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1.
已完钻超深裸眼水平井侧钻技术是经济、高效开发油藏剩余油的主要手段之一,传统的磨铣钢套管开窗侧钻技术存在下入摩阻大、磨铣耗时长导致开窗失败等问题。为此,提出了基于多材质复合管柱的超深水平井裸眼井壁支撑工艺,结合中国西北油田已完钻超深裸眼水平井井况,首先,提出了基于“铝合金+碳钢”的多材质复合管柱组合及设计方法;其次,开展了基于管柱实物屈曲实验数据的管柱临界屈曲载荷计算模型适用性评价,并优选出了适合于“铝合金+碳钢”多材质复合管柱的屈曲临界载荷计算模型;最后,研究了综合考虑管柱扭矩、摩阻、刚性、井眼条件、管柱强度及材质的多材质复合管柱下入性分析方法,并利用下入性分析软件对西北油田顺北X1井、X2井、X3井、X4井复合管柱进行了下入可行性评价。该方法在X1井和X2井得到成功应用,进一步论证了该工艺现场应用的可行性。研究成果可为超深水平井裸眼井壁支撑的复合管柱设计和下入可行性评价提供理论参考。  相似文献   
2.
Metal-organic frameworks(MOFs) have been regarded as promising catalyst materials due to the richness of coordinately unsaturated metal sites on the surface,which can act as catalytic active centres.In this study,a hybrid MOF material composed of Fe-based MOF and Co-based MOF was prepared with the involvement of graphene oxide nanosheets as additive.It was demonstrated that the hybrid MOF materials showed much higher electro-catalytic activity towards oxygen evolution than the single-phase counterparts.To drive current density of 10 mA cm~(-2),the hybrid CoFe-based MOF only needed an over potential of 290 mV in 1 M KOH.The catalytic activity could sustain for a longer time with only slight current density decrease.During oxygen evolution operation,the MOF catalyst evolved into catalytic active species but kept well the microscale sheet-like structure.It is thus believed that this study will provide an avenue for the development of advanced electrocatalysts.  相似文献   
3.
In this study,graphene oxide (GO) nanosheets were first functionalized by the acyl-chloride reaction and then reacted with hindered phenol (HP) to obtain HP grafted GO (GO-g-HP).The GO-g-HP prepared under the optimized condition exhibited a high efficiency against both thermal and photo oxidation of isotactic polypropylene (iPP).GO-g-HP exhibited a much better anti-aging efficiency than that of HP and GO used individually or that of their physical mixture.The outstanding anti-aging effect of GO-g-HP was attributed to the excellent synergistic effect produced between the chemically bonded GO and HP,which resulted in an improved oxygen barrier property of GO and excellent utilization of the free radical scavenging capability of GO and HP.Also,thanks to the grafting of HP on GO,the physical loss of HP,which was one of the main shortcomings for traditional small molecular antioxidants,was largely suppressed.It is expected that the GO-g-HP prepared can well meet the requirement of long-term applications of polymers in some harsh service conditions.  相似文献   
4.
The effect of Al addition on microstructure and mechanical properties of hot extruded Mg–1 Mn alloy sheet was investigated. The results revealed that the dynamic recrystallization was promoted by increasing Al content. The ultimate tensile strength and yield strength of the alloy increased with the increase of Al content. The Mg–9 Al–1 Mn alloy exhibited the highest strength, with tensile strength of 308 MPa, 307 MPa, 319 MPa, yield strength of 199 MPa, 207 MPa, 220 MPa and the elongation of 20.9%, 20.1%, 19.2% in 0°, 45°, 90°, respectively.The high strength was mainly attributed to the formation of fine dynamically recrystallized grains and large amounts of the second phase. The strengthening mechanism of the alloys was explained.  相似文献   
5.
