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矿井通风阻力与通风动力匹配研究及应用 被引量:7
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作者 马恒 孟祥浩 韩方伟 《辽宁工程技术大学学报(自然科学版)》 CAS 北大核心 2019年第3期201-204,共4页
针对矿井通风阻力与通风动力匹配状态进行分析与研究,提出了通风阻力与通风动力匹配度相关概念,综合考虑通风机工作风压与工作效率的影响,给出了匹配度的计算公式.根据井工开采条件相关规定和风机经济运行的效率要求,给出了评价匹配度... 针对矿井通风阻力与通风动力匹配状态进行分析与研究,提出了通风阻力与通风动力匹配度相关概念,综合考虑通风机工作风压与工作效率的影响,给出了匹配度的计算公式.根据井工开采条件相关规定和风机经济运行的效率要求,给出了评价匹配度优劣的指标.以长平煤矿长平回风井为例,进行了矿井通风阻力与通风动力的匹配度计算.计算结果表明,长平矿长平回风井通风阻力与通风动力匹配度较低,并给出通风系统改造的具体措施,提高了长平回风井通风阻力与通风动力匹配度,保障了矿井安全高效生产. 展开更多
关键词 矿井通风 通风动力 通风阻力 匹配度 方案设计
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地下综合管廊通风创新设计 被引量:2
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作者 郑辉 李愿望 《隧道建设(中英文)》 CSCD 北大核心 2021年第S02期438-444,共7页
为改善地下综合管廊传统的通风方式,提高管廊内空气质量,降低综合管廊运营成本,分析地下综合管廊传统通风方式的不足,并对综合管廊通风进行创新设计。以某地下综合管廊试验段项目为依托,在每个节点井增设1个无动力通风机,解决了自然通... 为改善地下综合管廊传统的通风方式,提高管廊内空气质量,降低综合管廊运营成本,分析地下综合管廊传统通风方式的不足,并对综合管廊通风进行创新设计。以某地下综合管廊试验段项目为依托,在每个节点井增设1个无动力通风机,解决了自然通风能力不足、管廊内空气质量差、机械通风能耗大、运营成本高的问题;在每个通风区间设1个机械通风机,结合火灾自动报警系统联动控制,解决了管廊内温度过高或发生火灾后有毒烟气无法快速排出的问题。经实测检验,正常和异常情况下管廊通风均能满足相关规范要求,且工程投资小、运维成本低、管廊内空气质量优。 展开更多
关键词 综合管廊 通风设计 动力通风 机械通风
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高原日光温室生态猪舍冬季保温通风系统的设计 被引量:1
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作者 张海云 肖棠 +2 位作者 吴海峰 金显明 王斌 《黑龙江农业科学》 2017年第2期68-71,共4页
为了实现猪舍的保暖增温性能,从新材料的应用、合理选址、日常的科学管理、控制、集成现有的技术成果进行优化设计等多方面入手,将日光温室、发酵床、塑料膜、保温被、手动卷膜通风、一次喷涂成型高强度保温材料等技术集成优化设计;同... 为了实现猪舍的保暖增温性能,从新材料的应用、合理选址、日常的科学管理、控制、集成现有的技术成果进行优化设计等多方面入手,将日光温室、发酵床、塑料膜、保温被、手动卷膜通风、一次喷涂成型高强度保温材料等技术集成优化设计;同时配合科学管理控制。结果表明:这种猪舍冬季的平均保温性明显高于传统猪舍,比传统猪舍平均增温8~10℃,实现了高原日光温室生态猪舍冬季的保暖增温通风性能。冬季保温通风系统建立后,可使高原日光温室生态猪舍环境温度达14~23℃,相对湿度达50%~80%,是猪只生存的最佳环境,使猪生长速度快,肥育效果好。 展开更多
关键词 日光温室型生态猪舍 骨架 PE编织布保温被 发酵床 农用塑料膜 高强度保温材料 手动卷膜通风 动力屋顶通风
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A hybrid ventilation scheme applied to bidirectional excavation tunnel construction with a long inclined shaft 被引量:1
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作者 YANG Wei-chao WANG Jian +3 位作者 DENG E LIU Yi-kang LUO Lu-sen YANG Jia 《Journal of Central South University》 SCIE EI CAS CSCD 2024年第9期3187-3205,共19页
The breakage and bending of ducts result in a difficulty to cope with ventilation issues in bidirectional excavation tunnels with a long inclined shaft using a single ventilation method based on ducts.To discuss the h... The breakage and bending of ducts result in a difficulty to cope with ventilation issues in bidirectional excavation tunnels with a long inclined shaft using a single ventilation method based on ducts.To discuss the hybrid ventilation system applied in bidirectional excavation tunnels with a long inclined shaft,this study has established a full-scale computational fluid dynamics model based on field tests,the Poly-Hexcore method,and the sliding mesh technique.The distribution of wind speed,temperature field,and CO in the tunnel are taken as indices to compare the ventilation efficiency of three ventilation systems(duct,duct-ventilation shaft,duct–ventilated shaft-axial fan).The results show that the hybrid ventilation scheme based on duct-ventilation shaft–axial fan performs the best among the three ventilation systems.Compared to the duct,the wind speed and cooling rate in the tunnel are enhanced by 7.5%–30.6%and 14.1%–17.7%,respectively,for the duct-vent shaft-axial fan condition,and the volume fractions of CO are reduced by 26.9%–73.9%.This contributes to the effective design of combined ventilation for bidirectional excavation tunnels with an inclined shaft,ultimately improving the air quality within the tunnel. 展开更多
