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Evaluation and Comparison of Available Tracer Methods for Determining Residual Oil Saturation and Developing an Innovative Single Well Tracer Technique:Dual Salinity Tracer

机译:可用示踪方法测定剩余油饱和度和开发创新的单井跟踪技术的评价与比较:双盐度示踪剂

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It is generally recognized that the determination of residual oil saturation(Sor)plays a considerable role in managing and selecting the EOR methods.There are a number of methods to determine Sor and each method has advantages and disadvantages.Among these methods,tracers are the most efficient,largely due to the measurement over large reservoir volume and non-dependency on porosity.The objective of this study is the evaluation and comparison of available tracer methods in different reservoir conditions since 1971 until the present time and proposing a new tracer technique to overcome limitations of previous tracer methods. The first tracer technique to measure Sor,is well-to-well method.The major limitation of this technique is the long measuring time.To get over this barrier,single well tracer techniques(SWTTs)were developed.Due to the reversible nature of tracers,it is impossible to use two or more non-reactive tracers in SWTTs without any irreversibe step.Single well chemical tracer technique(SWCTT)is the first SWTT which utilizes hydrolysis reaction as an irreversible step.While SWCTT overcomes the limitation of well-to-well technique,other limitations are encountered such as difficulty in finding partially reactant tracer and predicting reaction condition in different reservoir conditions(temperature,salinity,and pH), depth of investigation,and drift during soak period.Some other SWTTs are developed to remove some of these limitations,but as far as these techniques utilize hydrolysis reaction,they could not overcome all the limitations of SWCTT. Since many limitations of SWTTs are as a result of the hydrolysis reaction,the main objective of our innovative technique is to remove hydrolysis reaction and cause an irreversible step by utilizing the dependency of partitioning coefficient to salinity.The sensitivity of partitioning coefficient to changing reservoir condition leads to a delay in arriving back of tracers to the well and Sor determination using the principles of chromatography.
机译:人们普遍认识到,残余油饱和度(SOR)的确定起着管理和选择EOR methods.There相当大的作用的许多方法来确定索尔和每个方法都有优点和disadvantages.Among这些方法中,示踪剂是最有效的,这主要是由于测量在大储存空间,并在此研究的目的porosity.The非依赖性是评估和自1971年以来在不同储层条件可用示踪方法比较,直到目前的时间和建议新的示踪技术来克服了以前的示踪法的局限性。第一示踪技术测定苏尔,是很好至阱这种技术的method.The主要限制是长测量time.To克服这个障碍,单井示踪技术(SWTTs)为developed.Due到的可逆性质示踪物,它不可能使用在SWTTs两种或更多种非反应性的示踪剂而没有任何irreversibe step.Single以及化学示踪剂技术(SWCTT)是利用作为水解的不可逆step.While SWCTT反应第一SWTT克服公的限制至阱技术,其他限制在寻找部分反应物和示踪剂期间浸泡period.Some其他SWTTs预测不同贮存条件(温度,盐度和pH),调查的深度,和漂移反应条件的开发,以遇到诸如困难除去这些局限性,但就这些技术利用水解反应,他们无法克服SWCTT的所有限制。由于SWTTs的许多限制是作为水解反应的结果,主要目的我们的创新技术的是,以除去水解反应,并导致通过利用分配系数的依赖性salinity.The划分系数的灵敏度变化的油藏条件的不可逆步骤导致在使用色谱法的原理到达示踪剂回到井和索尔确定的延迟。

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