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混合式通风解决掘进串联风的实践
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作者 李之道 钟国清 《矿业安全与环保》 北大核心 2000年第4期14-14,27,共2页
介绍了谢二矿 44- 610m车场掘进采用混合式通风的成功经验。
关键词 混合式通 串联风 掘进 矿山
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采用煤矿用湿式螺弦除尘风机解除采掘工作面串联风的实践
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作者 黄世芳 《低碳世界》 2014年第06X期168-169,共2页
本文主要针对百色东笋煤矿采用煤矿用湿式螺弦除尘风机来临时解除采掘工作面串联风问题进行研究,分析了其理论依据,介绍了其实践过程,通过实践验证了当掘进工作面巷道开口布置在进风巷中,而该巷道还未掘出回风联络巷时,采用煤矿用... 本文主要针对百色东笋煤矿采用煤矿用湿式螺弦除尘风机来临时解除采掘工作面串联风问题进行研究,分析了其理论依据,介绍了其实践过程,通过实践验证了当掘进工作面巷道开口布置在进风巷中,而该巷道还未掘出回风联络巷时,采用煤矿用湿式螺弦除尘风机来临时解除采掘工作面串联风取得良好效果。 展开更多
关键词 煤矿用湿式螺弦除尘 串联风 煤矿用涂覆布负压
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黄金矿山的通风系统改造问题探讨 被引量:8
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作者 胡汉华 《矿业研究与开发》 CAS 北大核心 2006年第5期79-82,共4页
讨论了自然风压的特性及在黄金矿山通风系统改造中的利用问题,认为黄金矿山通风系统在改造前,首先应该优化通风网络。优化通风网络可应用通路法。非用风通路中不在用风通路中出现的分支可视为短路分支,应从通风网络中去掉。包含两条及... 讨论了自然风压的特性及在黄金矿山通风系统改造中的利用问题,认为黄金矿山通风系统在改造前,首先应该优化通风网络。优化通风网络可应用通路法。非用风通路中不在用风通路中出现的分支可视为短路分支,应从通风网络中去掉。包含两条及以上的用风分支的通路可视为污风串联通路,应去掉某些分支消除这些通路,如果为了消除污风串联通路而使网络退化为不连通网络时,则只能通过调整井下作业时间去掉某些用风分支来解决。 展开更多
关键词 网络优化 自然通 系统改造 流短路 串联
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协调相邻风电场之间低电压穿越的综合保护方案 被引量:16
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作者 张曼 姜惠兰 《电网技术》 EI CSCD 北大核心 2013年第7期1983-1989,共7页
多个风电场相邻时,若某一风电场近端发生严重故障,其撬棒投入实现低电压穿越的同时,将对相邻风电场造成影响。根据故障时双馈风力发电机(doubly-fed induction generator,DFIG)的无功功率特性,分析了撬棒投入对相邻风电场的影响以及造... 多个风电场相邻时,若某一风电场近端发生严重故障,其撬棒投入实现低电压穿越的同时,将对相邻风电场造成影响。根据故障时双馈风力发电机(doubly-fed induction generator,DFIG)的无功功率特性,分析了撬棒投入对相邻风电场的影响以及造成相邻风电场撬棒连锁动作的原因,提出了一种基于DFIG转子串联电阻和静止同步补偿器(static synchronous compensator,STATCOM)的综合保护方案及相应的控制策略,以协调多风电场之间的低电压穿越,防止撬棒的连锁动作使电网电压和无功功率进一步恶化。仿真结果表明,所提保护方案能够抑制相邻风电场DFIG的转子电流,防止撬棒连锁动作,并能最大限度补偿无功缺额,提高出口电压。 展开更多
关键词 撬棒 双馈力发电机 低电压穿越 相邻电场转子串联电阻 静止同步补偿器 综合保护方案
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某铜矿通风系统优化与改造研究 被引量:3
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作者 陈庆刚 葛启发 +1 位作者 杨卓明 汪浩浩 《有色设备》 2020年第3期75-78,共4页
针对某铜矿存在漏风严重、污风串联问题突出等问题,本文分析了矿山通风网络结构,同时测定相关通风参数,提出了矿山通风系统优化改造方案,并利用Ventsim Visual^TM三维通风仿真系统进行了模拟分析。经对比,优化改造方案通风管理简单、通... 针对某铜矿存在漏风严重、污风串联问题突出等问题,本文分析了矿山通风网络结构,同时测定相关通风参数,提出了矿山通风系统优化改造方案,并利用Ventsim Visual^TM三维通风仿真系统进行了模拟分析。经对比,优化改造方案通风管理简单、通风网络效率高,并且通风能耗显著降低,对矿山开展通风系统优化改造工作有着很好的指导意义。 展开更多
关键词 串联 系统优化改造 Ventsim Visual^TM 仿真模拟
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小煤矿不合理通风分析及对策
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作者 亢金锁 王家传 《中州煤炭》 2006年第2期59-60,共2页
结合典型实例,对小煤矿井下不合理通风进行分析,提出了解决的对策,对规范小煤矿通风管理,提高小煤矿通风系统安全可靠性具有指导意义。
关键词 串联风 循环 角联通
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大浞河铁矿分区通风系统技术研究
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作者 张玉华 王进佺 +1 位作者 韩云岩 孙长胜 《现代矿业》 CAS 2013年第2期124-126,共3页
