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- This paper analyzes the reasons of difficulty in demulsification and dehydration of super heavy oil during sewage recovery. 针对回收污水中超稠油破乳脱水困难等问题进行了原因分析。
- Completion & cementing technique for super heavy oil reservoir of du84 fault block. 杜84块超稠油油藏完井固井工艺技术
- The results indicate that water-bearing super heavy oil shows features of pseudoplasticity fluid. 结果表明,含水超稠油的流变模式呈假塑性流体特徵。
- Vertical producing degree of super heavy oil reservoirs in Shul area is understood through monitoring. 通过监测手段,了解曙一区超稠油油层纵向动用程度。
- Horizontal well steam huff and puff experiment on super heavy oil block reservoir, Xing VI formation, Du 84 block, Shu 1 area. 曙一区杜84块兴组块状超稠油油藏水平井蒸汽吞吐试验
- The HLB value of super heavy oil emulsion from well 1702 in Shuguang, Liaohe oilfield is measured by fluorescence method. 采用荧光法测定了辽河油田曙光采油厂1702井特稠油乳化HLB值。
- This paper introduces the working mechanism, chemical composition, property evaluation and field test of super heavy oil pre-dehydrant. 根据超稠油的特性,针对脱水处理周期长和产出污水含油高等问题,研制和试验应用了预脱水剂。
- The mass calculation by the Fermion Dynamical Symmetry Model (FDSM) predicts a super heavy island of elements located at around Z=l 14 and N=164. 摘要本文根据费米子动力对称模型(FDSM)所预言的原子核质量指出,人们长期以来期盼找到的超重元素岛应出现在Z=114和N=164附近。
- The development of super heavy tank started as early as 1941, when Krupp started the studies of superheavy Soviet tanks. 超重型坦克的发展早在1941年就已经开始了,当时克努伯公司开始研究苏联的超重型坦克。
- A series of problems existed in Leng 41 block during the development of super heavy oil reservoir, such as serious bottom water coning and so on. 针对冷41块在超稠油藏开发中存在严重底水锥进等一系列问题,在综合研究油藏地质特征的基础上,采用水平井钻井技术,通过精心设计、组织和施工,取得显著的开发效果。
- Our company has accumulated large amount of professional knowledge in goods transport and in transport of super large and super heavy over many years work in cargo agency. 随着多年来为客户提供各种不同的货运代理服务,我公司积累了运送包括超大超重货物所需的专业知识。
- The main factors and rules in aqua-thermolysis reaction were analyzed through comparison of viscosity,asphaltene and sulfur content before and after super heavy oil upgrading. 通过超稠油水热裂解反应前后黏度、沥青质、硫质量分数等性质的变化,研究了超稠油进行水热裂解的主要影响因素及规律。
- Method\ Dewatering experiments are carried out upon super heavy oil with three methods: thermal chemistry precipitation, diluent mixing and electrical treatment. 方法采用热化学沉降脱水、掺稀释剂脱水及电法脱水对超稠油进行脱水试验研究。
- Casing failure problem is getting increasingly serious as cyclic steam stimulation of super heavy oil comes to latter cycles.Some casings cannot be repaired by swage and patch. 超稠油油井随着吞吐周期的增加,套管损坏现象日益严重,有些井虽然采用套管整形及套管补贴技术,但依然无法修复,目前这种情况已成为制约油田进一步发展的主要问题。
- A new kind of effective dernulsifier was prepared for super heavy oil of Liaohe Oilfield, which was highly viscous,broken hard,and had long dehydrating time. 针对辽河油田高粘、超稠原油破乳困难、脱水时间长而开发了一种高效新型破乳剂。
- Dealing with all kinds of electronic products and Christmas gifts, such as digital camera, MP3, electric toys, batteries (super heavy duty battery and alkaline battery) and so on. 主要经营各种电子产品及圣诞礼品,包括数码相机,MP3,电动玩具,电池(碳性和碱性)等等。
- Analysis of monitoring data of steam entry and liquid-producing profiles shows that overall vertical producing degree of super heavy oil reservoirs in Shul area is poor. 对吸汽、产液剖面等监测资料进行分析后认为,曙一区超稠油油层总体纵向动用程度较差。
- The hall-life measurement of long-lived radio isotopes, cross section measurement of nuclear reaction, searching for super heavy elements, cosmic study and solar neutrino detection are the main components which have been discussed. 包括放射性核素半衰期的测定、核反应截面的测量、超重元素的寻找、宇宙射线和太阳中微子性质等方面的研究工作。
- In this paper,the characteristic, laboratory evaluation , commercial test and field application effect of the demetallization agent for delayed coking of super heavy crude oil were mainly discussed. 主要介绍了焦化脱金属剂的特点和试验室评价、工业试验及现场应用情况。
- Aimed at the characteristic of Liaohe super heavy crude oil such as high content of heavy metal ,carbon residue,gum and asphaltene,the demetallization agent for delayed coking unit was developed. 针对辽河超稠油金属含量高,残炭、胶质、沥青质含量高的特点,研究开发了焦化脱金属剂。