首页> 外文期刊>Deep-Sea Research >A deep-sea, high-speed, stereoscopic imaging system for in situ measurement of natural seep bubble and droplet characteristics
【24h】

A deep-sea, high-speed, stereoscopic imaging system for in situ measurement of natural seep bubble and droplet characteristics

机译:一种深海,高速,立体成像系统,用于原位测量自然渗漏气泡和液滴特性

获取原文
获取原文并翻译 | 示例
           

摘要

Development, testing, and application of a deep-sea, high-speed, stereoscopic imaging system are presented. The new system is designed for field-ready deployment, focusing on measurement of the characteristics of natural seep bubbles and droplets with high-speed and high-resolution image capture. The stereo view configuration allows precise evaluation of the physical scale of the moving particles in image pairs. Two laboratory validation experiments (a continuous bubble chain and an airstone bubble plume) were carried out to test the calibration procedure, performance of image processing and bubble matching algorithms, three-dimensional viewing, and estimation of bubble size distribution and volumetric flow rate. The results showed that the stereo view was able to improve the individual bubble size measurement over the single-camera view by up to 90% in the two validation cases, with the single-camera being biased toward overestimation of the flow rate. We also present the first application of this imaging system in a study of natural gas seeps in the Gulf of Mexico. The high-speed images reveal the rigidity of the transparent bubble interface, indicating the presence of clathrate hydrate skins on the natural gas bubbles near the source (lowest measurement 1.3 m above the vent). We estimated the dominant bubble size at the seep site Sleeping Dragon in Mississippi Canyon block 118 to be in the range of 2-4 mm and the volumetric flow rate to be 0.2-0.3 L/min during our measurements from 17 to 21 July 2014. Published by Elsevier Ltd.
机译:介绍了深海,高速,立体成像系统的开发,测试和应用。新系统专为现场准备部署而设计,着重于通过高速和高分辨率图像捕获来测量自然渗透气泡和液滴的特性。立体视图配置允许精确评估图像对中运动粒子的物理比例。进行了两个实验室验证实验(连续气泡链和气石气泡羽),以测试校准程序,图像处理和气泡匹配算法的性能,三维查看以及气泡大小分布和体积流量的估计。结果表明,在两个验证案例中,立体视图能够将单个气泡大小的测量值提高到单个摄像头视图最大90%,并且单个摄像头会偏向于高估流量。我们还介绍了该成像系统在墨西哥湾天然气渗漏研究中的首次应用。高速图像揭示了透明气泡界面的刚性,表明在气源附近(排气口上方1.3 m处的最低测量值)的天然气气泡上存在包合物水合物表皮。在2014年7月17日至21日的测量中,我们估计密西西比峡谷地块118的渗入点沉睡之龙的主要气泡大小在2-4 mm范围内,体积流量为0.2-0.3 L / min。由Elsevier Ltd.发布

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