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论几类特殊动产的法律适用 被引量:3
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作者 肖永平 《政治与法律》 CSSCI 北大核心 1994年第1期45-46,共2页
论几类特殊动产的法律适用肖永平目前,对于涉外动产物权的法律适用问题,各国越来越倾向于适用物之所在地法.但对下列几类特殊类型的动产,应采取特殊的冲突法原则.一、运输途中的物品运输途中的物品,随时都在发生移动,若在运送过... 论几类特殊动产的法律适用肖永平目前,对于涉外动产物权的法律适用问题,各国越来越倾向于适用物之所在地法.但对下列几类特殊类型的动产,应采取特殊的冲突法原则.一、运输途中的物品运输途中的物品,随时都在发生移动,若在运送过程中对物品进行了处理,要确定处置行... 展开更多
关键词 准据 国际私 律适用 不动产所在地 物之所在地 不动产物权 船舶所有权 目的地法 运输中 船旗国
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Optimized algorithm in mine production planning, mined material destination, and ultimate pit limit 被引量:1
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作者 Rahimi ESMAEIL Moosavi EHSAN +1 位作者 Shirinabadi REZA Gholinejad MEHRAN 《Journal of Central South University》 SCIE EI CAS CSCD 2018年第6期1475-1488,共14页
An integral connection exists among the mine production planning, the mined material destination, and the ultimate pit limit (UPL) in the mining engineering economy. This relation is reinforced by real information a... An integral connection exists among the mine production planning, the mined material destination, and the ultimate pit limit (UPL) in the mining engineering economy. This relation is reinforced by real information and the benefits it engenders in the mining economy. Hence, it is important to create optimizing algorithms to reduce the errors of economic calculations. In this work, a logical mathematical algorithm that considers the important designing parameters and the mining economy is proposed. This algorithm creates an optimizing repetitive process among different designing constituents and directs them into the maximum amount of the mine economical parameters. This process will produce the highest amount of ores and the highest degree of safety. The modeling produces a new relation between the concept of the cutoff grade, mine designing, and mine planning, and it provides the maximum benefit by calculating the destination of the ores. The proposed algorithm is evaluated in a real case study. The results show that the net present value of the mine production is increased by 3% compared to previous methods of production design and UPL. 展开更多
关键词 mined material destination ultimate pit limit net present value production planning
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