Modelling from land to water

Author:Monica Miller Rodgers

气候变化正在影响全球淡水供应的机构。科罗拉多河经过美国的七个州到达墨西哥,在墨西哥倒入科尔特斯海,就是这样的例子。

水流被归类为2015年美国最濒危河流的水。reduce by 10 to 30 per centby 2050. Warmer weather, less snowfall, and more than hundred dams built into the river’s path have placed significant stress on its ecosystem. This detrimentally impacts fish and wildlife habitat, along with the:

  • $26 billion recreational economy,
  • 4000万人依靠河流每天用水,
  • 200万公顷的农田灌溉。

With so much riding on the health of Colorado River, the U.S. Bureau of Reclamation (BOR), tasked with overseeing water resource management and the delivery of water, needed to better understand the basin geomorphology.

“我们正在努力了解科罗拉多河正在发生的事情,”said Carrie Scott, chief of BOR’s Yuma Area Office technical support office.“我们对河流进行建模,以了解整个浅水中的沉积物沉积物,进而帮助我们确定诸如河岸降解或流动中的'choper点'之类的水。”

As with any river’s nature, Colorado River’s meandering is to change its natural course. This poses a threat to nearby structures, such as roads, agricultural and residential communities. BOR strives to keep the river on its course through dredging and armouring bank lines.

“As the water masters of the River, we need to ensure continuous water delivery. We have an ongoing program to contract for a study to map the river by reach to understand how the riverbed is changing,”said Scott.“我们收到的数据有助于我们更好地建模河流的表面和地下。我们拥有的质量越好,我们就越能建模和了解各种水流的影响,并为沿河的项目产生了工程设计。”

Turning to Allied GIS, a mapping firm specialising in GIS, imagery and database applications, the firm was tasked to build a digital orthophotography and a topographical map that met the U.S. national mapping accuracystandard of 30 cm。然后,Allied GIS与德克萨斯大学奥斯汀分校杰克逊地球科学学院(局)的杰克逊地球科学学院合作,以获取机载的浴综合激光雷达数据和另一家调查公司,以提供地形激光雷达和地面支撑。


从测深到地形

A long-time user of Leica Geosystems airborne sensors, researchers at the Bureau used theirLeica Chiroptera空降系统收集加利福尼亚和亚利桑那州下科罗拉多河流域的数据。

Chiroptera has two independent LiDAR scanners:

  1. 地形激光雷达的近红外(红波长)
  2. A visible (green-wavelength) for bathymetric LiDAR

Chiroptera is designed to acquire data concurrently with both scanners, enabling surveys in complex landscapes with shallow water bodies. The river survey was conducted at an altitude of400 m above the ground level, which is the optimum altitude用于收集测深痛数据。地形扫描仪以300 kHz的重复速率同时获得数据,以区分水面,并绘制直接的海岸线。

“ chiroptera允许我们捕捉河流的测深方面和近距离地形的特征”该局的主要研究科学家库塔米斯·塞拉姆(Kutalmis Saylam)说。“We’ve been using our Chiroptera for more than four years now, and we can rely on this robust and intuitive system in the field. That’s very important for us as reliable sensors are a must for our work.”

调查地点的天气状况主要是理想的,总共完成了9个任务。调整了飞行计划,以维护安全飞机操纵,尤其是在调查区的北端,高山峰。整个调查133条飞行线覆盖area of 265 km2完成了21小时的空降时间


清楚地看到

任务的一部分包括收集来自世界上最深的水坝。The Parker Dam, between the states of Arizona and California has a retaining wall height of 98 m, and discharges water with a varying rate, depending on the season. In coordination with the dam authority, the Bureau scheduled the airborne missions during lower discharge period (146 versus 252 m3/sec) for possible lower turbidity levels in the water-column. Because turbidity absorbs light beams and prevents them from penetrating into deeper water column, it is an essential part of quality assurance procedures for conducting a successful ALB survey. The average reading was 0.41 nephelometric turbidity unit (NTU) in the northern sections of the river, which indicated overall low levels of turbidity in the water-column. In the south, the river was shallower, running through a desert-like environment and losing much of its water to irrigation. These conditions contributed to higher turbidity levels of up to 6.25 NTU and created difficulties for LiDAR beams.

“骨翅目的坚固光束很容易渗透到河北部的晴朗水域。我们创建了一个无缝的水底表示,深度超过10 m,”said Saylam.“In the south, where turbidity levels were higher, we used available returns and interpolation methods to estimate and create a water-bottom representation.

Leica LiDAR Survey Suite LSS v2.3 software contains an updated turbid-water algorithm that filters the backscatter noise created by low or moderate levels of turbidity and selects the most distinctive peak as the water-bottom representation.

“This algorithm enabled the discovery of more returns from deeper waters of the river, and we measured an overall improvement of 81 cm compared to normal returns - a significant achievement in LiDAR bathymetry,”said Saylam.

Facilitating the study of the lower Colorado River basin geomorphology and further understanding of the effects of climate change, the Bureau was able to provide an accurate and detailed map.

“We were able to quantify the water-column depth, map the bottom of the river, the shoreline, and the overall topography of the river as requested by the U.S. Bureau of Reclamation”said Saylam.“This valuable knowledge enables us to undertake similar projects in the future, and the reliability of Chiroptera allows us to continue focusing on similar scientific studies.”

BOR will further use the digital orthophotography and the topographical map to match its in-house survey team’s measurements from boat and ground means. The LiDAR study conclusions will continue to help BOR to keep Colorado River flowing in the right direction and supporting those who depend on it.

“我们从LIDAR收到的数据已校准了我们内部团队的调查,”said Scott.“This information is important to our ongoing operation to continue to improve our models so we can correctly identify what’s changing what could hap-pen and to develop our projects according to conditions.”

Abonnement au Reporter digital

接收LE杂志记者en pdf PAR电子邮件。
接收LE杂志记者en pdf PAR电子邮件。

Contact Leica Geosystems

Find your Leica Geosystems contact for sales, support and technical service.
Find your Leica Geosystems contact for sales, support and technical service.

Contact our Public Safety, Security and Forensics experts

经验丰富的公共安全专家的点对点建议
经验丰富的公共安全专家的点对点建议