Safety Evaluation of Underground Uranium Mine Ventilation System Based on Analytic Hierarchy Process and Fuzzy Comprehensive Evaluation

Safety Evaluation of Underground Uranium Mine Ventilation System Based on Analytic Hierarchy Process and Fuzzy Comprehensive Evaluation
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基于层次分析法和模糊综合评价的铀矿井下通风系统安全评价

DOI:
10.4028/www.scientific.net/amr.1010-1012.344
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发表时间:
2014-08
期刊:
Advanced Materials Research
影响因子:
--
通讯作者:
Junting Jiang
Junting Jiang
中科院分区:
其他
文献类型:
--
作者:
Yongjun Ye;Zhi Li;Junting Jiang

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机械通风是降低和控制铀矿井下氡气浓度的有效途径。首先,针对铀矿井下辐射防护的特殊要求,从安全可靠性角度出发,构建了基于AHP和FCE的铀矿井下通风系统安全评价指标体系。其次,阐述了如何利用层次分析法来分配指标权重。然后介绍了FCE的步骤。最后将其应用于某地下铀矿通风系统的安全评价。由于层次分析法和FCE的综合运用,主观因素对评价结果影响较小,且结果与实际情况相符、可靠。同时,研究结果指出了提高铀矿井下通风系统安全性和可靠性的途径,可以方便管理人员做出决策。
Mechanical ventilation is an effective way to reduce and control radon concentration in underground uranium mine. Firstly, to meet the special requirements of radiation protection in underground uranium mine, the safety evaluation index system of underground uranium mine ventilation system based on the AHP and FCE was built from the perspective of safety and reliability. Secondly, this article elaborated how to distribute index weight by utilizing the AHP. Then, the introduction to the steps of FCE was given. Finally, these were applied to the safety evaluation of an underground uranium mine ventilation system. Subjective factors have little effect on the evaluation results due to the integrated utilization of the AHP and the FCE, moreover, the results are consistent with the real situation and are reliable. At the same time, the results point out the way to improve the safety and reliability of underground uranium mine ventilation system, which can facilitate the managers to make decisions.
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发表时间: 2009-09
期刊: Procedia Earth and Planetary Science
影响因子: --
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