G AND N FORTUNE logo G AND N FORTUNELIMITED · SINCE 1996

By the G&N commercial engineering team  ·  First published: September 2026  ·  Reviewed for field accuracy

This case study walks through the full delivery of a 2-hectare hydroponic lettuce farm in the Tashkent region — from the first project brief to the first commercial harvest, four months after the container ship docked. The buyer is anonymized; the climate, equipment list, layout, and lessons are real and representative of the work we ship to Central Asia. The case is written from the engineering perspective, which means the focus is on the design decisions that mattered, the mistakes we caught on site, and what we would do differently the next time.

Project Brief: Buyer, Climate, Crop, Market Window

Long rows of dense lettuce heads under a high-tunnel structure showing the scale of a commercial hydroponic farm

The brief arrived with a tight four-month deadline before the first summer harvest. The buyer is a regional agricultural group with existing field acreage, expanding into premium leafy-greens supply for domestic retail and HORECA channels. The crop is butterhead and multi-leaf lettuce for bagged-salad processors. The market window is the May–September shoulder season, when local field supply drops in quality and import competition softens.

Project parameterValue
Footprint2 hectares (≈ 20,000 m²) under glass
RegionTashkent region, Uzbekistan
CropButterhead and multi-leaf lettuce for bagged salad
Market windowMay–September premium window
Climate envelopeSummer peaks 35 °C; winter lows −15 °C
Water sourceMunicipal, hard (≈ 350 ppm CaCO₃)
PowerThree-phase, 50 Hz, with frequent voltage events
First harvest targetMonth 5 from contract signature

The water quality was the single most important non-obvious parameter. Hard municipal water interacts badly with the Pythium profile in NFT lettuce, and it locks out iron and manganese at the higher pH the local supply runs. We designed around it from day one.

System Design: NFT + Ebb & Flow + Harvest Line

Dense NFT channels with net-cup lettuce heads in a high-density commercial hydroponic setup

The 2-hectare footprint was split into two systems. Roughly 75% is NFT for butterhead, which is the buyer’s volume crop and benefits from the high dissolved oxygen and clean IPM profile of a well-run NFT channel. The remaining 25% is ebb and flow for the multi-leaf lettuces and propagation, where the deeper flood helps the propagation trays and gives the operation a backup channel in case of NFT pump downtime.

The design documents were reviewed against the 12 inputs a supplier must have, with particular attention to climate data, water analysis, and the layout constraints imposed by the existing greenhouse columns.

Climate Envelope: 35 °C Summer, −15 °C Winter

Central Asia sits at the climate extremes hydroponic lettuce dislikes most. Summer days hit 35 °C and warm nights stay above 20 °C, both of which accelerate bolting and Pythium. Winter lows reach −15 °C, which freezes unprotected reservoirs and stresses NFT fittings. The engineering response:

The chiller and the generator together account for roughly 18 % of the equipment budget. They are not optional in this climate.

Equipment Shipped: Container List (Anonymized)

The full equipment list shipped across four 40-foot high-cube containers:

ContainerMain equipment
Container 1NFT channels, channel stands, fittings, fasteners
Container 2Flood trays, ebb and flow frames, bulkheads, standpipes
Container 3Reservoirs, dosing skids, pumps, chiller, electrical panels
Container 4Propagation trays, harvest conveyor, hydrocool, cold-room refrigeration

Total shipment was approximately 4 × 40 HC, with container loading planned around installation sequence. Channels and stands were loaded last-in-first-out. The packing list, the pro forma invoice, and the installation drawings were sent to the buyer’s engineer before shipment left the factory, which is standard for our multi-hectare deliveries.

Installation Timeline: 4 Months

The installation was sequenced in four phases over four months:

First Harvest Results: Yield, Quality, Market Reaction

First commercial harvest hit the buyer’s target window in the second half of May. The performance numbers, anonymized and rounded:

ParameterTargetFirst-harvest result
Yield (kg/m²/year, butterhead NFT)35–45In range; second cycle running 10 % above target
Cycle time (transplant to cut)30–35 days32 days at summer setpoints
Tip burn rate< 5 %3 % across the first three cuts
Downy mildew incidentsNoneNone; preventive IPM protocol in place
Shelf life at retail10 days at 4 °C11–13 days measured at the buyer’s packhouse

Market reaction was strong: the buyer’s bagged-salad customers moved the hydroponic line into a premium SKU tier within six weeks, citing leaf cleanliness, uniformity, and shelf life as the differentiators over the existing field supply. Numbers vary by region and season, but the buyer’s first-year economics landed inside the band modelled in our hydroponic farm ROI guide.

The on-site fix that almost became a delay: during commissioning we found that the local three-phase voltage was spiking to 440 V on a hot afternoon, which would have burned out the dosing pumps inside a week. The buyer’s existing surge protection was sized for residential equipment. We installed industrial three-phase surge protectors on the dosing and chiller lines within 48 hours; the rest of the project timeline held because the engineering team flagged the issue during the design review, not at the point of failure. We fix on site, but we would rather fix on the drawing.

What the Buyer Learned and What We Would Do Differently

Every project leaves a list. The honest debrief from this delivery:

Frequently Asked Questions

How long does a 2-hectare hydroponic farm take to install?
A: Approximately four months from contract signature to first commercial harvest, with civil works running in parallel with equipment installation.

What is the largest cost driver in a multi-hectare hydroponic project?
A: Climate control (cooling and heating), followed by the NFT and ebb and flow equipment itself. On this project, climate control was approximately 35 % of the equipment budget.

Can hydroponic lettuce be profitable in a continental climate?
A: Yes. The premium market window and the lower competition from field supply in summer typically offset the higher cooling and heating costs. Numbers vary by region and season.

What is the most common on-site issue on a multi-hectare project?
A: Electrical quality. Voltage events and phase imbalance are the most common causes of pump and dosing failures on first-year projects. Surge protection and a proper generator are not optional.

Do you share the full project plan with new buyers?
A: Yes. Send a project brief through the quote form and we return a draft project plan including the equipment list, container loading plan, installation sequence, and timeline.

Plan a Multi-Hectare Farm

If you are planning a multi-hectare farm, send your brief — site, climate, crop, water analysis, market — through the quote form, and our engineering team will return a draft project plan based on this case study and our other multi-hectare deliveries. The 12 system design inputs is the same list we use to start every project, and the turnkey greenhouse solution page covers how we scope, ship, and commission multi-hectare builds.

— G&N Fortune Limited · hydroponic equipment manufacturer since 1996 · Reviewed by the engineering team

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