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| 游戏 | Geodetics Calculator |
| 分类 | 生活休闲 |
| 语言 | |
| 大小 | 673KB |
| 版本 | 1.01 |
| 下载 | ![]() |
| 介绍 |
The Geodetics calculator is designed to solve the first quot;directquot; and second quot;inversequot; geodetic problems with an accuracy of 1e6 meters over a range of 27 different reference ellipsoids and spheriods.Background:The first quot;directquot; geodetic problem is defined in the following manner: given a point in terms of latitude and longitude and a direction quot;azimuthquot; and distance from that point to a second point, determine the location in terms of latitude and longitude of the second point.The second quot;inversequot; problem is defined in the following manner: given two points in terms of latitude and longitude, determine the direction quot;azimuthquot; and length of a line in our case, both a geodesic curve a great circle and a rhumb line that connects them.Usage:To solve the first quot;directquot; geodetic problem, simply enter the origin point, fill direction and azimuth fields and press the Calculate button.To solve the second quot;inversequot; geodetic problem, simply enter the origin and destination points and press the Calculate button.In order to change the units in which the input or output fields are given, simply choose a different measurment unit and press the Calculate button.Terminology:Geoid Altitude output field rtepresents the height of the local geoid EGM96 Earth Gravity Model 1996 above mean sea level at the origin and destination.Forward output field represents the azimuth from origin point to destination point.Backward output field represents the azimuth from destination point to origin point.Direct output field represents the length of a straight line quot;geodesic curvequot; quot;great circlequot; connecting the origin and destination point, along the reference ellipsoid.Rhumb output field represents the length of a rhumb line connecting the origin point to the destination point, along the quot;meridional earth spheroid modelquot; radius of 6367.445km.Latitude and Longitude output fields represent the location of the point located at a given azimuth and distance from the origin point they are given in degrees with a decimal notation.Notes:Origin and Destination points location can be entered in two different notations: gt; degrees decimal notation: choosing quot;decimalquot; would require the location input field to be entered in degrees in decimal notation, eg.: 32.156845 or 4.563542. gt; degreesminutesseconds notation: choosing quot;dmsquot; would require the location input field to be entered in degreesminutesseconds notation, eg.: 32 50 6 or 14 29 50. notice that a space should be enter between the degrees, minutes and seconds.Longitude is given in the boundary of 180.0, 180.0 degrees. Negative longitude represents the western hemisphere and positive longitude represents the eastern hemisphere.Latitude is given in the boundary of 90.0, 90.0 degrees. Negative latitude represents the southern hemisphere and positive latitude represents the northern hemisphere.If the origin and destination points are the same, than the distance between them would be zero, and the azimuth between them would be NaN quot;not a numberquot;.If the distance entered by the user is such that the reference ellipsoid would be encircled, than the calculator would take it into consideration.Output fields are labeled using indent font, to seperate them from input fiields.Geoid altitude is calculated using a bilinear interpolation performed upon a 0.25 degrees grid of point value in a quot;tidefreequot; system. The Geoid is given relative ot the WGS84 ellipsoid. Maximum error in Geoid altitude is one meter.Rhumb line distance is calculated using earth spheroid radius of 6367435km. Deviation from other calculators might originate from the usage of a different earth radius.Questions or bug reports? please contact me at malta.dan@gmail com.For more applications, check out my public profile at http:profiles.google commalta.danabout.ENJOY
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