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1)  crude oil (atmospheric and vacuum)dis-tillation
原油常减压蒸馏
2)  crude oil atmospheric distillation
原油常压蒸馏
3)  atmospheric residue vacuum distillation
常压重油减压蒸馏
4)  atmospheric-vacuum distillation
常减压蒸馏
1.
Deep-cut vacuum revamping and process optimization of atmospheric-vacuum distillation unit
常减压蒸馏装置减压深拔技术改造及工艺优化
2.
The advanced process control(APC)was applied in the atmospheric-vacuum distillation unit in SINOPEC Luoyang Company in 2006.
介绍了中国石油化工股份有限公司洛阳分公司在2006年对常减压蒸馏装置实施先进控制的情况。
3.
Based on petroleum fraction's distillation curve and overall density to characterize it,asimulation system of atmospheric-vacuum distillation unit for crude oil is developed using blocks combination method.
用石油馏分的蒸馏曲线 (ASTM或TBP)和整体密度进行虚拟组分切割 ,以单元模块组合法严格求解常减压蒸馏塔 ,建立原油减压蒸馏装置的流程模拟系统。
5)  atmospheric and vacuum distillation unit
常减压蒸馏
1.
Citing a 5Mt/a atmospheric and vacuum distillation unit as an example,this article studies the energy balance and the calculation of energy balance for the unit using the "three links" theory for the energy system as well as the first and second laws of thermodunamics.
以某炼厂5Mt/a常减压蒸馏装置为例,运用能量系统"三环节"结构理论,依据热力学第一定律和热力学第二定律对装置进行了能量平衡和平衡计算。
2.
The atmospheric and vacuum distillation unit in a refinery was taken as an example,its energy and exergy balances were then worked out through calculation according to the three link method for process integration following the First Law and the Second Law of thermodynamics.
笔者以某炼油厂常减压蒸馏装置为例 ,运用过程系统三环节能量结构理论 ,依据热力学第一定律和热力学第二定律进行了装置的能量平衡和平衡计算及分析 ,并根据分析结果指出了装置的节能方向 ,提出了节能措施。
6)  atmospheric and vacuum distillation
常减压蒸馏
1.
Development of RBF neural network with double model structure and its application to atmospheric and vacuum distillation units;
常减压蒸馏装置双模型结构RBF神经网络建模及其应用
2.
Design for transforming atmospheric and vacuum distillation plant;
常减压蒸馏装置改造设计
3.
Corrosion and its prevention in atmospheric and vacuum distillation unit;
常减压蒸馏装置的腐蚀与防护
补充资料:原油常减压蒸馏
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性质:炼油厂加工原油的第一个工序。一般有三级蒸馏和两级蒸馏之分。前者系将脱盐脱水后的原油先在预分馏塔(或称初馏塔或蒸发塔)和常压塔中蒸馏,然后再在减压塔内蒸馏。二级蒸馏则只先在常压塔中蒸馏,然后送往减压塔蒸馏。蒸馏的目的是为获得石油产品的各种组分和进一步加工的原料。

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