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苏里格气田双侧向电阻率负差异现象研究
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作者 王辉 史国发 +3 位作者 林兵兵 宗飞 陈草棠 卢春利 《测井技术》 CAS 2021年第3期324-329,共6页
苏里格气田某区块DLL6503测井仪双侧向电阻率曲线在泥岩段出现深侧向电阻率值低于浅侧向电阻率的负差异现象,按照负差异的连续性和长度,划分为大段负差异和薄层负差异。针对大段负差异现象,确定参考N电极和电极系绝缘性能为主要影响因素... 苏里格气田某区块DLL6503测井仪双侧向电阻率曲线在泥岩段出现深侧向电阻率值低于浅侧向电阻率的负差异现象,按照负差异的连续性和长度,划分为大段负差异和薄层负差异。针对大段负差异现象,确定参考N电极和电极系绝缘性能为主要影响因素,将N电极从井下移至地面并彻底解决各电极系绝缘差、导通电阻不达标的问题,经测井验证,大段负差异问题解决。针对薄层负差异现象,采用二维有限元数值模拟分析,发现在纵向地层电阻率满足“中—高—低—高—中”的特殊地层条件下,原本对称结构的DLL6503测井仪双侧向电阻率曲线在低电阻率薄层出现薄层负差异现象,而改进后的非对称双侧向电阻率曲线无薄层负差异现象。将原双侧向仪器的对称结构改为非对称结构,经测井验证,改进后的非对称双侧向仪器在低电阻率薄层泥岩段深、浅侧向电阻率曲线重合,与数值模拟分析结果一致,薄层负差异问题得到较好的解决。 展开更多
关键词 DLL6503测井仪 大段负差异 薄层负差异 数值模拟 非对称双侧向
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Control of the interparticle spacing in superparamagnetic iron oxide nanoparticle clusters by surface ligand engineering
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作者 王丹 林兵兵 +7 位作者 申太鹏 吴君 豪富华 夏春潮 龚启勇 唐惠儒 宋彬 艾华 《Chinese Physics B》 SCIE EI CAS CSCD 2016年第7期427-434,共8页
Polymer-mediated self-assembly of superparamagnetic iron oxide(SPIO) nanoparticles allows modulation of the structure of SPIO nanocrystal cluster and their magnetic properties. In this study, dopamine-functionalized... Polymer-mediated self-assembly of superparamagnetic iron oxide(SPIO) nanoparticles allows modulation of the structure of SPIO nanocrystal cluster and their magnetic properties. In this study, dopamine-functionalized polyesters(DApolyester) were used to directly control the magnetic nanoparticle spacing and its effect on magnetic resonance relaxation properties of these clusters was investigated. Monodisperse SPIO nanocrystals with different surface coating materials(poly(ε-caprolactone), poly(lactic acid)) of different molecular weights containing dopamine(DA) structure(DA-PCL2k,DA-PCL1k, DA-PLA1k)) were prepared via ligand exchange reaction, and these nanocrystals were encapsulated inside amphiphilic polymer micelles to modulate the SPIO nanocrystal interparticle spacing. Small-angle x-ray scattering(SAXS)was applied to quantify the interparticle spacing of SPIO clusters. The results demonstrated that the tailored magnetic nanoparticle clusters featured controllable interparticle spacing providing directly by the different surface coating of SPIO nanocrystals. Systematic modulation of SPIO nanocrystal interparticle spacing can regulate the saturation magnetization(Ms) and T2 relaxation of the aggregation, and lead to increased magnetic resonance(MR) relaxation properties with decreased interparticle spacing. 展开更多
关键词 nanoparticle clusters interparticle spacing ligand exchange magnetization
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