In view of the special requirements for strength, heat resistance and corrosion resistance of Al-Zn-Mg-Cu alloy for oil drilling, the Al-6.2 Zn-2.5 Mg-1.6 Cu alloy was prepared by increasing Cu content on basis of Russian Series 1953 alloy. The effect of heat treatment on the microstructures and properties of the alloy was characterized by optical microscope(OM), scanning electron microscope(SEM) and transmission electron microscope(TEM), and investigated by tensile test at room temperature, thermal exposure test and corrosion test. The results show that the strength after T6 aging treatment exhibit a decrease trend as an increase of the solution temperature from465 °C to 480 °C. After the solution treated by the rate of 470 °C/1 h, second phases dissolve into the matrix very well and the strength property reaches optimum. The alloy has better comprehensive properties treated by a solution treatment of 470 °C/1 h and then followed by an aging treatment of 120 °C/24 h + 170 °C/1 h + 120 °C/24 h. Under the aging state, the precipitated phases inside the grains are suitable in size, while on the grain boundary distribute discontinuously and the precipitate-free zone is obvious. Besides, the alloy still maintain high tensile properties. The yield strength, tensile strength and elongation are 650 MPa, 686 MPa,12.0%, respectively. The yield strength retention after heat exposure is 92%. The alloy has good corrosion resistance and the exfoliation corrosion degree. The average corrosion rate in the H_2S and CO_2 environment is 0.0024 mm/a, which is far less than the required 0.12 mm/a. It is insensitive to H_2S and CO_2 environments.  相似文献   
6.
丙酸盐对厌氧氨氧化除氮性能及群落结构的影响   总被引:1,自引:0,他引:1  
为了探究有机碳对厌氧氨氧化的长期影响, 向厌氧氨氧化膜生物反应器中添加不同浓度的丙酸钠, 研究对反应器的除氮效能以及微生物的种群结构和功能变化。结果表明: 反应器主要的脱氮过程由CandidatusBrocadia完成, 当丙酸钠浓度为100 mg/L时, 反应器中由于异养细菌的生长, 可实现碳氮的同步去除, 平均总氮去除率可达91.9%。当丙酸钠浓度为200 mg/L 时, 对Candidatus Brocadia的抑制作用导致反应器除氮性能下降, Candidatus Brocadia的丰度降至41.2%, 总氮去除率降至 78.8%。在有机碳抑制作用解除后, 反应器的除氮性能恢复为86.8%, Candidatus Brocadia丰度增加到54.0%, 但群落多样性下降, 属水平的微生物组成有较大的改变。  相似文献   
7.
采用金相显微镜、扫描电镜、电子拉伸机等,研究了激光快速成型TC4合金沉积态在平行沉积方向和垂直沉积方向的组织和力学性能.结果表明:激光快速成型TC4合金沉积态宏观组织沿沉积方向生长的粗大β柱状晶呈明暗相间的条带状结构,具备典型的魏氏组织特征;垂直沉积方向的强度比平行沉积方向的强度高,但塑性低;合金断口为韧窝状断口,垂直沉积方向的断口韧窝尺寸比平行沉积方向的小.  相似文献   
8.
在充分考虑温度载荷、机械载荷、硬质涂层膨胀锥硬度、套管硬度对膨胀锥与套管之间屈服挤毁压强影响的基础上,根据分形理论和接触力学推导出膨胀锥与套管之间屈服挤毁压强的计算公式.数值分析表明:膨胀锥与套管之间的屈服挤毁压强随最终温度、分形粗糙度、线膨胀系数、硬质涂层膨胀锥布氏硬度、中间主应力系数、套管壁厚的增大而增大;当分形维数从1增大时,膨胀锥与套管之间的屈服挤毁压强随分形维数的增大而减小;当分形维数增大到接近于2时,膨胀锥与套管之间的屈服挤毁压强随分形维数的增大而增大;随拉压强度比的增大,膨胀锥与套管之间的屈服挤毁压强减小.屈服挤毁压强的计算值与试验测试值之间的相对误差为-8.9253%~-0.9901%.  相似文献   
9.
根据某军品部件出现的问题,应用试验设计法成功地找出了最优组合,提高了该部件的强度,解决了该强度问题,使生产得以正常进行。  相似文献   
10.
溶胶-凝胶法合成了YAG:Ce3+荧光粉,测定了合成荧光粉的激发和发射光谱,研究发现包膜对荧光粉热稳定性有影响。用氧化铝和氧化镧对荧光粉包膜,会降低荧光粉的发射强度,但可明显提高荧光粉的高温稳定性。  相似文献   
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