Irregular Terrain
Complex field levels and fragmented plots made uniform pressure and water distribution difficult to achieve.
PROJECT CASE · GANSU, CHINA
A customized water and fertilizer integration system designed for more than 1,000 mu of pepper farmland.

01 / PROJECT BACKGROUND
This large-scale pepper irrigation project is located in Gansu, China, and covers more than 1,000 mu of farmland. The client needed a dependable irrigation network capable of serving a complex site with limited water resources.
Irrigation for every zone had to be completed within only three days. That requirement made hydraulic balance, system capacity and field-level operating efficiency central to the design.
02 / CLIENT CHALLENGES
Complex field levels and fragmented plots made uniform pressure and water distribution difficult to achieve.
The available water source had to serve a large planting area with minimum conveyance and application loss.
Every irrigation zone needed to complete watering within a strict three-day operating window.
03 / ON-SITE INVESTIGATION
Our technical team conducted an on-site investigation before preparing the irrigation plan. Terrain changes, soil quality, water-source distribution and soil salinization were assessed as one connected system.
The survey data allowed the team to define practical irrigation zones, calculate flow demand and choose a solution that could be operated reliably by the local project team.


04 / CUSTOMIZED SOLUTION
The final design combined hydraulic zoning, filtration, fertilizer delivery and matched drip tape into one coordinated system built around the site’s real operating limits.

The technical team surveyed terrain, soil condition, water-source distribution and salinization before system design.
The farmland was divided into practical irrigation zones to balance pressure, flow and the available irrigation window.
A complete water and fertilizer integration system was configured for accurate nutrient delivery and simplified control.
Drip tape type and specification were selected around the field layout, crop spacing and required discharge uniformity.
05 / FIELD VIDEO
Three field records show preparation, regional scale and the coordinated construction process behind the completed system.
Field crews prepare the protected growing beds and install the irrigation layout inside the greenhouse structures.
An aerial view reveals the project scale, fragmented plots and the surrounding Gansu mountain terrain.
Mechanized bed covering and coordinated field work accelerate delivery across the large planting area.

06 / PROJECT OUTCOME
After the system upgrade, irrigation efficiency improved significantly and the short three-day cycle could be completed as required. Uniform water and nutrient delivery now supports stable, high-quality pepper growth across the project area.
PROJECT 02 · HAINAN, CHINA
This project covers 500 mu of galangal fields in Hainan, where the customer required exceptionally fine atomization and stable, gentle irrigation for a high-value medicinal crop.

WHY THIS SYSTEM
After comparing multiple irrigation solutions, the customer selected our butterfly micro sprinklers. Their fine water droplets are gentle and uniform, helping protect stems and leaves while avoiding concentrated runoff or standing water.
The uniform wetting pattern prevents surface soil from hardening and helps maintain good air permeability. The same network also supports integrated fertigation, allowing water and nutrients to reach the root zone evenly.
Soft, mist-like rainfall distributes fine droplets evenly across the crop canopy.
Low-impact droplets protect tender galangal stems and leaves from mechanical water damage.
Uniform coverage avoids local ponding, reduces surface hardening and preserves soil aeration.
Water and dissolved nutrients can be delivered evenly to the active root zone through one system.
FIELD PERFORMANCE
The field records show the sprinkler layout during crop growth and the broad, stable coverage achieved across the planting area.
Butterfly micro sprinklers apply a soft, uniform mist across the established galangal planting rows.
Field testing confirms stable sprinkler spacing, broad coverage and consistent operation across the site.
RECOMMENDED APPLICATIONS
PROJECT 03 · HENAN, CHINA
A cost-efficient irrigation solution designed for 2,000 mu of wheat fields, balancing broad coverage, low installation quantity and reliable long-term use.
SYSTEM SELECTION
For broad-acre crops such as wheat, the customer focused on overall planting cost and irrigation efficiency. The pole sprinkler system was selected because its durable equipment can be reused for three to four years rather than replaced every season.
Wheat does not require ultra-fine atomization, so rock arm sprinklers with a large spraying diameter provide the right coverage. Only three to four sprinkler points are needed per mu, reducing both installation quantity and field labor.

