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    • 1. 发明授权
    • Downhole processing of sonic waveform information
    • 声波处理声波信息
    • US5594706A
    • 1997-01-14
    • US170567
    • 1993-12-20
    • Ramachandra ShenoyShu-Kong Chang
    • Ramachandra ShenoyShu-Kong Chang
    • G01V1/48G01V1/40
    • G01V1/48
    • Methods for processing sonic logging data obtained by a sonic imaging tool or an MWD tool are provided. The sonic logging data are bandpass filtered and sampled according to techniques such as integer band decimation, quadrature modulation, and single side band modulation to provide compressed signals which can be reconstructed if desired. The compressed signals are alternatively stored for downloading and further processing, sent uphole for processing, or processed downhole. The processing preferably involves processing the analytic portion of the compressed signals according to an improved semblance processing technique where the semblance function is calculated over a time window utilizing coarse slowness and time sampling steps. The slowness and time sampling steps are dictated by the parameters of the bandpass filter and the inter-receiver spacing of the tool. The waveform for each receiver is preferably interpolated based on the time step size to provide those data points necessary for stacking. From the determined semblance peaks, or interpolation thereabout, the formation slowness is derived.
    • 提供了用于处理由声波成像工具或MWD工具获得的声波测井数据的方法。 根据诸如整数带抽取,正交调制和单边带调制的技术对声波测井数据进行带通滤波和采样,以提供可以根据需要重建的压缩信号。 压缩信号交替存储用于下载和进一步处理,发送到井上进行处理或在井下处理。 该处理优选地涉及根据改进的相似处理技术对压缩信号的分析部分进行处理,其中利用粗略的慢度和时间采样步骤在时间窗口上计算相似度函数。 慢度和时间采样步骤由带通滤波器的参数和工具的接收器间距决定。 优选地,基于时间步长来对每个接收机的波形进行内插以提供堆叠所需的那些数据点。 从确定的外形峰值或其周围的插值,导出形成慢度。
    • 3. 发明授权
    • Methods and apparatus for simultaneous compressional, shear and Stoneley
logging
    • 用于同时进行压缩,剪切和Stoneley测井的方法和装置
    • US5265067A
    • 1993-11-23
    • US777041
    • 1991-10-16
    • Shu-Kong Chang
    • Shu-Kong Chang
    • G01V1/46G01V1/40G01V1/14
    • G01V1/46
    • Methods and apparatus are described for simultaneously acquiring time-domain (e.g., compressional) and frequency-domain (e.g., monopole Stoneley and/or dipole shear) borehole logs which are separated by frequency filtering. Monopole (Stoneley) data and dipole (shear) data are acquired simultaneously using discrete-frequency sonic emission, preferably at distinct frequencies to avoid cross-mode interference. A preferred embodiment combines discrete-frequency dipole sonic emission at low frequency (up to 5 kHz) to log formation shear wave, high frequency (5 to 30 kHz) time-domain monopole emission with first-motion detection to log formation compressional wave, and discrete-frequency monopole emission at low frequency (below 5 kHz) to log borehole Stoneley wave. The measurements of compressional, shear and Stoneley can be transmitted uphole using a small telemetry bandwidth. Benefits include higher logging speed, acquisition of all three measurements in a single logging run, real-time acquisition and processing of the three measurements, and a reduced telemetry load which allows a tool making the three measurements to be combined with other logging tools.
    • 6. 发明授权
    • Method and apparatus for acoustic dipole direct shear wave well logging
    • 声学双极直接剪切波测井的方法和装置
    • US4703460A
    • 1987-10-27
    • US687074
    • 1984-12-28
    • Andrew L. KurkjianShu-Kong ChangAnn H. Everhart
    • Andrew L. KurkjianShu-Kong ChangAnn H. Everhart
    • G01V1/44G01V1/40
    • G01V1/44
    • The shear velocity of a formation traversed by a fluid-filled open or cased borehole is obtained directly. Waveforms are obtained from a dipole acoustic investigation of the formation relative to a common location in the borehole. In this investigation, the bandwidth of the waveforms is substantially bounded by an upper frequency f.sub.u at and below which energy traveling at the shear velocity is dominant. Moreover, the bandwidth of the waveforms is concentrated near the frequency f.sub.u. The shear velocity of said earth formation is determined from these waveforms. In one embodiment, the waveforms are obtained from a broadband dipole acoustic investigation. The waveforms are low-pass filtered, and an interim shear velocity v.sub.s is determined from the filtered waveforms. The filtering and determining of v.sub.s are done first for an initial f.sub.cut, and subsequently for additional decreasing values of f.sub.cut, until a preselected relationship between f.sub.cut and v.sub.s is satisfied. The last-determined v.sub.s is the shear velocity. Other embodiments are discussed.
    • 通过流体填充的开放或套管钻孔穿过的地层的剪切速度直接获得。 从相对于钻孔中的公共位置的地层的偶极声学研究获得波形。 在这个调查中,波形的带宽基本上由在频率和低于该频率的剪切速度下行进的能量占主导地位。 此外,波形的带宽集中在频率fu附近。 所述地层的剪切速度由这些波形确定。 在一个实施例中,从宽带偶极子声学调查获得波形。 波形被低通滤波,并根据滤波后的波形确定中间剪切速度。 首先对初始fcut进行vs的过滤和确定,然后对fcut的额外减小值进行处理,直到满足fcut和vs之间的预选关系。 最后确定的vs是剪切速度。 讨论其他实施例。
    • 10. 发明授权
    • Method of and apparatus for sonic logging while drilling a borehole
traversing an earth formation
    • 在穿过地层钻孔的钻孔过程中进行声波测井的方法和装置
    • US5852587A
    • 1998-12-22
    • US839969
    • 1992-02-20
    • Sergio KostekShu-Kong ChangGordon McDanielThomas PlonaCurtis Randall
    • Sergio KostekShu-Kong ChangGordon McDanielThomas PlonaCurtis Randall
    • G01V1/48G01V1/52G01V1/40
    • G01V1/52G01V1/46
    • The present invention is directed to sonic logging while drilling. A transmitter and at least one receiver are mounted on a drill collar for performing sonic investigations of the formation traversing a borehole. It has been discovered that a drill collar has a natural stop band or notch where acoustic energy propagating in this frequency range is severely attenuated. Thus, to reduce drill collar acoustic coupling, the transmitter is operated within this natural stop band of the drill collar. An imperforate stop band filter is also included between the transmitter and receiver to amplify the natural stop band. The transmitter is mounted transvere to the longitudinal axis of the drill collar, and is preferably mounted within means that reduce drill collar acoustic coupling. The transmitter preferably includes a material whose acoustic response is more favorable along its longitudinal axis relative to its radial axis, thereby directing the acoustic energy into the formation rather than the surrounding drill collar.
    • 本发明涉及在钻探时的声波测井。 发射器和至少一个接收器安装在钻铤上,用于对穿过钻孔的地层进行声波研究。 已经发现钻铤具有自然的阻挡带或凹口,其中在该频率范围内传播的声能被严重衰减。 因此,为了减少钻铤声耦合,变送器在钻铤的这个自然停止带内操作。 发射机和接收机之间还包括一个无孔挡板滤波器,以放大自然停带。 变送器安装在钻铤的纵向轴线上,并且优选地安装在减少钻铤声耦合的装置内。 发射器优选地包括其声响应相对于其径向轴线沿其纵向轴线更有利的材料,从而将声能引导到地层而不是周围的钻铤。