The Kuhn Company · Quenched Earth Engineering is a proposed brand

INTEGRATED WATER & LANDSCAPE PLANNING

Every water source.
A considered purpose.

Rainwater harvesting and graywater reuse can become part of how a landscape works. Start by understanding where water comes from, where it can go and what the site can support. Soil-building and soil-management practices are part of that picture.

01 / ACTIVE

Save it
for later.

Collect roof runoff in a tank for a planned nonpotable use.

COLLECT · STORE · USE
02 / PASSIVE

Let the land
do its part.

Shape the site to slow, spread and infiltrate rainfall where suitable.

SLOW · SPREAD · SOAK
03 / GRAYWATER

Give water
a second use.

Route suitable household graywater to carefully planned landscape irrigation.

SEPARATE · DIVERT · IRRIGATE
Diagram showing active rainwater collection, storage and nonpotable irrigation alongside passive capture; both are coordinated with site-specific soil and root-zone management. Separate graywater and potable systems are not shown.
Original concept diagram. Soil suitability, irrigation needs, source separation and safe overflow need site-specific design.

01 / ACTIVE RAINWATER HARVESTING

Roof to tank.
Tank to landscape.

Active systems collect and store rainwater so it can be used after the storm has passed. Roof catchment is one starting point; the collection surface, storage and intended use all shape the design.

Untreated roof runoff is not drinking water. It can pick up debris and contaminants. This active-harvesting concept focuses on nonpotable landscape use. Drinking-water goals need a separate potable-feasibility evaluation; treatment must fit the source and intended use.

County rainwater planning resources
01

Start at the roof

Consider the roof material and condition, catchment area, gutters and downspouts. Screens and debris control keep larger material out; first-flush management may divert the initial wash-off.

02

Store with a plan

Size storage around seasonal rainfall and landscape demand. Plan for a covered tank, protected openings, maintenance access and an overflow route for storms that exceed capacity.

03

Match water to use

Choose filtration and any treatment for the intended use. Gravity or a pump can deliver water to appropriate irrigation; drinking-water plumbing must remain protected from cross-connections.

04

Keep it working

Include a practical inspection and maintenance routine for the catchment, screens, tank, equipment and overflow. Storage is useful only when it can be operated and cared for.

02 / PASSIVE RAINWATER HARVESTING

Make the landscape
part of the system.

Passive systems use landform and planting areas to hold rainfall near where it falls. Instead of storing water in a tank, the design manages its path through the site and into suitable soil.

Infiltration is a site-specific choice. Soil, slope, foundations, utilities, setbacks and onsite wastewater areas can limit where it belongs. Some sites need a different approach.

County rain-garden guidance
01

Work with the contours

Thoughtful grading can direct appropriate runoff toward landscape areas while preserving drainage away from buildings and respecting neighboring property.

02

Create places to pause

Swales, shallow planted basins and rain gardens can slow and temporarily hold runoff. Soil conditions, contributing area and planting choices guide their location and form.

03

Design beyond the usual storm

Every capture area needs a considered overflow path. Plan where water goes when the soil is saturated or a storm exceeds the feature's capacity.

03 / GRAYWATER LANDSCAPE IRRIGATION

A separate source.
A useful second life.

Graywater is household water from suitable sources such as showers, baths, bathroom sinks and clothes washers. It is distinct from rainwater and excludes toilet wastewater, kitchen-sink water and dishwasher discharge.

Nonpotable and source-specific. A graywater system needs a separate, properly identified route to an approved use. It must not create a cross-connection with drinking-water plumbing.

San Diego County graywater guidanceRiverside County graywater guidance
01

Choose appropriate sources

Keep unsuitable wastewater and harmful household products out. A planned diversion back to the sewer or septic system is important when water is unsuitable for irrigation or the landscape cannot accept it.

02

Design for the landscape

Match distribution to suitable plants, soils and irrigation demand. Local guidance calls for subsurface dispersal that avoids spraying, ponding, runoff and contact with people or pets.

03

Coordinate the whole site

Account for buildings, property lines, wells and onsite wastewater infrastructure. Graywater does not eliminate the need for a compliant wastewater system.

