Founded in 1993, Intuition & Logic is a civil engineering and natural resources analysis, planning and design firm specializing in stormwater management, rivers, trails and pedestrian bridges. We provide professional services to Local, State and Federal government agencies as well as private entities. We are committed to providing practical, affordable, and sustainable civil engineering design solutions that integrate the desired land use into our living world. It is our sincere belief that this unique approach to civil engineering is essential to building beautiful and functional communities.
Services
Intuition & Logic specializes in urban stormwater and channel stabilization. We have stabilized channels, even under the most extreme urban hydrologic regimes in highly erosive environments. We combine open channel hydraulics and fluvial geomorphic principals to design channels to convey flows without erosion; carry water and sediment in equilibrium; supports wildlife through a robust riparian corridor; improve water quality and aquatic habitat. All of which allow the stabilized streams to become an asset to the community.
Intuition & Logic's aquatic habitat designs have included all types of freshwater ecosystems from streams to ponds to wetlands. Aquatic habitat enhancements such as vegetated benches, spawning beds, deep threads, pools, riffles and others provide the necessary living conditions for numerous micro and macro invertebrates, fish, reptiles and other animals.
Intuition & Logic has analyzed and designed hundreds of culverts and bridges for roadways, trails, parking lots, subdivisions, office buildings, hospitals and more. Our bridge and culvert designs range from pre-fabricated pedestrian bridges to roadway culverts and bridges designed to HS-20 loading. Each bridge or culvert design compliments the natural channel morphology to preserve channel stability and extend the life of the structure.
At Intuition & Logic, we understand the importance of riparian corridors and the innumerable benefits to streams they provide: bank stability through root reinforcement of soil structure; near surface velocity and shear stress reduction from vegetation; thermal reduction of stream flows; habitat, from the aquatic substrate to the upland fringe.
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