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抽油机井一体化节能技术在油田中应用 被引量:4
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作者 刘士玉 《中外能源》 CAS 2013年第3期102-106,共5页
抽油机是目前采油生产中的主要抽油设备,同时也是油田耗能的主要设备。将抽油机一有杆泵抽油系统分为地面及井下两部分,根据抽油机井光杆功率及电网向抽油机系统输入的总电能,分析得出抽油机井地面能耗约占总能耗的30%,地下能耗约占总... 抽油机是目前采油生产中的主要抽油设备,同时也是油田耗能的主要设备。将抽油机一有杆泵抽油系统分为地面及井下两部分,根据抽油机井光杆功率及电网向抽油机系统输入的总电能,分析得出抽油机井地面能耗约占总能耗的30%,地下能耗约占总能耗的70%,地下能耗节能潜力较大。地下损失能量主要包括黏滞损失功率和滑动损失功率,滑动损失功率与冲程和冲次成正比,黏滞损失功率与冲程和冲次的平方成正比。在抽油机井能耗影响因素中,运行参数是易于控制的主要影响因素。因此,确定了"大泵径、长冲程、低冲次"的地面及地下一体化优化节能思路。累计实施1152井次,系统效率由优化前的26.17%提高到30.81%,节电率达15.09%,年节电1216.86×104kW.h,节约电费776.48万元,加上节约作业费用和维护费用,年获经济效益1420.28万元。 展开更多
关键词 抽油机井 一体化节能 地下能耗 大泵径 长冲程 低冲次 系统效率
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Kinetic energy and its applications in mining engineering 被引量:6
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作者 Zhang Zongxian 《International Journal of Mining Science and Technology》 SCIE EI CSCD 2017年第2期237-244,共8页
Reduction of energy consumption in comminution is of significant importance in mining industry. To reduce such energy consumption the energy efficiency in an individual operation such as blasting must be increased. By... Reduction of energy consumption in comminution is of significant importance in mining industry. To reduce such energy consumption the energy efficiency in an individual operation such as blasting must be increased. By using both new investigations and previous experimental results, this paper demonstrates that (1) kinetic energy carried by moving fragments in rock fracture is notable and it increases with an increasing loading rate;(2) this kinetic energy can be well used in secondary fragmentation in crushing and blasting. Accordingly, part of the muck pile from previous blast should be left in front of new(bench) face in either open pit or underground blasting. If so, when new blast occurs, the fragments from the new blast will collide with the muck pile left from the previous blast, and the kinetic energy carried by the moving fragments will be partly used in their secondary fragmentation. 展开更多
关键词 Kinetic energy Rock fragmentation Open pit blasting Sublevel caving mining Energy efficiency
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