“CHIKYU”号钻井船废泥浆处理系统的研制

K. Wada, M. Saito, H. Yamaguchi
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引用次数: 5

摘要

“CHIKYU”号深海钻井船于2005年7月完工。该任务将与“CHIKYU”一起执行,目的是在深海海底收集地质岩芯样本。岩心样本和岩心样本采集的钻孔将用于科学研究,以明确全球环境变化、地震爆发机制和海底生物圈。这些地区的研究是在综合海洋钻探计划(IODP)的科学计划下进行的。“CHIKYU”采用隔水管系统和泥浆循环系统采集海底深层地层的岩心样品,使研究工作取得成功。这是石油工业中用于更深钻井的钻井技术之一。泥浆循环系统是在钻井船和钻孔之间循环泥浆的系统。立管被用作泥浆从钻井中回流的管道。泥浆是一种高比重、高粘度的液体,具有保持井内外压力平衡、携带岩屑出井、保护井壁等重要作用。这意味着泥浆循环能够稳定油井,从而实现更大深度的钻井。另一方面,泥浆循环会产生钻井废物,如废泥浆和岩屑。在石油工业中,钻井废料通常被丢弃到海里。然而,近年来,人们对环境问题的兴趣增加了,在水下弃置钻探废料的标准趋于严格。针对这种情况,我们决定从环境友好的角度出发,在“CHIKYU”上充分处理废泥和岩屑作为我们的政策。“CHIKYU”号是第一艘拥有污水处理系统的钻井船。钻井废弃物可分为废泥浆、钻漏和岩屑三种。“CHIKYU”上使用的泥浆是水基泥浆,只有少数例外。主要成分主要是重晶石和膨润土。钻排水是泥浆循环设备清洗后产生的稀浊水。岩屑通过带有泥浆的立管转移到“CHIKYU”,然后使用振动筛将岩屑从泥浆中分离出来。污水处理系统由三个子系统组成,并与之相对应。废泥浆处理方法如下:首先,泥浆中的固体被化学物质凝聚。内聚力是由螺旋压力机挤压的。从黏聚物中挤出的液体用钻漏液一起处理。将钻漏加热加厚,加厚后的钻漏与废泥浆一起处理。从废泥浆中挤出的固体和岩屑用水泥稳定。通过这种方式,废泥处理系统实现了“CHIKYU”钻井废弃物的零排放。本文介绍了废泥处理系统的概况。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Development of the Waste Mud Treatment System for Drilling Vessel "CHIKYU"
The deep sea drilling vessel "CHIKYU" was completed in July 2005. The mission, which will be carried out with "CHIKYU ", is to gather geologic core samples under the seabed at the sea of deep water depth. The core samples and the drilled holes from which the core samples will be gathered will be used for the scientific studies to make clear the global environmental change, earthquake outbreak mechanism and biosphere under the sea-bed. The studies for these areas have been carried out under a scientific plan of Integrated Ocean Drilling Program (IODP). It is necessary to gather core samples from a deeper formation so that we can make these studies succeed Riser system and mud circulation system have been adopted to "CHIKYU " in order to gather core samples from a deep formation under the seabed. This is one of the drilling technologies used in the oil industry to enable drilling deeper. The mud circulation system is a system to circulate mud between drilling vessel and drilled hole. Risers are used as a return line of mud from the drilled hole. Mud is liquid of high specific gravity and high viscosity, and takes a lot of important roles, such as keeping the pressure balance between in and out of a hole, carrying the cuttings from a well out, protecting the wall of a hole, and so on. This means that mud circulation is be able to stabilize a well and as a result enables great depth drilling. On the other hand, mud circulation generates drilling waste such as waste mud and cuttings on board. In the oil industry, the drilling waste is usually abandoned into the sea. However, in late years the interest for an environmental problem has risen, and a standard of underwater abandonment of a drilling waste tends to become severe. In response to this situation, we decided to treat waste mud and cuttings adequately on "CHIKYU" as our policy from the viewpoint of environmentally friendship. "CHIKYU" is the first drilling vessel that has facilities to treat drilling waste called Waste Mud Treatment system. The drilling waste is classified to three kinds, waste mud, drill drain and cuttings. The mud used on "CHIKYU" is water base mud with a few exceptions. The principal ingredients are barite and bentnite basically. The drill drain is the thin muddy water that is occurred by washing of equipments for mud circulation. The cuttings is transferred to "CHIKYU" through the riser with mud, and they are separated from mud using shale shakers. The Waste Mud Treatment System consists of three sub-systems in correspondence with them. The waste mud is treated as follows. Firstly, solids in mud are cohered by chemicals. And the cohesion thing is squeezed by a screw press. The squeezed liquid from the cohesion thing is treated with drill drain together. The drill drain is thickened being heated, and thickened drill drain is treated with waste mud together. The solid squeezed from waste mud and the cuttings are stabilized with cement. In this way, the Waste Mud Treatment System has realized zero discharge of a drilling waste from "CHIKYU". This paper describes the summary of the Waste Mud Treatment System.
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