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A NEW HOSTILE ENVIRONMENT WIRELINE FORMATION TESTING TOOL: A CASE STUDY FROM THE GULF OF THAILAND

机译:一种新型的热环境线形成测试工具:以泰国湾为例

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Wireline formation testing in high-pressure and/or hightemperature (HPHT) wells has long been a challenge due to both the hostile operating environment and the general nature of formation testing. Acquiring numerous pressure measurements and extracting fluid samples can be a long process – and, in hot, deep, and small boreholes that are typical of HPHT wells, acquisition can be difficult. In the Gulf of Thailand (GoT), large-diameter formation testers had a history of sticking and needing fishing; and the high wellbore temperatures caused failures for tools across service companies. In this paper we describe a new wireline formation testing tool (WFT) designed specifically for hostile operating environments and present the results of over two years of field experience in Thailand. The Gulf of Thailand is a challenging area for obtaining log data primarily due to the hostile environmental conditions arising from the high geothermal temperature gradient coupled with the small-diameter, highly-deviated boreholes. The reservoirs typically contain gas due to the high temperature gradient, generally 2.5 deg F or more per 100 ft, and the relatively deep burial depths. Oil reservoirs are located to the north of the Pattani basin where temperature gradients are less. Extensive faulting and the discontinuous lenticular geometry of the sand reservoirs limit the areal size of accumulations. Across the basin, formation water is fresh (<5000 ppm equivalent NaCl) and the sands have a large variation of shale and silt levels. Such variation can make fluid identification from conventional log data difficult, particularly for the oil bearing reservoirs. Under these conditions, (1) formation testing for fluid identification using pressure gradients, (2) establishing well-to-well connectivity of pay sands, (3) sampling gas for per cent CO2 distribution, and (4) pressure profiling are of primary importance. This paper summarizes the field experience gained from over 300 wells logged with a new formation tester.
机译:由于恶劣的操作环境和地层测试的一般性质,在高压和/或高温(HPHT)井中进行电缆地层测试一直是一个挑战。获取大量压力测量值和提取流体样本可能是一个漫长的过程-而且,在高温高压井典型的高温,深层和小孔中,采集可能会很困难。在泰国湾(GoT),大口径地层测试仪具有粘连和需要捕鱼的历史。井筒温度高导致服务公司的工具发生故障。在本文中,我们描述了一种新的电缆形成测试工具(WFT),该工具专为恶劣的操作环境而设计,并介绍了泰国超过两年的现场经验。泰国湾是获取测井数据的极具挑战性的地区,这主要是由于高地热温度梯度加上小直径,高度偏斜的井眼引起的不利环境条件。由于较高的温度梯度(通常每100英尺2.5华氏度或更高)和相对深的埋藏深度,这些储层通常包含气体。油库位于北大年盆地北部,那里的温度梯度较小。砂岩储层的广泛断层和不连续的透镜状几何形状限制了堆积的面积大小。在整个盆地中,地层水是新鲜的(当量氯化钠<5000 ppm当量),而沙子的页岩和淤泥含量变化很大。这种变化会使从常规测井数据识别流体变得困难,尤其是对于含油储层。在这些条件下,(1)使用压力梯度进行流体识别的地层测试;(2)建立高产砂井与井之间的连通性;(3)采样气体以确定二氧化碳的百分比分布;(4)压力剖析是主要的重要性。本文总结了使用新的地层测试仪从300多口井中获得的现场经验。

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