1) ratio of oxygen
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氧比
1.
Results show that the supported nanometer particle catalyst has good adaptability to the technology condition of equipment, and the best experiment conditions are 8-10(ratio of oxygen), 1300h-1(space velocity) and 1.
在小型试验装置上催化剂的最佳操作条件为 :氧比 8~ 10 ,空速 130 0h-1,丙烷浓度1。
2) oxygen distribution
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耗氧比
1.
Based on the comparison of different oxygen distribution models and the analysis of the oxidation mechanism of Mn, Si and P in BOF refining process, an oxygen distribution model, based on both thermodynamics and kinetics is established.
通过对转炉冶炼过程中耗氧比模型的比较及Mn,Si,P氧化机理的分析,应用冶金热力学和动力学建立了耗氧比模型,并根据生产数据的检验结果与模型预测结果的一致性,得出如下结论:供氧强度决定Mn,Si,P的氧化速率;Mn,Si,P在熔池中扩散系数和初始含量的大小将决定各自耗氧比的起始大小;温度通过反应平衡常数影响耗氧比。
3) new ratio of carbon to oxygen
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新碳氧比
4) carbon/oxygen
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碳氧比
1.
Numerical simulations of energy spectrum and detector response in carbon/oxygen spectral log;
碳氧比能谱测井中能谱及探测器响应的数值模拟
2.
The associated particle carbon/oxygen(C/O) well logging method was simulated using the Monte Carlo n-particle transport code MCNP4C.
为使伴随粒子碳氧比测井方法得到实际应用,本文利用Monte Carlo中子输运程序MCNP4C对伴随粒子碳氧比(C/O)测井模型进行了一系列模拟计算,研究了γ射线强度最大的源距与中子出射角度的关系;屏蔽体的长度、大小、材料、形状的不同设计与γ射线计数的关系等。
3.
With proper designs of tool configuration,neutron burst sequence,as well as acquisition of energy and time spectra of gamma ray,an integrated pulsed-neutron gamma ray logging tool,which involves carbon/oxygen logging,neutron lifetime logging and oxygen activation logging,is constructed.
通过恰当地设计测井仪结构、中子发射时序以及能谱和时间谱采集方式,可以构成集碳氧比、中子寿命、氧活化3项功能于一体的脉冲中子伽马综合测井仪。
5) ratio between the oxygenand sulphide
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氧硫比
1.
Analysis various effect including cansump ratio between the oxygenand sulphide,sulphide loading rate, oxygen concentration,sulphide concentration, chemical sulphide oxidation, species of bacteria, pH, tempreture etc.
分析总结了硫化物生物氧化为单质硫工艺的各种影响因素,包括氧硫比、溶解氧浓度、硫化物浓度、化学氧化、微生物菌种、pH值、温度等因素。
6) oxygen partition
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氧分配比
补充资料:碳氧比能谱测井
将高能脉冲中子源 (14MeV)发出的快中子射入地层,与地层中元素的核发生非弹性散射,放出有一定特征能量的γ射线;测量油水中C、O,岩石中Si、Ca的γ射线含量,以探测油层和水层的油、水含量以及岩性的一种测井方法。在低矿化度、高孔隙度(≥20%)地层的套管井中,用本法可有效地确定区分油层、水层。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条