Natural Channel Design Engineering
Civil Engineering, 206 S Elden St, FLAGSTAFF, Arizona, 86001, United States, 11-50 Employees
Phone Number: +19*********
Who is NATURAL CHANNEL DESIGN ENGINEERING
Natural Channel Design Engineering is an engineering and environmental resource management company based out of Flagstaff, Arizona. Our work utilizes a combination of stream assessments a...
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- Headquarters: 206 S Elden St, FLAGSTAFF, Arizona, 86001, United States
- Date Founded: 2001
- Employees: 11-50
- Revenue: $5 Million to $10 Million
- Active Tech Stack: See technologies
Industry: Civil Engineering
SIC Code: 8711 | NAICS Code: 541330 | Show More
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Frequently Asked Questions Regarding Natural Channel Design Engineering
Answer: Natural Channel Design Engineering's headquarters are located at 206 S Elden St, FLAGSTAFF, Arizona, 86001, United States
Answer: Natural Channel Design Engineering's phone number is +19*********
Answer: Natural Channel Design Engineering's official website is https://ncdengineeringinc.com
Answer: Natural Channel Design Engineering's revenue is $5 Million to $10 Million
Answer: Natural Channel Design Engineering's SIC: 8711
Answer: Natural Channel Design Engineering's NAICS: 541330
Answer: Natural Channel Design Engineering has 11-50 employees
Answer: Natural Channel Design Engineering is in Civil Engineering
Answer: Natural Channel Design Engineering contact info: Phone number: +19********* Website: https://ncdengineeringinc.com
Answer: Natural Channel Design Engineering is an engineering and environmental resource management company based out of Flagstaff, Arizona. Our work utilizes a combination of stream assessments and geomorphic characterizations supplemented by analytic assessments to evaluate and understand watersheds. We also consider how society, and the natural processes of channel formation can coincide. Stream channel assessment requires three distinct steps. First, characterization of existing conditions. Second, identification of the potential or reference condition for the system. And third, comparing the existing condition against the potential of the system to identify stream needs and design criteria. Once these parameters are established, an empirical assessment of critical velocities, shear stresses, and other physical processes are analyzed to complete the design to meet project objectives. Our work has successfully extended these principles to a range of projects including habitat enhancement, bank stabilization, transportation infrastructure, drainage design, cultural resource protection, fish passage, and watershed planning efforts in both urban and rural environments. And we have pioneered ways restoration practices that safely and effectively integrate watershed and channel restoration amidst growing infrastructure, varied land use, and increased recreational pressure.
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