For growers with CHP, lighting and flexibility

Greenhouse horticulture

For growers who want to better visualise gas, electricity, CHP, lighting, heat buffering and market impact.

Response within one business day

Pricing model

Modular per meter, confirmed after scope

Start with Consumption Analysis per meter. You only add Financial Analysis and Capacity Analysis when they add value.

Interpret profiles
Make flexibility visible
Cost analysis
Integration with portfolio management
Greenhouse horticulture: Energy IntelligenceGreenhouse horticulture

01

The approach

From recognizable situations to concrete data questions.

02

Sector profile

Quarter-hour values reveal peaks and baseload consumption.

03

Where the money is

Cost, capacity and anomalies come together in an action view.

The approach

The greenhouse already steers. Now on energy too.

Lighting, screens, CHP and CO₂ dosing are adjusted every hour in the greenhouse. COMCAM sets the energy profile alongside climate and market price, so every cultivation decision also becomes a substantiated energy decision.

Lit cultivationCHP and own solarSteering on hourly pricesFeed-in limit
Greenhouse horticulture: The approach

Recognise

The quarter-hour profile is placed alongside climate and price data. Offtake and feed-in both become visible, because the greenhouse has two sides.

Explain

For every steering decision it is recorded what it delivered: running on heat demand, selling into the peak or curtailing at negative prices.

Steer

Lighting and CHP dispatch move with the market, within the limits of the crop. The feed-in limit is guarded instead of discovered.

Pain points

Where greenhouse horticulture often runs into trouble.

Energy Intelligence is positioned differently for each sector. The value lies in recognisable situations, not in generic dashboards.

Complex energy position

CHP and lighting

Gas and electricity

Market impact

The energy model

Greenhouse horticulture

Where consumption, generation and steering come together in this sector: from meters and cooling to solar panels and charging infrastructure.

The energy model: Greenhouse horticulture

Sector profile

The greenhouse profile: lighting, CHP and sun turn the greenhouse into a power plant.

Day profile in quarter-hour values
00:0012:0024:00Contracted capacity1234
1

Night lighting

Lit cultivation runs at full power at night: the profile is upside down compared with other sectors.

2

Morning transition

Lights off, screens open: the transition shows how sharply you steer on daylight and price.

3

Midday dip: own generation

CHP and solar cover demand; the grid sees almost nothing, or you export. At negative prices every steering decision counts.

4

Contracted capacity

Offtake and feed-in each have their own limit. The profile guards both sides.

Where the money is

Three insights that make the difference in greenhouse horticulture.

01

The greenhouse already steers. The question is whether you measure it

Lighting, screens, CHP and CO₂ dosing are adjusted every hour. Without quarter-hour values alongside climate and price data, the energy side of those decisions stays invisible.

02

CHP dispatch has become a market decision

Run on your own heat demand, sell into the EPEX peak or apply curtailment at negative prices: the right choice changes by the hour. The profile records what each choice delivered.

03

Feed-in deserves the same attention as offtake

Export limits and negative prices make the generation side a steering question too. Measure only offtake and you see half the greenhouse.

Modules

Energy Intelligence for greenhouse horticulture.

Start with Consumption Analysis per meter. You only add Financial Analysis and Capacity Analysis when they add value.

Consumption Analysis

Base rate per meter for consumption, locations and trends.

Book a no-obligation call

Financial Analysis

Add-on per meter for costs and invoice checks.

Book a no-obligation call

Capacity Analysis

Add-on per meter for peaks and connection capacity.

Book a no-obligation call
FAQ

Frequently asked questions about energy insight in greenhouse horticulture.

From metering data and savings opportunities to capacity, regulation and a practical start.

01

Where is the first measurable saving opportunity in greenhouse horticulture?

The greenhouse already steers. The question is whether you measure it. Lighting, screens, CHP and CO₂ dosing are adjusted every hour. Without quarter-hour values alongside climate and price data, the energy side of those decisions stays invisible.

02

Which deviations and decisions become visible through comparison in greenhouse horticulture?

CHP dispatch has become a market decision. Run on your own heat demand, sell into the EPEX peak or apply curtailment at negative prices: the right choice changes by the hour. The profile records what each choice delivered.

03

Which strategic decision can the energy profile substantiate?

Feed-in deserves the same attention as offtake. Export limits and negative prices make the generation side a steering question too. Measure only offtake and you see half the greenhouse.

04

Which patterns appear in the energy profile of greenhouse horticulture?

Night lighting: Lit cultivation runs at full power at night: the profile is upside down compared with other sectors. Morning transition: Lights off, screens open: the transition shows how sharply you steer on daylight and price.

05

How does capacity analysis support expansion or electrification?

Offtake and feed-in each have their own limit. The profile guards both sides. COMCAM compares quarter-hour values with contracted capacity, so additional demand can be assessed before investment decisions are made.

06

Which energy data does COMCAM need for greenhouse horticulture?

The foundation consists of quarter-hour values per meter and location. Where available, COMCAM adds gas data, contracted capacity, tariffs, operating hours and relevant asset data. Access is arranged through authorisation or an existing data connection.

07

Are additional sensors or submeters always required?

No. Existing smart meters and telemetry data are the logical starting point. Submetering is only added where the main profile cannot answer a specific process question with sufficient precision.

08

Which Dutch energy-saving obligations may apply to a location?

In the Netherlands, the energy-saving obligation currently applies from 50,000 kWh of electricity or 25,000 m³ of natural-gas equivalent per location per year. Measures with a payback period of no more than 5 years must be implemented. An extension to 7 years is intended for 1 July 2027, but the five-year threshold remains in force until the change is final. The exact obligation depends on the location, use and activity.

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Let your energy data work for you.

Book a no-obligation call. We discuss your energy question, look at your own metering data and whether structural insight adds value.

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