Method for detecting coal field fire district distribution range
A technology of distribution range and detection area, applied in electromagnetic wave detection, electrical/magnetic detection for logging records, etc., can solve problems such as heavy workload, inability to meet detection requirements, and poor detection accuracy.
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Embodiment 1
[0012] Embodiment 1, the present invention detects the method for the distribution scope of coalfield fire area, adopts geological radar or transient electromagnetic instrument to delineate the coal rock loose area in the detection area in the detection area, and constructs the gas measuring drill at intervals in the delineated coal rock loose area The gas samples in the boreholes are collected and analyzed according to the CO and C in the gas samples 2 h 2 and C 2 h 4 To determine the distribution range and development degree of the coalfield fire area in the detection area, the specific steps are as follows:
[0013] a. For the coalfield fire detection area where the buried depth of the coal seam is ≤30m, use the geological radar to test the amplitude change of the electromagnetic wave in the coal rock mass in the detection area. The distribution range of the loose coal and rock area in the area; the center frequency of the geological radar transmitting antenna is 100MHz ...
Embodiment 2
[0016] Embodiment 2: It is basically the same as the embodiment, and the similarities are omitted. For the coalfield fire detection area with a buried depth > 30m, the transient electromagnetic instrument is used to test the change of the secondary induced electromagnetic field generated by the coal and rock mass in the detection area. According to the transient electromagnetic instrument, the intensity of the secondary induced electromagnetic field is lower in the loose coal and rock area. To delineate the distribution range of the loose coal and rock area in the detection area; during the test, the test line distance of the transient electromagnetic instrument is 10m, the point distance is 5m, and the abnormally complicated section is encrypted to 2.5m; the secondary induced electromagnetic field collected in the detection area is analyzed. After filtering, correction, time-depth conversion, etc., the area with a lower secondary induced electromagnetic field in the detection ...
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