Accurate and rapid calculation method for global and local ocean disturbing gravity
A technique for disturbing gravity and fast calculation, which is applied in the direction of measuring gravitational field, geophysical measurement, measuring device, etc.
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Embodiment 1
[0054] Embodiment 1: This embodiment is to calculate the global ocean disturbance gravity.
[0055] The example data include the global ocean area grid geoid height data at 2.5′ resolution, which is obtained from the DNSC08 model. The land part adopts the geoid height data with 2.5′ resolution generated by the EGM2008 model, the longitude range is 0°-360°, and the latitude range is -90°-90°. The constant parameters used are listed below.
[0056] gravitational constant GM
[0057] Including the following steps:
[0058] Step 1: Combine sea area geoid height data and land geoid height data to form 2.5′ resolution global grid geoid height data, the number of grids is 4321×8641.
[0059] Step 2: According to formula (2) and formula (3), form the north-south component ξ and the east-west component η of the global vertical deviation with 2.5′ resolution, and the grid numbers are 4320×8640 and 4320×8640 respectively.
[0060] Step 3: k=1;
[0061] Step 4: Calculate the...
Embodiment 2
[0069] Embodiment 2: This embodiment is to calculate the local ocean disturbance gravity.
[0070] The calculation example data includes the geoid height data of the local ocean area grid with 2.5′ resolution, the grid number is 241×241, the data is obtained by the DNSC08 model, the data range is 110°E-120°E, and the latitude range is N latitude 10° - 20° north latitude. The constant parameters used are listed below.
[0071] gravitational constant GM
[0072] Including the following steps:
[0073] Step 1: According to the formula (8) and formula (9), the vertical line deviation ξ and east-west component ξ and the east-west component η of the local area 2.5′ resolution are formed from the geoid height data, and the grid numbers are 240×240 and 240×240 respectively .
[0074] Step 2: according to formula (12), formula (13) to the IV of each latitude circle ξ,ij , IV η,ij Add 238 elements, ξ for each latitude circle ij , η ij Add 238 zero values.
[0075] Step...
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