04

Confirm the local path

Rules depend on the system and jurisdiction. Some narrowly defined clothes-washer systems may qualify for permit exemptions; other systems require review and permits. Confirm requirements before design or installation.

SOIL BUILDING & SOIL MANAGEMENT

Care for the ground.
Support the landscape.

Water planning begins beneath the surface. Soil structure, compaction, drainage and existing vegetation help determine what a landscape can support and which practices make sense.

Different soils, different jobs. Landscape soil-health practices are separate from structural-fill specifications and onsite wastewater absorption-area design. Each needs its own evaluation and appropriate professional review.

USDA soil-health principlesUniversity of California landscape guidance
01

Understand before changing

Assess soil condition, drainage and compaction, with testing where needed. Soil-building is a site-specific process, not a standard amendment recipe or a promised infiltration rate.

02

Protect structure and cover

Limit avoidable disturbance and compaction in planting areas. Choose suitable surface cover and organic matter where appropriate, accounting for plant needs and site constraints.

03

Let roots play their part

Use appropriate vegetation and rooting patterns to support landscape soil function and help protect against erosion. Coordinate planting with water availability, utilities and required clearances.

04

Keep soil in place

Pair soil care with erosion protection and a clear runoff plan. Amendments and planting cannot substitute for drainage, slope stability, engineered fill or a compliant OWTS design.

POTABLE RAINWATER FEASIBILITY

A drinking-water goal.
A rigorous path.

Interested in using roof-captured rainwater for drinking water? Start with feasibility: the site, intended use, water quality, dependable supply, treatment and the local approval path.

Capture alone does not make water potable. Roof runoff needs a separately evaluated drinking-water system. Graywater remains a distinct, nonpotable source and is not part of this drinking-water concept.

01

Evaluate the source

Review roof and collection materials, surrounding contamination sources and expected water quality. A clean-looking roof or clear water is not proof of safety.

02

Build in appropriate barriers

Assess source protection, first-flush management, filtration and disinfection as a coordinated system. Testing, maintenance and operating procedures need to match the actual risks and intended use.

03

Plan through the dry season

Compare seasonal collection with demand, usable storage and drought conditions. Any backup supply and plumbing connections need their own protection and approval.

04

Confirm the path before promising it

Coordinate applicable engineering, specialist design and agency review early. Australian experience can inform the approach, but California approval is project-specific. Approval, year-round supply and independence from other water sources cannot be assumed.

KEYLINE-INFORMED SOIL & WATER DESIGN

Read the terrain.
Plan the connections.

Keyline-informed planning looks at the relationship between landform, water, soil and vegetation. The useful starting point is a careful reading of ridges, valleys, slopes and existing drainage.

A design lens, not a standard prescription. Classic keyline cultivation works off contour; it is not the same as a level swale. Australian precedent does not replace California site evaluation, engineering or local approvals.

01

Let the terrain lead

Consider how grading, access, planting and water movement fit together. Locate storage and use gravity where the site can safely support them, while maintaining controlled overflow.

02

Focus on the root zone

Coordinate suitable planting, soil cover and soil-management practices with the pattern of water availability. Root-zone moisture is a planning consideration, not a guaranteed outcome.

03

Adapt with care

Check geology, slope stability, soils, utilities and wastewater constraints before proposing earthwork or cultivation. No blanket ripping, diversion or infiltration strategy belongs on every property.

PUTTING THE PIECES TOGETHER

One site plan.
Distinct water systems.

Think together.
Keep the sources clear.

A tank can supply planned irrigation while a separate rain garden manages suitable runoff. Graywater can serve another defined landscape area. Their location, demand, overflow, soil conditions and maintenance should be considered together, without casually mixing sources.

We begin with site-level feasibility and civil coordination, from landscape capture to separately evaluated potable-rainwater goals and terrain-informed design. Final design may also require plumbing, treatment, landscape or other specialists and approval from the responsible local agencies.

Discuss water on your site

FURTHER READING

Grounded in local guidance.

These are planning concepts, not installation instructions. Current local requirements and site conditions govern the final approach.