The two methods including Poisson integral and point masses are used to evaluate the accuracy of airborne gravimetry data in Australia West Arnhem Land. The results show that the accuracy of Australia airborne gravimetry data are respectively 2.81×10-5 m/s2 and 2.95×10-5 m/s2 according to the 2'resolution, and the accuracy of 5'resolution is better than 3×10-5 m/s2. The Bohai airborne gravimetry using CHAGS system is evaluated by using the crossover point adjustment and Poisson integral method, the analysis results show that the two estimation modes has different accuracy value. Based on the external land and sea gravity data, the Bohai airborne gravimetry has the accuracy better than 3.5×10-5 m/s2 according to the 5'resolution although the data has the 3×10-5 m/s2 systematic error. In the coastal area, the accuracy of airborne gravimetry is affected by the performance of surveying system, and the general accuracy of airborne gravimetry is about or better than 3×10-5 m/s2 according to the 5'resolution.
ZHAI Zhenhe
,
SUN Zhongmiao
,
LI Yingchun
,
XIAO Yun
. The Accuracy Evaluation and Analysis of Airborne Gravimetry in Coastal Area[J]. Acta Geodaetica et Cartographica Sinica, 2015
, 44(1)
: 1
-5
.
DOI: 10.11947/j.AGCS.2015.20130783
[1] SUN Zhongmiao. The Theory Method and Application of Airborne Gravimetry[D].Zhengzhou:Information Engineering University,2004. (孙中苗.航空重力测量理论、方法及应用研究[D].郑州:信息工程大学,2004.)
[2] ELLMANNA,HWANG Y S. First International Symposium of the International Gravity Field Service[R].Istanbul:[s.n.],2006.
[3] JIRO SEGAWA,JOHN JOSEPH E,EIJI NAKAYAMA,et al. Application of Gravimetry by Hellicopter to Identify Marine Active Faults and Improve Accuracy of Geoid at Coastal Zones[C]//Proceedings of IAG General Assembly. Sapporo:[s.n.],2003.
[4] ZHAI Zhenhe, Sun Zhongmiao. Adaptive Fusion Method of Multi-source Gravity Data in Bohai Area[J].Acta Geodaetica et Cartographica Sinica,2010,39(5):1-5.(翟振和,孙中苗. 渤海湾多源重力数据的自适应融合处理[J].测绘学报,2010,39(5):1-5.)
[5] ZHOU Jianxin,LIU Haojun,WANG Shoutan, et al. The Application of Airborne Gravity Survey to Earth Science in Foreign Countries[J]. Geophysical and Geochemical Exploration, 2004,28(2):119-123.(周坚鑫,刘浩军,王守坦,等.国外航空重力测量在地学中的应用[J].物探与化探,2004,28(2):119-123.)
[6] NOVAK P, KERN M, SCHWARZ K P.On Geoid Determination from Airborne Gravity[J]. Journal of Geodesy,2003, 76: 510-522.
[7] FORSBERG R, OLESEN A, BASTOS L, et al.Airborne Geoid Determination[J]. Earth Planets Space, 2000,52:863-866.
[8] FADI A,BAYOUD, MICHAEL G. Two Different Methodologies for Geoid Determination from Ground and Airborne Gravity Data[J]. Geophysical Journal International,2003,155:914-922.
[9] SHI Pan,WANG Xingtao. Frequence Domain Analysis for the Determination of Terrestrial Land Mean Gravity Anomaly from Airborne Gravimetry[J]. Acta Geodaetica et Cartographica Sinica, 1995, 24(4): 301-308.(石磐, 王兴涛. 空中测量地面平均重力异常的频域分析[J]. 测绘学报, 1995, 24(4): 301-308.)
[10] WANG Xingtao, SHI Pan, ZHU Feizhou. Regularization Methods and Spectral Decomposition for the Downward Continuation of Airborne Gravity Data[J]. Acta Geodaetica et Cartographica Sinica, 2004,33(1):33-37.(王兴涛,石磐,朱非洲.航空重力测量数据向下延拓的正则化算法及其谱分解[J].测绘学报,2004,33(1):33-37.)
[11] WANG Xingtao,XIA Zheren,SHI Pan,et a1.A Comparison of Different Downward Continuation Methods for Airborne Gravity Data[J].Chinese Journal of Geophysics,2004,47(6):1017-1022(王兴涛,夏哲仁,石磐,等.航空重力测量数据向下延拓方法比较[J].地球物理学报,2004,47(6):1017-1022.)
[12] SUN Zhongmiao,XIA Zheren,WANG Xingtao,et al. Accuracy Evaluation of Airborne Gravimetry over Plain Area[J]. Bulletin of Surveying and Mapping,2006(10):1-5.(孙中苗,夏哲仁,王兴涛,等.平原地区航空重力测量的精度分析[J].测绘通报,2006(10):1-5.)
[13] SUN Zhongmiao,ZHAI Zhenhe,XIAO Yun, et al.Systematic Error Compensation for Airborne Gravimetry[J].Chinese Journal of Geophysics,2013,56(1):47-49.(孙中苗,翟振和,肖云,等.航空重力测量的系统误差补偿[J].地球物理学报,2013,56(1):47-49.)
[14] WEI M, SCHWARZ K P. Flight Test Results from a Strapdown Airborne Gravity System[J].Journal of Geodesy,1998,72: 323-332.
[15] BOLOTIN Y V, POPELENSKY M Y U. Accuracy Analysis of Airborne Gravity when Gravimeter Parameters are Identified in Flight[J]. Journal of Mathematical Sciences, 2007,146(3):231-237.
[16] BERZHITSKY V N, ILJIN V N, SAVELIEV E B, et al.GT-1a Inertial Gravimeter System Design Consideration and Results of Flight Tests[C]//Proceedings of 9th Saint Petersburg International Conference on Integrated Navigation Systems. Petersburg:[s.n.], 2002.
[17] BOLOTIN Y V, POPELENSKY M Y.The Analysis of Accuracy of Airborne Gravimetry with Stochastic Models[J]. Aerokosmicheskoe Priborostroenie, 2003,4:42-48.
[18] HELMUT MORITZ.Physical Geodesy[M]. NewYork:Springer,2006.
[19] LU Zhonglian. The Theory and Method of Earth Gravity Field[M].Beijing: Liberation Army press,1996.(陆仲连.地球重力场理论与方法[M].北京:解放军出版社,1996.)
[20] WU Xiaoping. The Model of Point Masses in Local Gravity Field[J]. Acta Geodaetica et Cartographica Sinica, 1984,23(4):6-10.(吴晓平.局部重力场的点质量模型[J].测绘学报,1984,23(4): 6-10.)
[21] MORITZ H.Advanced Physical Geodesy[M].NING Jinsheng,GUAN Zelin,trans. Beijing: Surveying and Mapping Press,1984.(赫尔默特·莫里兹.高等物理大地测量学[M].宁津生,管泽霖,译.北京:测绘出版社,1984.)
[22] ZHANG Chuanyin,GUO Chunxi,CHEN Junyong, et al.EGM2008 Model and Its Application in Chinese Mainland[J]. Acta Geodaetica et Cartographica Sinica, 2009,38(4):283-286.(章传银,郭春喜,陈俊勇,等.EGM2008地球重力场模型在中国大陆适用性分析[J]. 测绘学报,2009,38(4):283-286.)