大浞河铁矿采用分区通风的方式,随着开采深度及产量的提升,井下分区通风存在污风串联的现象,为了健全井下通风系统,对其通风系统进行了优化。通过系统现状分析、风量校核、合理设置机站等研究,并对研究方案进行了网络解算,确定实施方案。
关键词 系统 串联 网络解算 机站优化
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罗山金矿通风系统优化方案比选 被引量:3
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作者 汪林红 周伟 +3 位作者 贾敏涛 吴冷峻 居伟伟 鲁智勇 《现代矿业》 CAS 2020年第2期141-144,169,共5页
针对罗山金矿存在的矿井总风量欠缺、系统回风能力不足、主回风机站风机运行性能偏低、污风串联等通风问题,运用通风网络优化技术、机站优化技术以及通风仿真模拟技术拟定了2种技改方案,通过技术经济分析和比较,利用现有进风井巷工程作... 针对罗山金矿存在的矿井总风量欠缺、系统回风能力不足、主回风机站风机运行性能偏低、污风串联等通风问题,运用通风网络优化技术、机站优化技术以及通风仿真模拟技术拟定了2种技改方案,通过技术经济分析和比较,利用现有进风井巷工程作为系统进风通道,新掘东风井、西风井工程作为系统回风通道,能有效提高矿井的有效风量率,且具有通风方式简单、风流稳定性好、通风运行能耗低等优点。方案实施后,矿井总风量达到189.01 m3/s,系统主扇风机运行效率达到80.5%,井下通风条件明显改善。 展开更多
关键词 串联 流短路 网络优化 机站优化 仿真模拟
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雅满苏井下矿矿井通风系统优化
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作者 马明 《新疆钢铁》 2021年第1期54-57,共4页
矿井通风系统运行状况直接关系到矿井的安全生产。文章主要针对雅满苏井下矿各水平中段之间污风串联等问题,提出新的通风系统优化改造方案。分析了方案的可行性和经济性,改造实施后明显改善了井下通风条件,有效解决了井下现有的通风系... 矿井通风系统运行状况直接关系到矿井的安全生产。文章主要针对雅满苏井下矿各水平中段之间污风串联等问题,提出新的通风系统优化改造方案。分析了方案的可行性和经济性,改造实施后明显改善了井下通风条件,有效解决了井下现有的通风系统问题,为井下作业生产提供了一个安全舒适的环境。 展开更多
关键词 矿井通 串联 优化改造
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小康矿西一采区皮带大巷粉尘治理
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作者 马驰 王曙勋 《铁法科技》 2015年第B12期137-139,共3页
西一采区皮带大巷为岩掘巷道,由于采用综掘机进行作业,掘进时将会产生大量的岩尘,从而大大地提高了煤尘治理难度。西一采区皮带大巷工作面与南翼轨道为串联风,西一采区皮带大巷回风流将直接进入南翼轨道,南翼轨道为整个南翼采区入... 西一采区皮带大巷为岩掘巷道,由于采用综掘机进行作业,掘进时将会产生大量的岩尘,从而大大地提高了煤尘治理难度。西一采区皮带大巷工作面与南翼轨道为串联风,西一采区皮带大巷回风流将直接进入南翼轨道,南翼轨道为整个南翼采区入风,所以西一采区皮带大巷的降尘工作尤为重要。 展开更多
关键词 岩巷 综掘 串联风 综合降尘
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小康矿西-采区皮带大巷粉尘治理
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作者 马驰 王曙勋 《铁法科技》 2015年第2期22-24,共3页
西一采区皮带大巷为岩掘巷道,由于采用综掘机进行作业,掘进时将会产生大量的岩尘,从而大大地提高了煤尘治理难度。西一采区皮带大巷工作面与南翼轨道为串联风,西一采区皮带大巷回风流将直接进入南翼轨道,南翼轨道为整个南翼采区入... 西一采区皮带大巷为岩掘巷道,由于采用综掘机进行作业,掘进时将会产生大量的岩尘,从而大大地提高了煤尘治理难度。西一采区皮带大巷工作面与南翼轨道为串联风,西一采区皮带大巷回风流将直接进入南翼轨道,南翼轨道为整个南翼采区入风,所以西一采区皮带大巷的降尘工作尤为重要。 展开更多
关键词 岩巷 综掘 串联风 综合降尘
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Intelligent Wind Power Unit with Tandem Wind Rotors and Armatures (Optimization of Front Blade Profile) 被引量:4
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作者 Yuta Usui Koichi Kubo Toshiaki Kanemoto 《Journal of Energy and Power Engineering》 2012年第11期1791-1799,共9页
The authors have invented the superior wind power unit, which is composed of the tandem wind rotors and the double rotational armature type generator without the traditional stator. The large-sized front wind rotor an... The authors have invented the superior wind power unit, which is composed of the tandem wind rotors and the double rotational armature type generator without the traditional stator. The large-sized front wind rotor and the small-sized rear wind