|
|
|
| Research on surface mining subsidence monitoring method based on GNSS in Yangquan Coal Mine |
| Geng Ruizhi1, Geng Zhijiang2, Chen Zhen2 |
| 1. Henan Bureau of Hydrology and Water Resources, Zhengzhou 450003, China; 2. China University of Mining and Technology, Xuzhou 221116, China |
|
|
|
|
Abstract Due to the large-scale mining of coal, geological disasters occur frequently in the mining area and the surrounding areas, and the related problems become increasingly prominent. It is very important to monitor the surface subsidence in the mining area. The advantages and disadvantages of the common method to mining subsidence monitoring were analyzed and the development of precise point positioning (PPP) was summarized. The mining subsidence monitoring method based on the precise point positioning was put forward according to its advantage. The application of this technology in surface subsidence monitoring in Yangquan mining area was introduced, which provided decision-making basis for rational exploitation of underground mineral resources and control of land subsidence, and was of great significance to the sustainable development of mining area.
|
|
|
|
|
|
| [ 1 ] 廉旭刚,胡海峰,郭博婷. 山区开采地表动态移动变形规律[ J ]. 金属矿山,2016( 9 ):151 - 156.
[ 2 ] 刘一霖. 矿区开采沉陷大量级形变监测与反演分析[ D ]. 西安:长安大学,2013.
[ 3 ] 祝传广. 融合多源SAR影像的形变监测研究[ D ]. 徐州:中国矿业大学,2015.
[ 4 ] 张小红,李星星,李 盼. GNSS精密单点定位技术及应用进展[ J ]. 测绘学报,2017,46( 1 0 ):1 399 - 1 407.
[ 5 ] 陈秋计,田柳新,张 越. 山区开采沉陷预计中地表特性参数提取方法研究[ J ]. 煤炭技术,2019,38( 3 ):83 - 86.
[ 6 ] 陈秋计,田柳新,张 越. 山区开采沉陷预计中地表特性参 数提取方法研究[ J ]. 煤炭技术,2019,38( 3 ):83 - 86.
[ 7 ] 高精度动态监测的可行性研究[ J ]. 煤炭学报,2009,34( 10 ):1 322 - 1 327.
[ 8 ] 白光宇,张德强,张进德,等. 山区开采沉陷地表移动变形规律[ J ]. 辽宁工程技术大学学报:自然科学版,2017,36( 7 ):684 - 688.
[ 9 ] 栾元重. 地表移动GPS实时监测技术[ J ]. 测绘工程,2000,9( 3 ):33 - 34.
[ 10 ] 何国清,杨 伦,凌赓娣,等. 矿山开采沉陷学[M].徐州:中国矿业大学出版社,1991. |
|
|
|