Durable pole sprinkler equipment can serve multiple growing seasons, reducing repeated investment compared with disposable drip tape.
Rock arm sprinklers provide broad field coverage that matches wheat's irrigation needs without unnecessary ultra-fine atomization.
Large coverage means fewer sprinkler points, a simpler field layout and lower installation and labor requirements.
The complete system distributes irrigation water and dissolved nutrients uniformly across extensive wheat fields.
FIELD PERFORMANCE
Two field records show the extensive sprinkler layout and the long wheat rows served by the reusable irrigation network.
A field record shows the wide-spacing pole layout and large-area coverage delivered by rock arm sprinklers.
Long, aligned planting rows demonstrate how a limited number of sprinkler points can serve a large field efficiently.
PROJECT VALUE
The completed pole sprinkler network supports full fertigation management and uniform water and nutrient distribution. Its broad coverage, reduced equipment quantity and multi-year service life make it a practical choice for wheat and other large-area field crops.
Plan a Large-Field SystemPROJECT 04 · GUIZHOU, CHINA
A terrain-adapted sprinkler solution serving 800 mu of vegetable fields distributed across the hills of Guizhou.
PROJECT APPROACH
Vegetable fields in Guizhou are often divided by slopes, paths and elevation changes. The irrigation layout therefore needs to follow the land rather than depend on one uniform rectangular field plan.
Pole-mounted sprinklers provide broad overhead coverage across the planting beds. Distributed irrigation points make it easier to serve separated plots while reducing repeated manual movement of hoses and temporary sprinklers.
The vertical field view preserves the full hillside profile and shows several sprinkler points operating across adjacent plots.
Sprinkler points can be arranged around changing field levels and irregular vegetable plots across the hilly site.
Pole-mounted sprinklers distribute water over a wide area, reducing the need to move irrigation equipment by hand.
The 800 mu project can be organized into manageable irrigation areas that follow the natural shape of the farmland.
Uniform overhead application supports practical irrigation across open-field vegetable beds and multiple planting blocks.
PROJECT VALUE
The finished layout turns a complex hillside site into manageable irrigation areas. Wide sprinkler coverage and flexible placement help the customer water extensive vegetable fields with a clearer, more repeatable field operation.
Plan a Hillside Irrigation ProjectPROJECT 05 · HENAN, CHINA
An organized sprinkler network designed around 600 mu of long, parallel garlic planting beds in Henan.
FIELD PERFORMANCE
The video shows long planting beds served by yellow field supply lines and evenly distributed pole sprinklers. Their elevated position creates broad overlapping coverage while keeping the irrigation hardware clear of the crop rows.
This structured arrangement supports clearer field zoning and reduces the need to repeatedly move hoses or temporary sprinklers across the planted area.
Supply lines and sprinkler poles follow the long garlic beds, creating an orderly network that is easy to inspect in the field.
Elevated sprinkler points spread water across multiple planting rows and make efficient use of each operating position.
The 600 mu base can be divided into practical operating areas for more organized, repeatable irrigation management.
A fixed field arrangement reduces repeated hose handling and temporary sprinkler relocation between garlic beds.
PROJECT VALUE
The row-aligned pole sprinkler network gives the garlic base a stable field arrangement that is easier to operate, inspect and repeat throughout the irrigation season.
Plan a Garlic Irrigation ProjectPROJECT 06 · CHENGDU, CHINA
A fine-mist irrigation layout designed to maintain even moisture across long outdoor rice seedling beds in the Chengdu region.
IRRIGATION APPROACH
Rice seedlings require stable bed moisture without the impact of heavy water streams. Multiple low-position micro sprinklers are arranged along the blue supply line to form a light, overlapping spray above the protected nursery surface.
The video shows simultaneous operation across several planting beds. This repeated layout helps the grower maintain more even moisture while keeping the irrigation network simple to observe and manage.
Small droplets create a soft irrigation pattern suited to delicate rice seedlings and newly established nursery beds.
Closely arranged sprinkler points overlap their coverage to reduce dry areas across the long protected beds.
Compact risers keep each sprinkler close to the seedling zone for focused, practical nursery irrigation.
The blue supply line supports multiple micro sprinklers in sequence, creating a clear and repeatable field layout.
PROJECT VALUE
Fine droplets, overlapping coverage and a low-position field layout provide the rice nursery with a practical method for maintaining consistent moisture during the sensitive seedling period.
Plan a Rice Nursery System