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Development of a Universal Ranking for Friction Reducer Performance

机译:开发普遍排名的摩擦减速器性能

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In hydraulic fracturing, large amounts of water are pumped at high speed down the wellbore. To reduce pump pressure and costs, a friction reducer is added to the stream. There is currently no unified performance criteria for selection of friction reducers. This work outlines the methodology for producing such a unified method of comparing performance between any friction reducer chemical additives, both liquid and dry powder. A 0.5 inch stainless steel high-flow low-shear flow loop pumping at ranges between three and twenty gallons per minute was custom-built. The loop uses a Coriolis flow meter, two absolute pressure transducers, and one differential pressure transducer to accurately determine the friction reducer additive performance in any given fluid by measuring pressure drop across a section of developed flow. This paper utilizes over 400 in-house flow loop tests to establish a novel unified ranking system for the evaluation of friction reducers’ performance. The ranking is independent of the type of friction reducer used and quality of water. Produced waters, fresh water, treated produced waters, and synthetic waters were all used to validate the methodology and ranking system to create a unified criteria to compare performance of any friction reducers. Tomson Technologies created a standardized metric for assessing and ranking friction reducer performance. This standardization was achieved through the use of an unique performance scale comprised of the weighted average of the most important friction reduction parameters of a friction reducer in any produced water: (1) inversion time (InvT), (2) maximum percent friction reduction (Max% FR), (3) time to sustain maximum percent friction reduction (RetT@%Avg.FRmax), and (4) the percent friction reduction at the end of 500 seconds (% FR@500s). 500 seconds is used because fluid during hydraulic fractures travels from the pumps to the reservoir in 500 or fewer seconds in almost all cases. This scale is measured in a new unit called "Friction Reducer Units" (FRU), which ranges from 0 to 10. FRU has been used to rank and correlate the performance of different classes of friction reducers in various types of waters, resulting in a comprehensive results database and is used to show applicability of the overall metric.
机译:在液压压裂中,大量的水在井筒高速下泵送。为了减少泵压力和成本,将摩擦减速器添加到流中。目前没有统一的摩擦减速剂的性能标准。这项工作概述了制备这种统一方法的方法,可以比较任何摩擦减速剂化学添加剂之间的性能,液体和干粉。定制泵送0.5英寸不锈钢的高流量低剪切流量,以32加仑/分钟泵送。该环路使用科里奥利流量计,两个绝对压力传感器和一个差压换能器,通过测量穿过发育流程的一部分的压力下降来精确地确定任何给定流体中的摩擦减速器添加剂性能。本文利用超过400个内部流循环试验,以建立一个新颖的统一排名系统,用于评估摩擦减速器的性能。排名与使用的摩擦减速器的类型和水的质量无关。开采水,淡水,处理过的产生水,和合成的水全部用于验证的方法和排名系统建立一个统一的标准,以比较任何减阻性能。 Tomson Technologies创建了一种标准化的指标,用于评估和排序摩擦减速器性能。 (1)反转的时间(INVT),(2)的最大摩擦下降百分比(:这种标准化是通过使用由减摩的任何产生的水的最重要的摩擦减少参数的加权平均的独特性能的规模来实现最大%FR),(3)的时间,以维持最大摩擦下降百分比(RetT@%Avg.FRmax),和(4)%的摩擦在500秒结束时减少(%FR @ 500S)。使用500秒,因为在几乎所有情况下,液压骨折期间的流体从泵送到储存器中的500或更少秒。该比例在称为“摩擦减速器单元”(FRU)的新单元中测量,其范围为0至10. FRU已被用于等级和关联各种类型水域中不同类摩擦减速器的性能,从而导致全面的结果数据库,用于显示整体度量的适用性。

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