首页> 外文会议>ASME international conference on ocean, offshore and arctic engineering >EFFECT OF THE SODIUM AND POTASSIUM CHLORIDE ON THE MECHANICAL AND PLASTIC PROPERTIES ON THE OIL WELL CEMENT SLURRIES.
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EFFECT OF THE SODIUM AND POTASSIUM CHLORIDE ON THE MECHANICAL AND PLASTIC PROPERTIES ON THE OIL WELL CEMENT SLURRIES.

机译:氯化钠和氯化钾对油井水泥浆料机械和塑性特性的影响。

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In recent times, a large reserve of oil and gas in a Pre-Salt zone has been identified in Brazil. In this reserve it is necessary to drill and cement a layer of approximately 2.000 meters of salt rock. In salt rocks, the contact of cement with the rock during the cementing operation can cause the dissolution of the rock and salt can migrate to the cement slurry. Cementitious systems containing salt in their composition have been proposed to minimize the transport of rock salt to the slurry. Considering that the presence of salt can cause changes in the properties of the slurry and compromises the cementing quality. Studies are necessary to understand how the type and concentration of salt can affect the short and long term behavior of the slurry. In this work, the effect of the amount of sodium chloride (NaCl) and potassium chloride (K.C1) on the properties of the oil well cement slurry was studied. For this, slurries containing 5%, 10%, 12.5%, 15%, 17.5%, 20% and 36% NaCl by the weight of water (BWOW), and 1%, 3%, 5%, 7%, 10% and 34% KC1 (BWOW) were designed. The effect of salt type and content on the rheology, free-fluid and mechanical properties such as compression strength, Young's modulus, Poisson's rate and splitting tension strength was investigated. The mechanical properties were evaluated at an age of 8 hours of curing in water at 38°C (100°F) and 60°C (140°F) and 7 days of curing in water at 60°C. The addition of NaCl and KC1 resulted in similar behavior in almost all the properties studied. The properties of freshly and early-age, as free-fluid and compression strength, of saline slurry differed in two different mechanisms depending by the salt concentration. For other side, in most cases, the rheological and long-age properties were reduced with an increase in salt content.
机译:最近,在巴西确定了预盐区中的大量石油和天然气。在本储备中,有必要钻取和水泥一层约2.000米的盐岩。在盐岩中,水泥与岩石在胶结操作期间的接触会导致岩石和盐的溶解可以迁移到水泥浆液中。已经提出了含盐在其组合物中盐的水泥系统,以最小化岩盐的运输到浆料中。考虑到盐的存在会导致浆料的性质变化并损害胶结质量。有必要研究了解盐的类型和浓度如何影响浆料的短期和长期行为。在这项工作中,研究了氯化钠(NaCl)和氯化钾(K.C1)对油井水泥浆料性能的影响。为此,通过水(Bwow)重量为5%,10%,12.5%,15%,17.5%,20%和36%NaCl的浆液,1%,3%,5%,7%,10%设计了34%的KC1(BWOW)。研究了盐型和含量对流变,自由流体和机械性能的影响,如压缩强度,杨氏模量,泊松速率和分裂张力强度。在38℃(100°F)和60℃(140°F)和60℃下固化的60℃(100°F)和60℃下固化在水中,在水中的8小时内评价机械性能。添加NaCl和KC1导致几乎所有所研究的性质中的相似行为。新鲜和早期的性质,作为自由流体和压缩强度的盐水浆料的性质,盐水浆料的两种不同的机制不同,这取决于盐浓度。对于其他方面,在大多数情况下,随着盐含量的增加而降低了流变学和长期性质。

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