【24h】

Elastic properties of lunar regolith from vertical seismic profiling

机译:垂直地震剖面的月球极性弹性特性

获取原文

摘要

To reveal shallow subsurface structures as well as velocity distribution of the lunar regolith layer, we propose a survey of Reverse Vertical Seismic Profiling (RVSP) under a program of SELENE-2. In the RVSP experiment, seismic sources generated within the borehole are recorded by receivers deployed on the Moon surface. In Lunar Soil Mechanics (LSM) Investigation System, drilling operations and shear strength measurements (1 m in total depth) are planned for the regolith layer. We attach a vibrator at the shear experiment devices and generate an active source signal within the borehole. MEMS sensors are further attached at legs of the lander and record the wavefields derived from the vibrator within the borehole. Here we show the effectiveness of RVSP survey using the proposed simple (small-size) acquisition system from simulation study and laboratory experiments. First, we conducted simulation study for the designed survey geometry in order to determine the survey parameters (e.g., source signal). This simulation study demonstrates that the source signal should contain high-frequency components in order to resolve shallow velocity structure from short offset data (less than 3m). Since the high-frequency signal is much attenuated, we used a sweep waveform for the source signal. To examine the ability of the sweep waveform for the high-attenuation regolith layer, we conducted small-scale RVSP experiments in laboratory using lunar soil simulant. The laboratory experiments demonstrated that the seismic signal can be retrieved by cross-correlation between source (sweep) waveform and recorded waveform. From the direct P-waves and reflected waveforms observed on the processed gathers, P-wave velocity of the regolith was estimated as ~85m/s. This study shows that the proposed simple RVSP survey could reveal the shallow subsurface structures as well as velocity within the regolith layer.
机译:为了揭示浅层地下结构以及月球缩略石层的速度分布,我们在硒-2的程序下提出了对逆向垂直地震分析(RVSP)的调查。在RVSP实验中,钻孔内产生的地震源被部署在月球表面上的接收器记录。在月球机械(LSM)调查系统中,为极锂层计划钻孔操作和剪切强度测量(总深度为1米)。我们在剪切实验装置上附加振动器,并在钻孔内产生有源源信号。 MEMS传感器进一步附着在着陆器的腿部,并记录从钻孔内衍生自振动器的波场。在这里,我们通过模拟研究和实验室实验表明了使用所提出的简单(小尺寸)采集系统的RVSP调查的有效性。首先,我们对设计的调查几何进行了仿真研究,以确定调查参数(例如,源信号)。该仿真研究表明,源信号应包含高频分量,以便从短偏移数据(小于3M)来解析浅速度结构。由于高频信号很大,我们使用了源信号的扫描波形。为了检查扫描波形对于高衰减极晕层的能力,我们使用月球模拟剂在实验室进行了小规模的RVSP实验。实验室实验表明,可以通过源极(扫描)波形和记录波形之间的互相关来检索地震信号。从加工填充的直接p波和反射波形,估计〜85m / s的高氧化性的P波速度。本研究表明,所提出的简单RVSP调查可以揭示浅层地下结构以及极岩层内的速度。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号