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Application of set pair analysis method on occupational hazard of coal mining

机译:集对分析方法在煤矿职业危害中的应用

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As platforms age, there are increasing challenges to perpetuate their integrity. Currently, process of life extension and repair decision-making model in ageing offshore platforms which was based on DHGF algorithm was established built in order to make reasonable predictions about of life of ageing offshore platforms, and to make accurate repair decisions and to reduce their risks under uncertain and complicated environment. A decision on whether to install new equipment or recondition existing ones could then be taken in terms of optimal life-cycle cost, reliability, project budgets and safe state. There were 18 indicators based on Delphi method for evaluation system. Hierarchical structures were set up by analyzing and adjusting four dimensions - project factors, risk factors, load factors and structure factors which affect the ageing platform service state. Weighted subset was determined by Analytic Hierarchy Process (AHP). Then, we can calculate the gray weights using the gray model theory. The next step is that, it applied fuzzy mathematics to determine the grade evaluation of ageing platform. The evaluation criteria of life extension and repair decision-making model in ageing offshore platforms were established. The comprehensive score was calculated by a sequence of computational steps. Furthermore, life extension and repair decision-making reference table was set up and the period of life extension and repair grade in offshore platform was determined in the light of this table. Life extension and repair decisions for two platforms were made by using this new model and the results were compared with the traditional methods. Research results display that this model can describe the dynamic economic lifetime of ageing offshore platforms more accurately and give a new resolution for the research of life extension and repair decision-making under uncertain and complicated environment. (C) 2016 Elsevier Ltd. All rights reserved.
机译:随着平台年龄,延长了他们的诚信,越来越越来越大。目前,建立了基于DHGF算法的老化海上平台的生命延长和修复决策模型,以便合理预测近海平台的寿命,并做出准确的修复决策并降低风险在不确定和复杂的环境下。然后可以在最佳的生命周期成本,可靠性,项目预算和安全状态方面采取关于安装新设备或重新处理的最新现有设备。基于Delphi方法的评估系统有18个指标。通过分析和调整四维 - 项目因素,危险因素,负载因子以及影响老化平台服务状态的结构因素来建立等级结构。加权子集通过分析层次处理(AHP)确定。然后,我们可以使用灰色模型理论计算灰色重量。下一步是,它应用模糊数学来确定老化平台的等级评估。建立了老化海上平台寿命延长和修复决策模型的评价标准。通过一系列计算步骤计算综合分数。此外,根据该表格确定了寿命扩展和修复决策参考表,并确定了海上平台中的生命延伸和维修等级。通过使用这种新模型进行了两个平台的生命延伸和修复决策,并将结果与​​传统方法进行比较。研究结果显示,该模型可以更准确地描述近海平台老化的动态经济寿命,并为在不确定和复杂的环境下的生命延伸和修复决策的研究提供了新的分辨率。 (c)2016 Elsevier Ltd.保留所有权利。

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