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Identification and ranging of reservoir boundary in horizontal wells geosteering

机译:水平井地质导向中储层边界的识别与测距

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To make quantitative measurement of the distance between the drilling tool and the reservoir boundary in horizontal well drilling, this paper presented the method of “layer-detection ranging”, established the physical and mathematic models and designed the circuit supporting the method. Moreover, the simulation experiment was made to verify the method's feasibility. With the method, the reservoir boundary was detected and the distance between it and the drilling tool was measured through transmitting directional high-frequency electromagnetic waves and receiving reflection waves, in process of measurement while drilling (MWD) in the horizontal well drilling. Two “layer-detection ranging” circuits, i.e. high-voltage narrow pulse and single frequency modulating pulse, were designed. Based on the circuit theory, a “layer-detection ranging” system was established and three media were used for simulation experiment. The results show that: more details of the reservoir are acquired from received waveforms using the high-voltage narrow pulse circuit, and the received waveforms are more easily identified and discriminated using the single frequency modulating pulse circuit; under the conditions of different media and distances, the relative error between the true distance and the distance measured with the “layer-detection ranging” method is less than 5%, suggesting that the method is reliable.
机译:为了定量测量水平井钻井中钻井工具与储层边界之间的距离,提出了一种“层探测测距”方法,建立了物理模型和数学模型,并设计了支持该方法的电路。通过仿真实验验证了该方法的可行性。通过该方法,在水平井钻井随钻测量过程中,通过发射定向高频电磁波和接收反射波,可以探测储层边界并测量其与钻具之间的距离。设计了两个“层检测测距”电路,即高压窄脉冲和单频调制脉冲。基于电路理论,建立了“层检测测距”系统,并采用三种介质进行了仿真实验。结果表明:利用高压窄脉冲电路从接收到的波形中获得了更多的储层细节,并且通过单频调制脉冲电路可以更容易地识别和区分接收到的波形。在不同介质和距离的情况下,真实距离与“层检测测距”方法测得的距离之间的相对误差小于5%,表明该方法是可靠的。

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