Water management

See the water.
Understand the system.

Field observation, defensible chemistry, mapping, practical recommendations, and implementation for lakes, reservoirs, rivers, fisheries, and irrigation systems.

01Water chemistrySampling, in-situ conditions, and laboratory analysis
02Aquatic vegetationDistribution, biovolume, condition, and management
03Nutrients & algaeSystem drivers, response planning, and treatment
04Treatment & verificationImplementation, follow-up, and measurable change

A waterbody is more than a sample.

A laboratory result describes the water that entered the bottle. Good management also requires understanding where that sample came from, what the system is doing, how conditions vary across space and time, and what outcome matters.

Amaruq connects chemistry, field observation, sonar mapping, vegetation assessment, operational history, and implementation to define the right response.

Measure the conditions.
Define the work.

The objective is a defensible picture of the system and a practical plan that reflects the waterbody, the management question, and the realities of implementation.

01

Water quality

Representative sampling, in-situ measurement, certified laboratory coordination, trend review, and clear interpretation.

02

Aquatic vegetation

Species, density, distribution, biovolume, nuisance conditions, habitat value, and management priorities.

03

Nutrient management

Phosphorus and nitrogen conditions, internal and external loading, treatment options, and measurable objectives.

04

Algae response

Condition assessment, bloom drivers, risk-based response, treatment planning, and follow-up monitoring.

05

Mapping & bathymetry

Depth, volume, vegetation, bottom conditions, treatment acreage, and repeatable spatial data.

06

Field implementation

Application support, treatment execution, logistics, documentation, and post-project verification.

Field observation changes the interpretation.

Sampling is most useful when it is built around the system. Location, depth, weather, flow, vegetation, infrastructure, recent treatments, and visible conditions all shape what the data means.

Representative samplingLocations and timing tied to the management question
In-situ conditionsImmediate field measurements and observations
Laboratory analysisQualified third-party testing and QA/QC
Practical interpretationResults connected to decisions and next steps

Map what point samples miss.

Bathymetry, vegetation biovolume, bottom composition, and repeatable survey data show how conditions are distributed across the waterbody—not only where a sample was collected.

Explore BioBase mapping

Understand. Plan. Act. Verify.

01

Understand

Define the management question, survey the system, collect defensible data, and establish the baseline.

02

Plan

Connect the conditions to objectives, constraints, treatment options, timing, logistics, and measurable outcomes.

03

Act

Coordinate the field response and implement the work with the same understanding used to design it.

04

Verify

Measure again, document change, show what worked, and define the next management step.

Built for the systems you manage.

The approach adapts to the waterbody while preserving the same discipline: understand the system, define the response, implement carefully, and verify the result.

LakesReservoirsRivers & fisheriesIrrigation systemsCanalsRemote waterbodies

Recommendations built to be used.

The same team that helps define the response can support or execute the work in the field. That continuity keeps the recommendation connected to the waterbody and the conditions that shaped it.

When implementation matters, the work should not lose the context that made the recommendation defensible.

Bring us the question.
We’ll define the work.

Tell us what you need to understand, manage, treat, restore, or prove. We will help define the field program and the response.