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矿井通风系统环境温度计算与分析 被引量:3
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作者 刘德成 《辽宁工程技术大学学报(自然科学版)》 CAS 北大核心 2012年第5期638-641,共4页
针对随着煤炭开采向深部延伸,围岩温度越来越高.矿井热环境带来越来越严重的矿山热害,在深部矿井开采中矿井热害问题成为制约其发展的重要因素.在深入研究矿井通风仿真技术和网络解算的基础上,计算和分析了所用通风巷道风流温度.首先分... 针对随着煤炭开采向深部延伸,围岩温度越来越高.矿井热环境带来越来越严重的矿山热害,在深部矿井开采中矿井热害问题成为制约其发展的重要因素.在深入研究矿井通风仿真技术和网络解算的基础上,计算和分析了所用通风巷道风流温度.首先分类分析影响风流温度的不同热源,推算不同热源的计算公式;然后划分矿井不同类型巷道的属性,对属性不同的巷道分别进行分析,综合了巷道总热量的计算方法.结合纳林河二号矿井实际情况,分析和计算矿井内风流温度参数,为高温矿井的系统计划和盘区开拓、规划总体通风系统和设计降温系统提供了参考依据. 展开更多
关键词 矿井通风 通风系统设计 环境温度 通风网络 热源分析 热量计 矿井降温 风流温度计算
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矿井通风系统环境温度实时计算与应用 被引量:15
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作者 张小康 何富连 马恒 《煤炭学报》 EI CAS CSCD 北大核心 2012年第5期863-867,共5页
结合矿井通风网络解算,对矿内通风巷道风流温度进行了实时计算与分析。首先对影响风流温度的不同热源进行了分类,选定了基本热源计算公式;然后根据对矿井不同特征巷道的划分,对不同性质的巷道进行了分析,最后结合大强煤矿实际状况,计算... 结合矿井通风网络解算,对矿内通风巷道风流温度进行了实时计算与分析。首先对影响风流温度的不同热源进行了分类,选定了基本热源计算公式;然后根据对矿井不同特征巷道的划分,对不同性质的巷道进行了分析,最后结合大强煤矿实际状况,计算并分析了矿井风流温度参数。成果可为高温矿井的系统开拓、改扩建和通风系统的设计提供参考。 展开更多
关键词 矿内环境 环境风流温度 热源 通风网络 风流温度计算
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Effect of wind-current interaction on ocean response during Typhoon KAEMI(2006) 被引量:2
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作者 LIU Lei FEI JianFang +1 位作者 CHENG XiaoPing HUANG XiaoGang 《Science China Earth Sciences》 SCIE EI CAS 2013年第3期418-433,共16页
The Weather Research and Forecasting (WRF) model, the Princeton Ocean Model (POM), and the wave model (WAVEWATCH III) are used to develop a coupled atmosphere-wave-ocean model, which involves different physical ... The Weather Research and Forecasting (WRF) model, the Princeton Ocean Model (POM), and the wave model (WAVEWATCH III) are used to develop a coupled atmosphere-wave-ocean model, which involves different physical pro- cesses including air-forcing, ocean feedback, wave-induced mixing and wave-current interaction. In this paper, typhoon KAEMI (2006) has been examined to investigate the effect of wind-current interaction on ocean response based on the coupled atmosphere-ocean-wave model, i.e., considering the sea surface currents in the calculation of wind stress. The results show that the wind-current interaction has a noticeable impact on the simulation of 10 m-winds. The model involving the effect of the wind-current interaction can dramatically improve the typhoon prediction. The wind-current interaction prevents excessive momentum fluxes from being transferred into the upper ocean, which contributes to a much smaller turbulence kinetic energy (TKE), vertical diffusivity, and horizontal advection and diffusion. The Sea Surface Temperature (SST) cooling induced by the wind-current interaction during the initial stage of typhoon development is so minor that the typhoon intensity is not very sen- sitive to it. When the typhoon reaches its peak, its winds can disturb thermocline, and the cold water under the thermocline is pumped up. However, this cooling process is weakened by the wind-current interaction, as ocean feedback delays the decay of the typhoon. Meanwhile, the temperature below the depth of 30 m shows an inertial oscillation with a period about 40 hours (-17°N) when sudden strong winds beat on the ocean. Due to faster currents, the significant wave height decreases as ignoring the wind-current interaction, while this process has a very small effect on the dominant wave length. 展开更多
关键词 coupled atmosphere-wave-ocean model TYPHOON wave induced mixing SST cooling wave state
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