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首页> 外文期刊>Journal of Hydrology >Modeling injection well performance during deep-well injection of liquid wastes
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Modeling injection well performance during deep-well injection of liquid wastes

机译:在深井液体废液注入过程中模拟注入井性能

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摘要

Deep-well injection of municipal and industrial wastes, and liquid hazardous wastes is an important waste disposal practice worldwide. Performance of injection wells during the deep-well injection of liquid wastes and waste waters is critically dependent upon the physico-chemical properties of the waste, the operational parameters such as injection rates and pressures, as well as the hydrogeologic and geochemical character of the host formation. Development of theories and models that can predict the injection well performance as a function of these parameters is a vital research need. This paper presents the development and application of a well injectivity decline (WID) simulator, that can be used to model injection well performance during deep-well injection. Injectivity decline due to particulates in the injection fluid is modeled for various types of well completions. Results from the simulator are presented with an emphasis on the resulting well plugging and injectivity decline. The significant role played by injected wastewater quality, host formation properties, injection rate and pressure, well completion type, initial damage to the well/formation and the presence of gravel packs around the wellbore is discussed. The results quantitatively show that under typical injection conditions a high total suspended solids (TSS) concentration in the waste stream, low injection rate, low injection pressures, formation heterogeneity (layering), low porosity and permeability of the formation all contribute to a rapid decline in injection well performance. The simulator provides a tool for predicting well performance during waste injection as a function of the waste, formation and operational characteristics. Such simulations can be valuable during planning and operating injection wells to achieve and sustain satisfactory well performance. (C) 2000 Elsevier Science B.V. All rights reserved. [References: 42]
机译:对城市和工业废物以及液体危险废物进行深井注入是世界范围内重要的废物处理方法。深井注入液体废物和废水时,注入井的性能主要取决于废物的物理化学性质,操作参数(例如注入速率和压力)以及宿主的水文地质和地球化学特征编队。可以根据这些参数预测注入井性能的理论和模型的开发是至关重要的研究需求。本文介绍了井注入能力下降(WID)模拟器的开发和应用,该模拟器可用于对深井注入过程中的注入井性能进行建模。针对各种类型的完井模型,对由于注入流体中的颗粒引起的注入率下降进行了建模。给出了来自模拟器的结果,重点是导致的井堵和注入率下降。讨论了注入的废水质量,主体形成特性,注入速率和压力,完井类型,对井/地层的初始破坏以及井眼周围砾石充填的重要作用。结果定量表明,在典型的注入条件下,废物流中的总悬浮固体(TSS)浓度高,注入速率低,注入压力低,地层非均质性(分层),地层的低孔隙度和渗透率都有助于快速下降。在注入井中的表现。该模拟器提供了一种工具,可根据废物,地层和操作特征预测废物注入过程中的油井性能。这样的模拟在计划和操作注入井以达到并维持令人满意的井性能期间可能是有价值的。 (C)2000 Elsevier Science B.V.保留所有权利。 [参考:42]

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