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为降低可旋转径向式微粒捕集器中的排气噪声,采用有限元法建立可旋转径向式微粒捕集器声学特性模型,分析得到了其消声特性和传递损失曲线,并采用灰色关联分析方法研究可旋转径向式微粒捕集器结构参数对消声特性的影响程度。结果表明,可旋转径向式微粒捕集器具有降噪能力,且对高频噪声消声效果明显好于低频噪声,平均消声量为20 dB左右;直径比和扩张管锥角是影响可旋转径向式微粒捕集器消声特性的2个主要因素,适当选用小的直径比和扩张管锥角,有利于提高可旋转径向式微粒捕集器的消声性能。 相似文献
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近年来,伴随着东部地区煤炭资源的枯竭,我国煤炭开采的重心逐步由东部湿润地区转移到西部干旱半干旱地区。生态环境脆弱是干旱半干旱区自然本底特征,大规模的煤炭开采一定程度上改变了当地的环境现状,带来了诸多环境问题。基于"井工"和"露天"两种不同煤炭开采方式,文章分析了干旱半干旱区煤炭开采造成的主要环境问题,并基于生态累积效应理论,分析了采煤活动的生态累积评估方法。最后,针对存在的主要环境问题提出了相应的对策与策略。 相似文献
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上海人工绿地群落UVB屏蔽效应与冠层特征的关系 总被引:3,自引:0,他引:3
由于大气污染等人为因素,到达地面的紫外辐射逐年增强,而绿地作为城市居民的重要休憩场所,营造健康的绿地辐射环境至关重要.通过研究上海人工绿地典型群落内UVB辐射的日进程,并以全光照旷地为对照分析比较群落UVB屏蔽效率,采用欧氏距离聚类分析方法,对群落UVB屏蔽效率和群落叶面积指数、枝下高等冠层特征因子的相关关系进行分析并总结影响屏蔽效率的群落结构因子,以期为营造健康的绿地休憩环境提供借鉴和参考.2007年7月6-8日期间对上海植物园8种类型群落和旷地2 m高处UVB辐射进行同步观测.对观测数据分析表明:1)所测定人工群落UVB平均屏蔽效率为91.1%,群落内2m高处UVB辐射通量仅为全光照旷地的14%.毛竹群落和女贞群落屏蔽效率最高,分别为98.5%,97.8%.2)不同植物群落UVB屏蔽效率在冠层特征梯度上表现出显著的分异,植物群落内UVB辐射通量与群落叶而积指数成显著负相关关系,与群落高度和枝下高呈显著正相关关系.3)在植被覆盖较少且紫外辐射地面反射较为强烈的游憩场所,可考虑种植叶倾角较小且叶面积较大的植物,如女贞(Ligustrum lucidum)、丹桂(Osmanthus fragrans)等. 相似文献
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近年来,水文部门根据降水预报,探索流域洪水模拟预报,对密切监视暴雨洪水、做好防汛调度决策起到良好作用。文章在统计分析小凌河多年暴雨洪水的基础上,采用不同雨级平均24 h时段比率,进行凌河保护区洪水模拟预报成果编制研究。构建"以流域为单元、以干流为主线、以水库和河道水文站为控制节点"的流域河库联合模拟预报调度成果图表,实现流域水系河库模拟预报调度。通过科学的实时洪水调度可以调蓄洪水,减轻洪水灾害。同时,也可为流域洪水资源化提供保障和科学依据,实现流域的综合管理。 相似文献
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Qingwu Zhang Juncheng Jiang Mingwei You Yuan Yu Yihu Cui 《Journal of Loss Prevention in the Process Industries》2013,26(6):1230-1237
A pilot scale interconnected vessels experiment system was established, and the closed and vented gas explosion characteristics in the system were studied, using 10% methane–air mixture. Regularity of pressure variation in vessels and flame propagation in linked pipes was analyzed. Furthermore, the effects of transmission style, ignition position, pipe length, and initial pressure on explosion severity were discussed. For the closed explosion: explosion in interconnected vessels presents strongly destructive power to secondary vessel, especially transmission from the big vessel to the small one; the worst ignition position is shifting from ignition in the interconnected pipe to the walls of the two vessels; as far as ignition in big vessel is concerned, the peak pressure in secondary vessel increases with the pipe length much faster than that for ignition in small vessel; the peak pressures in two vessels are approximate linear functions of initial pressure. For the vented explosion: the transmission style and interconnected pipe length have significant impacts on the effect of venting on the protection; in order to obtain the better venting effect, the use of a divergent interconnected pipe from the big vessel to the small one in industry is advised and it is necessary to reduce the interconnected pipe length as far as possible or install flame arrester in the interconnected pipe. 相似文献
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风景区的生态风险评价有助于指导其村镇建设、产业发展和实现绿色生态可持续发展.为探究峨眉山风景区生态风险分布和主要影响因素,在RS(Remote Sensing,遥感)和GIS(Geographic Information System,地理信息系统)技术支持下,以2015年土地覆盖数据为基础,结合DEM、遥感影像数据,从自然灾害和人类干扰两方面分析生态风险,依据生态风险度量原理,通过计算风险发生概率和生态易损性求得生态风险值,利用克里金插值法求得峨眉山风景区生态风险空间分布.结果表明:①峨眉山风景区综合生态风险值较小,主要受自然灾害影响,其贡献率高达89.9%;人类干扰带来的影响也不可忽视,贡献率为10.1%.自然灾害中,干旱、地质灾害对风景区的影响较大,贡献率分别为40.9%、49.3%.②峨眉山风景区综合生态风险呈条带状分布,越往东综合生态风险值越大,自然灾害风险空间分布与其基本一致.综合生态风险高风险区聚集在万年寺、清音阁、神水阁景区,景区东部黄湾乡旅游镇属于人文风险高风险区.研究显示,峨眉山风景区综合生态风险主要受到自然灾害影响,存在带状分异的空间规律. 相似文献
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Jumin Hao Mei-Juan Han Songman Han Xiaoguang Meng Tsan-Liang Su Qingwu K. Wang 《环境科学学报(英文版)》2015,36(10):152-162
Arsenic (As) is one of the most toxic contaminants found in the environment. Development of novel detection methods for As species in water with the potential for field use has been an urgent need in recent years. In past decades, surface-enhanced Raman scattering (SERS) has gained a reputation as one of the most sensitive spectroscopic methods for chemical and biomolecular sensing. The SERS technique has emerged as an extremely promising solution for in-situ detection of arsenic species in the field, particularly when coupled with portable/handheld Raman spectrometers. In this article, the recent advances in SERS analysis of arsenic species in water media are reviewed, and the potential of this technique for fast screening and field testing of arsenic-contaminated environmental water samples is discussed. The problems that remain in the field are also discussed and an outlook for the future is featured at the end of the article. 相似文献