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废杂铜大容量中频炉熔融法取、制样的生产实践
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作者 欧福文 《中国有色冶金》 CAS 2019年第5期18-21,共4页
由于再生铜行业原材料废杂铜的种类繁多,铜品位存在巨大差异。现行国内传统的检验方法为目视评估法,该方法易造成含铜品位误差,严重时甚至造成人为金属流失。目前,国内外现行测定标准均不能满足废杂铜取、制样要求。本文采用大容量中频... 由于再生铜行业原材料废杂铜的种类繁多,铜品位存在巨大差异。现行国内传统的检验方法为目视评估法,该方法易造成含铜品位误差,严重时甚至造成人为金属流失。目前,国内外现行测定标准均不能满足废杂铜取、制样要求。本文采用大容量中频炉(100~500 kg)在生产实践中总结一条废杂铜的取样制样方法,通过严格的操作流程,得出的化验数据表明该方法测得的数据比较接近废杂铜的真实值(实际生产反推值),可代替目视评估法。该方法减少了铜品位测定误差,杜绝了人为金属损失,具有很大的经济效益,值得推广。 展开更多
关键词 废杂铜 大容量中频炉熔融 目视评估法 铜品位测定值 实际生产反推值
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WATERiD's Novel Methodology for Condition Assessment Cost Data Collection and Visualization
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作者 Stephen M. Welling Sunil K. Sinha 《Journal of Civil Engineering and Architecture》 2015年第4期419-428,共10页
A profound understanding of the costs to perform condition assessment on buried drinking water pipeline infrastructure is required for enhanced asset management. Toward this end, an automated and uniform method of col... A profound understanding of the costs to perform condition assessment on buried drinking water pipeline infrastructure is required for enhanced asset management. Toward this end, an automated and uniform method of collecting cost data can provide water utilities a means for viewing, understanding, interpreting and visualizing complex geographically referenced cost information to reveal data relationships, patterns and trends. However, there has been no standard data model that allows automated data collection and interoperability across platforms. The primary objective of this research is to develop a standard cost data model for drinking water pipeline condition assessment projects and to conflate disparate datasets from differing utilities. The capabilities of this model will be further demonstrated through performing trend analyses. Field mapping files will be generated from the standard data model and demonstrated in an interactive web map created using Google Maps API (application programming interface) for JavaScript that allows the user to toggle project examples and to perform regional comparisons. The aggregation of standardized data and further use in mapping applications will help in providing timely access to condition assessment cost information and resources that will lead to enhanced asset management and resource allocation for drinking water utilities. 展开更多
关键词 Drinking water pipeline condition assessment water pipeline cost data.
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A Methodology for Bridge Condition Evaluation
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作者 Maria Rashidi Peter Gibson 《Journal of Civil Engineering and Architecture》 2012年第9期1149-1157,共9页
Due to the substantial role of bridges in transportation networks and in accordance with the limited funding for bridge management, remediation strategies have to be prioritised. A conservative bridge assessment will ... Due to the substantial role of bridges in transportation networks and in accordance with the limited funding for bridge management, remediation strategies have to be prioritised. A conservative bridge assessment will result in unnecessary actions, such as costly bridge strengthening or repairs. On the other hand, any bridge maintenance negligence and delayed actions may lead to heavy future costs or degraded assets. The accuracy of decisions developed by any manager or bridge engineer relies on the accuracy of the bridge condition assessment which emanates from visual inspection. Many bridge rating systems are based on a very subjective procedure and are associated with uncertainty and personal bias. The developing condition rating method described herein is an important step in adding more holism and objectivity to the current approaches. Structural importance and material vulnerability are the two main factors that should be considered in the evaluation of element structural index and the causal factor as the representative of age, environment, road class and inspection is implemented as a coefficient to the OSCI (overall structural condition index). The AHP (analytical hierarchy process) has been applied to evaluate the priority vector of the causal parameters. 展开更多
关键词 BRIDGE INSPECTION condition assessment structural importance material vulnerability causal factor AHP OSCI.
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