摘要:
A method for detecting and visualizing changes in a borehole, comprising correlating a time-depth file and a time-data file to obtain a plurality of measurements at a specific depth for a parameter, analyzing a parameter change using at least two of the plurality of the measurements to obtain an interpretation of the parameter change, and displaying the interpretation of the parameter change using a graphical representation.
摘要:
A method for supplying a customer with well log data including obtaining wellsite properties from the customer, recommending at least one tool string and analysis software tool combination using the wellsite properties, processing well log data using customer domain information and the least one tool string and analysis software tool combination to obtain processed well log data, viewing the processed well log data using an interactive viewer, manipulating the customer domain information, and updating the processed well log data on the interactive viewer using the manipulated customer domain information.
摘要:
This invention relates to methods and systems for displaying geological formation data obtained through well logging in the technical field of petroleum engineering. In one embodiment of this invention, two or more cylindrical surfaces are provided each representing a depth of investigation. The cylindrical surfaces can be dissected into different sectors along azimuths of interest to the human operator. Images of formation information data are attached to (or exposed by) cylindrical surfaces and wings exposed by dissection. Each sector can be displayed individually or together with other sectors so that the human operator can easily analyze the results. Further, the systems and methods can be used to display not only raw well logging data or processed well logging data, but also interpretations of the analysis so that a person unfamiliar with well logging analysis can easily comprehend the results of the analysis.
摘要:
Techniques for determining a formation property by simplifying various two-geological-layer or multi-geological-layer models into a multi-electrical-layer model. A volume fraction of a layer in a multi-electrical-layer model is determined for an anisotropic region (sliding window) of the formation. The multi-electrical-layer electrical model includes a relative-lower-resistivity layer and a relative-higher-resistivity layer. A high-resolution resistivity measurement is used in the determination and resistivities for the relative-lower-resistivity layer and for the relative-higher-resistivity layer based on the volume fraction and bulk resistivity measure ments of the anisotropic region are determined. The formation property is based on the volume fraction, the resistivity of the relative-lower-resistivity layer, the resistivity of the relative-higher-resistivity layer, a total porosity of the anisotropic region, and bulk resistivity measurements of the region.