rotor drive, as for the upwind type, the inner and the outer rotational armatures, respectively, in keeping the rotational torque counter-balanced between both wind rotors/armatures. The unique rotational behaviors of the tandem wind rotors and the fundamental performances of the unit have been discussed at the previous paper. Continuously, this paper investigates experimentally and numerically the flow condition around the wind rotors to know the flow interactions between the front and the rear wind rotors, and optimizes the blade profile in the front wind rotor. The front blade should work fruitfully at the larger radius and had better not work at the smaller radius for giving plenty of wind energy to the rear wind rotor, taking account of the flow interaction between both wind rotors. 展开更多
关键词 Wind turbine wind energy BLADE tandem wind rotors generator ARMATURE numerical simulation.
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Effect of Angle of Attack and Blade Tip Vortex on the Noise Level of Tandem Wind Rotors of an Intelligent Wind Power Unit
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作者 Fumiha Odo Ahmed Mohamed Galal +1 位作者 Akira Enishi Toshiaki Kanemoto 《Journal of Environmental Science and Engineering(A)》 2013年第12期736-743,共8页
The authors have invented a superior wind power unit, which is composed of tandem wind rotors and double rotational armature type generator without the traditional stator. This unit is called "intelligent wind power ... The authors have invented a superior wind power unit, which is composed of tandem wind rotors and double rotational armature type generator without the traditional stator. This unit is called "intelligent wind power unit". At upwind type unit, the large-sized front wind rotor and the small-sized rear wind rotor drive the inner and the outer rotational armatures respectively, in keeping the rotational torque counter-balance between both wind rotors/armatures. This paper discusses the acoustic noise emitted from the tandem wind rotors. As for tandem wind rotors, the tip vortex shedding from the front wind rotor may make a loud acoustic noise if the vortex attacks the rear wind rotor. Intelligent wind power unit, however, has no chance to increase the acoustic noise level by the tip vortex because the diameter of the front wind rotor is reasonably larger than the diameter of the rear wind rotor. The vorticity generated in the boundary layer on the blade can be observed obviously at wake flow and can be evaluated quantitatively at flow conditions measured by a hot-wire anemometer at a wind tunnel. The flow conditions have shown that the radial and axial components of vorticities contribute to emit the acoustic noise. 展开更多
关键词 Acoustic noise INTELLIGENT TANDEM wind power unit.
