Patent classifications
G01V2210/14
Seismic detection switch
A seismic switch (SS) that is able to detect and signal when internal faults have occurred within the SS is described. The SS provides safety class functionality to the detection of seismic activity. For example, the SS may detect earthquakes above a specified level, resulting in the disconnection of electrical power to a radioactive waste storage facility, which could result in the ignition of waste materials should the storage facility and/or storage container fail during a seismic event. By reducing the risk of fire under these circumstances, the possibility of offsite releases is significantly reduced.
SEISMIC DETECTION SWITCH
A seismic switch (SS) that is able to detect and signal when internal faults have occurred within the SS is described. The SS provides safety class functionality to the detection of seismic activity. For example, the SS may detect earthquakes above a specified level, resulting in the disconnection of electrical power to a radioactive waste storage facility, which could result in the ignition of waste materials should the storage facility and/or storage container fail during a seismic event. By reducing the risk of fire under these circumstances, the possibility of offsite releases is significantly reduced.
Impact assessment of marine seismic surveys
Methods and systems to assess in near real-time defects in seismic data resulting from noise and seismic data acquisition-system deviations during a marine survey are disclosed. Methods and systems apply forward modeling to a model of a subterranean formation to generate synthetic seismic data based on the noise and deviations in the seismic data acquisition system. The synthetic seismic data represents the seismic data that would be collected by a marine survey carried out on a subterranean formation with the same structure as the Earth model and includes defects that result from the noise and deviations in the seismic data acquisition system. Error estimation is applied to the synthetic seismic data in order to assess the defects at different stages of seismic data processing.
Systems and methods for detecting subsurface features using 3D angle gathers
The present disclosure is directed to detecting subsurface features via a seismic survey. A system can obtain seismic data from nodes separated from each other by at least a threshold distance on a ground surface. The seismic data can include image trace data based on field trace data detected from each of the plurality of seismic data acquisition units. The system retrieves a sample interval and a parameter. The system configures a bandlimited binning function with the sampling interval and the predetermined parameter. The system applies the bandlimited binning function to a plurality of image traces of the image trace data to generate a bandlimited angle gather value for a bin in an angle gathers grid. The system generates an image based on the angle gathers grid and provides the image for display.
Seismic sensor and sensor control method
A seismic sensor according to one or more embodiments may include: an acceleration measuring unit configured to repeatedly measure acceleration in three directions orthogonal to each other; and an index value calculator configured to operate in a measurement mode for calculating an index value of a magnitude of an earthquake based on a measurement result of acceleration in at least one direction by the acceleration measuring unit, and to operate in a standby mode with less power consumption than power consumption in the measurement mode. Then, the acceleration measuring unit monitors establishment of an activation condition that N times (M?N?2) measurement results in consecutive M times (M?2) measurement results of acceleration in a predetermined direction exceed an acceleration threshold value. When the acceleration measuring unit detects establishment of the activation condition, the index value calculator transitions from the standby mode to the measurement mode.
System and method for performing seismic exploration with multiple acquisition systems
A system and method for performing seismic exploration with multiple acquisition systems is disclosed. The method includes configuring a first seismic source located outside of an exclusion zone and configuring a second seismic source located inside of the exclusion zone. The method further includes obtaining a first seismic dataset corresponding to a first seismic signal emitted by the first seismic source and obtaining a second seismic dataset corresponding to a second seismic signal emitted by the second seismic source. The method further includes combining the first and second datasets to create a complete dataset covering a survey area and creating a seismic image of a subsurface of the survey area.
System and methods for remote monitoring
A system that detects signals and transmits data regarding certain detected signals for further analysis is disclosed. The detected signals may be analyzed to determine whether any of the detected signals correspond to a source. The system may transfer in near-real time data and information regarding the data to one or more client devices. Methods for detecting signals and transmitting data associated with the detected signals are also disclosed.
Method and apparatus for testing a sensor
There is a testing device for testing a sensor. The testing device includes a rotating mechanism; a first rotating plate connected to the rotating mechanism so that the first rotating plate rotates around an orbital axis (Z1); a second plate rotatably attached to the first rotating plate at a rotating point, the second plate having a rotational axis (Z2) offset from the orbital axis (Z1) by a predetermined distance R; and a gripping mechanism attached to the second plate and configured to receive and fix the sensor relative to the second plate. The second plate follows a circular trajectory with constant attitude around the orbital axis (Z1).
SYSTEMS AND METHODS FOR DETECTING SUBSURFACE FEATURES USING 3D ANGLE GATHERS
The present disclosure is directed to detecting subsurface features via a seismic survey. A system can obtain seismic data from nodes separated from each other by at least a threshold distance on a ground surface. The seismic data can include image trace data based on field trace data detected from each of the plurality of seismic data acquisition units. The system retrieves a sample interval and a parameter. The system configures a bandlimited binning function with the sampling interval and the predetermined parameter. The system applies the bandlimited binning function to a plurality of image traces of the image trace data to generate a bandlimited angle gather value for a bin in an angle gathers grid. The system generates an image based on the angle gathers grid and provides the image for display.
PHYSICAL MODEL TEST SYSTEM FOR SIMULATING STRONG MINE TREMORS BASED ON JOINT MONITORING OF MICROSEISMIC AND ACOUSTIC EMISSION AND TEST METHOD THEREOF
A physical model test system for simulating strong mine tremors based on joint monitoring of MS and AE and a test method thereof, comprising: positioning and drilling a circular hole in a load plate according to design positions of all-fiber MS and AE sensors; mounting limiting rings concentric with the circular holes outside the load plates; bonding seismic isolation antifriction plates on inner walls of the load plates; manufacturing model body through layered compaction method to a height reaching one of the circular holes; inserting wave conducting rod into the limiting ring and the circular hole sequentially to a specified depth of the model body; filling with analogue materials and compacting; detaching the limiting rings after the model body is stably loaded, connecting the all-fiber MS sensors to exposed portion of the wave conducting rod, and bonding the AE sensors to outer sidewalls of the wave conducting rods.