命后,中国剧场一般使用汽灯或电灯照明。 展开更多
关键词 舞台灯光 科技应用 灯彩戏 《牛郎织女》 模拟控制技术 网络化控制 光绪十年 设备控制 灯光控制系统
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ABS气压调控特性的研究
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作者 张致兴 吕书然 《人民公交》 2004年第5期58-59,共2页
关键词 压力控制 预测控制技术 制动压力 制动力矩 附着系数 模拟控制技术 脉冲增压 电磁阀 气压 中型汽车
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萨姆森公司 3730系列定位器
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《流程工业》 2004年第9期84-84,共1页
关键词 萨姆森公司 SAMSON3730定位器 结构设计 模拟控制技术
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Deformation mechanism and excavation process of large span intersection within deep soft rock roadway 被引量:24
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作者 LI Guofeng, HE Manchao, ZHANG Guofeng, TAO Zhigang Institute of Geotechnical Engineering, China University of Mining & Technology, Beijing 100083, China 《Mining Science and Technology》 EI CAS 2010年第1期28-34,共7页
The FLAC3D software was used to simulate and analyze numerically the displacement, stress and plastic zone distribu-tion characteristics of a large span intersection in a deep soft rock roadway after the surrounding r... The FLAC3D software was used to simulate and analyze numerically the displacement, stress and plastic zone distribu-tion characteristics of a large span intersection in a deep soft rock roadway after the surrounding rock was excavated. Our simula-tion results show that there are two kinds of dominating factors affecting roadway stability at points of intersection, one is the angle between horizontal stress and axial direction of the roadway and the other are the angles at the points of intersection. These results are based on a study we carried out as follows: first, we analyzed the failure mechanism of a large span intersection and then we built a mechanical model of a rock pillar at one of the points of intersection. At the end of this analysis, we obtained the failure characteristics of the critical parts on the large span intersection. Given these failure characteristics, we proposed a new supporting method, i.e., a Double-Bolt Control Technology (DBCT). By way of numerical simulation, DBCT can effectively control the deformation of the surrounding rock at the points of intersection in roadways. 展开更多
关键词 DEEP soft rock JUNCTION numerical simulation
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Effect of key factors on cold orbital forging of a spur bevel gear 被引量:1
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作者 庄武豪 董丽颖 《Journal of Central South University》 SCIE EI CAS CSCD 2016年第2期277-285,共9页
Cold orbital forging is an advanced spur bevel gear forming technology. Generally, the spur bevel gear in the cold orbital forging process is formed by two steps: the preforming step and the final step. Due to the gre... Cold orbital forging is an advanced spur bevel gear forming technology. Generally, the spur bevel gear in the cold orbital forging process is formed by two steps: the preforming step and the final step. Due to the great importance of the final step to gear forming and its complication with interactive factors, this work aims at examining the influence of key factors on the final step in cold orbital forging of a spur bevel gear. Using the finite element(FE) method and control variate method, the influence rules of four key factors, rotation velocity of the upper tool, n, feeding velocity of the lower tool, v, tilted angle of the upper tool, γ, friction factor between the tools and the billet, m, on the geometry and the deformation inhomogeneity of the cold orbital forged gear are thoroughly clarified. The research results show that the flash becomes more homogeneous with increasing v, increasing m, decreasing n or decreasing γ. And the deformation of the gear becomes more homogeneous with increasing v, decreasing n or decreasing γ. Finally, a corresponding experiment is conducted, which verifies the accuracy of FE simulation conclusions. 展开更多
关键词 cold orbital forging FE modeling key factors spur bevel gears
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Precision blasting, current status and its prospective
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作者 Xie Xianqi 《Engineering Sciences》 EI 2014年第6期16-23,共8页
Precision blasting,which is different from traditional control blasting,is regarded as the sign of new development stage of engineering blasting.The definition,connotation,technology system and current situation of it... Precision blasting,which is different from traditional control blasting,is regarded as the sign of new development stage of engineering blasting.The definition,connotation,technology system and current situation of its application and development were described briefly.With regard to the prospect of precision blasting,following aspects for further study are recommended:a.A multiple disciplinary study should be developed for a more understanding on the explosive energy release and quantitative blasting design;b.according to the requirements of digital blasting objective,syncretic study of precision blasting and technology should be enhanced;c.numerical simulation was an important tool for optimizing engineering blasting scheme and blasting harmful effects control,a more elaborate precision numerical simulation method should be studied furthermore;d.the modernization and standardization of precision blasting construction should be enhanced. 展开更多
关键词 precision blasting current situation information technology STANDARDIZATION PROSPECT
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Boundary layer separation control on a highly-loaded,low-solidity compressor cascade 被引量:6
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作者 Zhou Yang,Liu Huo-xing,Zou Zheng-ping and Ye Jian National Key Lab.on Aero-Engines,Aero-Engines Simulation Research Center,Beijing Univ.of Aero.& Astro.,Beijing 100083 《Journal of Thermal Science》 SCIE EI CAS CSCD 2010年第2期97-104,共8页
Separated flow can be effectively controlled through the management of blade boundary layer development.Numerical simulations on a highly-loaded,low-solidity compressor cascade indicate that combined blowing and sucti... Separated flow can be effectively controlled through the management of blade boundary layer development.Numerical simulations on a highly-loaded,low-solidity compressor cascade indicate that combined blowing and suction flow control technique can significantly improve cascade performance,especially in increasing the cascade loading and static pressure ratio as well as decreasing the loss coefficient.Meanwhile,it is more effective to improve cascade performance by blowing near leading edge on suction surface than suction near trailing edge.Both the locations and flow rates of blowing and suction are major impact factors of this method to cascade performance.Comparing to the baseline,the static pressure ratio increases by 15% and loss coefficient decreases by 80%,with a blowing fraction of 1.7% and a suction fraction of 1.38% of the inlet mass flow. 展开更多
关键词 combined blowing and suction flow control compressor cascade boundary layer separated flow
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