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Heat Transfer Behavior in a Square Duct with Tandem Wire Coil Element Insert
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作者 Smith Eiamsa-ard Narin Koolnapadol Pongjet Promvonge 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2012年第5期863-869,共7页
Effects of insertion of tandem wire coil elements used as turbulator on heat transfer and turbulent flow friction characteristics in a uniform heat-flux square duct are experimentally investigated in this work. The ex... Effects of insertion of tandem wire coil elements used as turbulator on heat transfer and turbulent flow friction characteristics in a uniform heat-flux square duct are experimentally investigated in this work. The experiment is conducted for turbulent flow with the Reynolds number from 4000 to 25000. The wire coil element is inserted into the duct with a view to generating a swirl flow that assists to wash up the flow trapped in the duct corners and then increase the heat transfer rate of the test duct. Apart from the full-length coil, 1D and 2D length coil elements placed in tandem inside the duct with various free-space lengths are introduced to reduce the friction loss. The results obtained from these wire coil element inserts are also compared with those from the smooth duct. The experimental results reveal that the use of wire coil inserts for the full-length coil, 1D and 2D coil elements with a short free-space length leads to a considerable increase in heat transfer and friction loss over the smooth duct with no insert. The full-length wire coil provides higher heat transfer and friction factor than the tandem wire coil elements under the same operating conditions. Also, performance evaluation criteria to assess the real benefits in using the wire coil insert into the square duct are determined. 展开更多
关键词 heat transfer wire coil insert square duct TURBULATOR
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An experimental study on the effects of relative rotation direction on the wake interferences among tandem wind turbines 被引量:5
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作者 YUAN Wei TIAN Wei +1 位作者 OZBAY Ahmet HU Hui 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS 2014年第5期935-949,共15页
An experimental study was conducted to investigate the effects of relative rotation direction on the wake interferences among two tandemwind turbines models.While the oncoming flow conditions were kept in constant dur... An experimental study was conducted to investigate the effects of relative rotation direction on the wake interferences among two tandemwind turbines models.While the oncoming flow conditions were kept in constant during the experiments,turbine power outputs,wind loads acting on the turbines,and wake characteristics behind the turbines were compared quantitatively with turbine models in either co-rotating or counter-rotating configuration.The measurement results reveal that the turbines in counter-rotating would harvest more wind energy from the same oncoming wind,compared with the co-rotating case.While the recovery of the streamwise velocity deficits in the wake flows was found to be almost identical with the turbines operated in either co-rotating or counter-rotating,the significant azimuthal velocity generated in the wake flow behind the upstream turbine is believed to be the reason why the counter-rotating turbines would have a better power production performance.Since the azimuthal flow velocity in the wake flow was found to decrease monotonically with the increasing downstream distance,the benefits of the counter-rotating configuration were found to decrease gradually as the spacing between the tandem turbines increases.While the counter-rotating downstream turbine was found to produce up to 20%more power compared with that of co-rotating configuration with the turbine spacing being about 0.7D,the advantage was found to become almost negligible when the turbine spacing becomes greater than 6.5D.It suggests that the counter-rotating configuration design would be more beneficial to turbines in onshore wind farms due to the smaller turbine spacing(i.e.,~3 rotor diameters for onshore wind farms vs.~7 rotor diameters for offshore wind farms in the prevailing wind direction),especially for those turbines sited over complex terrains with the turbine spacing only about 1–2 rotor diameters. 展开更多
关键词 wind energy wind turbine aerodynamics wind turbine wake interference complex vortex flows
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Acoustic Noise from Tandem Wind Rotors of Intelligent Wind Power Unit 被引量:1
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作者 Koichi Kubo Nobuhiko Mihara +1 位作者 Akira Enishi Toshiaki Kanemoto 《Journal of Thermal Science》 SCIE EI CAS CSCD 2010年第2期120-125,共6页
The authors had invented the unique wind power unit composed of the large-sized front wind rotor,the small-sized rear wind rotor and the peculiar generator with the inner and the outer rotational armatures without the... The authors had invented the unique wind power unit composed of the large-sized front wind rotor,the small-sized rear wind rotor and the peculiar generator with the inner and the outer rotational armatures without the conventional stator.This unit is called "Intelligent Wind Power Unit" by the authors.The front and the rear wind rotors drive the inner and the outer armatures,respectively,while the rotational torque is counter-balanced between both armatures/wind rotors.This paper discusses experimentally the acoustic noise from the front and the rear wind rotors.The acoustic noise,in the counter-rotating operation,is induced mainly from the flow interaction between both rotors,and has the dominant power spectrum density at the frequency of the blade passing interaction.The noise is caused mainly from the turbulent fluctuation due to the flow separation on the blade,when the rear wind rotor stops or rotates in the same direction as the front wind rotor. 展开更多
关键词 Acoustic noise Wind turbine Tandem wind rotors Counter-rotation
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