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81.
82.
梭车是短壁机械化开采技术的重要运输设备。简要介绍了现有梭车的现状及应用局限,详细阐述了分体梭车的主要设计思路,重点介绍了薄壁分体式机架的结构特征,阐述了分体梭车在模块化卷电缆装置、四象限变频驱动等方面的技术升级,并介绍了分体梭车在国内矿区的应用情况。 相似文献
83.
《International Journal of Hydrogen Energy》2020,45(29):14614-14624
The paper deals with the primary current frequency regulation in the energy system (ES) as well as the basic requirements for NPP power units (PUs) under the conditions of involvement into the primary regulation. According to these requirements, NPP operation is related to the unloading and corresponding decrease in efficiency. It has been shown in this connection that combining NPP with a hydrogen complex (HEC) allows excluding the inefficient unloading mode. This enables the steam turbine and reactor equipment to operate in the basic mode at nominal power level. Besides, the conditions for producing and storing hydrogen and oxygen during the day as well as additionally during the night-time of off-peak electrical load may be created, which allows using them for generating peak power.In the paper, the systemic economic benefit as a result of involving NPP combined with HEC into primary regulation of the current frequency in ES with allowance for expending resources for the main equipment has been estimated. In this regard, the paper gives grounds for cyclic loadings of HEC main equipment including metal tanks for storing hydrogen and oxygen, compressors, hydrogen-oxygen combustion chamber (HOCC) for hydrogen-steam superheating of the actuating medium in the NPP steam turbine cycle. Methodological grounds for evaluating the equipment endurance under cyclic loading with involving into the primary frequency regulation by the criterion of the fatigue crack growth rate are described. It has been shown that in terms of HEC equipment, the highest load intensity occurs in HOCC due to high thermal stresses.Also, the systemic economic benefit has been estimated, and the impact of the equipment deterioration under conditions of cyclic loading has been demonstrated. It is shown that when combining NPP PUs with HEC, the efficiency of primary regulation may significantly depend on such factors as the cost of equipment exposed to cyclic loads, the frequency and intensity of cyclic loads, and the relation between the peak electricity tariff and the cost price of electric energy produced by NPP.It has been shown on the basis of novel methods for estimating the efficiency of involving NPP with HEC into the primary frequency regulation with allowance for damage to the equipment, that the use of HEC may provide a considerable economic benefit, as compared to the version of NPP unloading when involving directly into frequency regulation. 相似文献
84.
针对多点驱动带式输送机功率不平衡降低输送效率及生产寿命问题,对多电机间的协调控制进行研究。对传统偏差耦合多电机协调控制结构进行了改进,增加了基于转速功率控制的同步误差补偿器,通过求取所有电机的平均转速和单台电机的转速差,利用PI控制器,同时结合每台电机的系统转速跟踪误差,反馈补偿到每台电机的控制回路进行多电机协调控制。仿真结果表明,系统可以在负载变化扰动的情况下有效降低各电机的同步误差,特别是对系统刚启动时负载不均衡导致的电机功率不平衡问题,改进结构可以有效实现多电机间的功率平衡分配。 相似文献
85.
通过对东峡煤矿主煤流运输系统的改造,设计了一套智能化集控系统,采用变频驱动,并结合料流传感器,增设无线基站、本安网络摄像仪和语音扩播终端等设备,实现了带式输送机载荷分布的自动调节,提高了系统的可靠性和运行效率,实现了减员、节能、增效的目的。 相似文献
86.
87.
针对目前大部分矿井提升机仍采用转子串电阻调速方法造成能量浪费的现状,提出了一种双PWM变频调速方案:三相电压型PWM整流器采用电压、电流双闭环控制,其中电流环引入前馈解耦控制,并结合空间矢量脉宽调制(SVPWM)算法来提高直流电压利用率。仿真实验的结果表明,该双PWM变频调速系统控制精度高、动态响应快、抗扰能力强,能有效地实现矿井提升机的节能降耗。 相似文献
88.
本文研究了完全氮化的(Sm1-yCey)2Fe17Nx(y = 0、0.20、0.33、0.40、0.45、0.50、0.67、0.80、1.00)粉末的磁性能和微观结构。当用33atomic%Ce代替Sm时,最大磁能积(BH)max从17.8 MGOe变为17.6 MGOe,几乎没有下降。相应的,性能/稀土价格比率提高了39.2%。 根据能量色散光谱(EDS)分析,Ce倾向于分布在REFe3 / REFe2晶界相中。XPS证实了(Sm1-yCey)2Fe17Nx中Ce离子的价态变化。 相似文献
89.
《中国有色金属学会会刊》2020,30(4):883-895
Based on orthogonal experiments, the effects of voltage, frequency, duty ratio and their interactions on the thickness and corrosion resistance of coatings prepared by plasma electrolytic oxidation (PEO) on aluminum in an alkaline silicate-containing electrolyte were investigated. The thicknesses of these coatings were obtained by measuring their cross-section using Image J software. Their corrosion resistances were evaluated in HCl and NaCl media through spot test and electrochemical test. The results show that the experimental design of this study is the key to investigate the interactions among these electrical parameters. Additionally, not only each independent factor, but also their interactions exhibit a remarkable influence on the coatings. The combination of high voltage, low frequency and large duty ratio significantly increases the coating thickness and content of the corrosion resistance phase, and thus improves the corrosion resistance of the coating in HNO3 medium. Conversely, the coating possessing the densest microstructure and best corrosion resistance in NaCl medium is obtained when low voltage and high frequency match with a small duty ratio. 相似文献