关键词 bidirectional excavation tunnel inclined shaft hybrid ventilation scheme computational fluid dynamics ventilation efficiency
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Analytical models for evaluating buoyancy-driven ventilation due to stack effect in a shaft considering heat transfer from shaft interior boundaries 被引量:1
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作者 阳东 李百战 +1 位作者 杜涛 李楠 《Journal of Central South University》 SCIE EI CAS 2012年第3期651-656,共6页
Stack effect is a dominant driving force for building natural ventilation.Analytical models were developed for the evaluation of stack effect in a shaft,accounting for the heat transfer from shaft interior boundaries.... Stack effect is a dominant driving force for building natural ventilation.Analytical models were developed for the evaluation of stack effect in a shaft,accounting for the heat transfer from shaft interior boundaries.Both the conditions with constant heat flux from boundaries to the airflow and the ones with constant boundary temperature were considered.The prediction capabilities of these analytical models were evaluated by using large eddy simulation(LES) for a hypothetical shaft.The results show that there are fairly good agreements between the predictions of the analytical models and the LES predictions in mass flow rate,vertical temperatures profile and pressure difference as well.Both the results of analytical models and LES show that the neutral plane could locate higher than one half of the shaft height when the upper opening area is identical with the lower opening area.Further,it is also shown that the analytical models perform better than KLOTE's model does in the mass flow rate prediction. 展开更多
关键词 stack effect theoretical analysis large eddy simulation vertical temperature distribution heat transfer
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Effect of floor level slit exhaust ventilation system on distribution of house dust 被引量:1
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作者 吕阳 H.Yoshino +3 位作者 R.Takaki R.Kurihara A.Mochida H.Yonekura 《Journal of Central South University》 SCIE EI CAS 2012年第3期696-702,共7页
Based on the fact that the house dust usually falls on the ground, the floor level slit exhaust ventilation system including inlet located at the ceiling and outlet of slit exhaust installed at comer between wall and ... Based on the fact that the house dust usually falls on the ground, the floor level slit exhaust ventilation system including inlet located at the ceiling and outlet of slit exhaust installed at comer between wall and floor was considered. Experiments and simulations were performed to investigate the flow and diffusion fields that are affected by this floor level slit exhaust ventilation system. The characteristics of airflow with experiments and computation fluid dynamics (CFD) are generally similar except airflow at the location of impinging flow and the location right below the inlet. Riboflavin particles were used as the house dust. For the spatial distribution of riboflavin particles in the ventilation system before operation, due to the influence of gravity, different sizes of particles show smooth decay curve. After floor level slit exhaust ventilation system is operated, the decay rate of the particles becomes faster than that after the ventilation system is powered on, and the particles with diameter of 0.5-3.0 μm in the experimental data and calculated values show good agreement. 展开更多
关键词 house dust floor level slit exhaust riboflavin particles computational fluid dynamics
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