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Reciprocating engines: modular megawatts that arrive quickly

A reciprocating engine generator is a large piston engine driving an alternator, delivered as a package of a few megawatts and paralleled with others to reach the output required. It is less efficient than a large turbine and it can be on site and running in a fraction of the time.

In one sentence

A reciprocating engine generator uses a piston engine — diesel, natural gas or dual-fuel — to drive an alternator, supplied in modular units of a few megawatts that are paralleled to reach the required output.

The engineering case is modularity. Ten engines of five megawatts reach the same output as one turbine, but they arrive on trucks, they are commissioned in sequence, one can be serviced without taking the plant off line, and the plant holds its efficiency at part load where a single large machine would not. Start-up is fast enough to matter: an engine reaches full output in minutes, and in the standby case in seconds.

The supplier base is also much wider than the turbine market, with several manufacturers in every size class and lead times measured in months rather than years. That combination — quick to buy, quick to install, quick to start — is why generation installed to carry a campus while its grid connection is completed is usually engine plant, and why the turbine conversation and the engine conversation have different timescales.

How it works

Why many small machines instead of one large one

Availability is the argument. With units in parallel, losing one costs a fraction of output rather than all of it, maintenance happens on a rotating schedule without an outage, and the plant can be grown in steps as load arrives. The penalty is more equipment to install, more auxiliaries, and a larger footprint per megawatt than a turbine of the same rating.

After-treatment is most of the permit

Engine exhaust carries nitrogen oxides and particulates at levels that permits in most jurisdictions will not accept untreated. Selective catalytic reduction with urea dosing, oxidation catalysts and particulate filters are therefore part of the plant rather than an option, and they add capital, footprint, a consumable and a maintenance regime that the engine itself does not need.

Gas engines and diesel engines are different duty

Continuous plant is usually spark-ignited gas, which is cleaner and cheaper to run where a firm gas connection exists. Diesel dominates where the machine must start on stored fuel with no external supply, which is the standby case. The two share manufacturers and very little else about how they are specified, permitted and operated.

What this depends on

2 of these are marked as a chokepoint: a handful of qualified suppliers, a multi-year lead time, or a single geography.

  • Supply chainChokepoint

    Alternators, paralleling switchgear and step-up transformers

    Engines in parallel need synchronising and protection equipment, and the medium-voltage side of it is on the same extended lead times as everything else electrical.

    Transformers
  • Supply chain

    Precision machining capacity for engine components

    Crankshafts, blocks and heads are heavy machined parts, and the capacity to finish them is the practical limit on how quickly production rates rise.

    Bearings and precision machining
  • StandardChokepoint

    Emissions limits and after-treatment requirements

    What the permit allows determines the catalyst system, the urea supply and in several regions whether the plant can run continuously at all.

  • Resource

    Fuel supply, storage and delivery logistics

    Gas plant needs a firm connection; diesel plant needs tankage, a delivery contract and fuel that is polished and rotated before it degrades.

  • Resource

    Service technicians and overhaul intervals

    Engines are maintained on running hours, and a plant of a dozen units consumes a service programme that regional dealer networks have to be able to staff.

What depends on this

Other pages in this map that name Reciprocating engines as something they cannot do without.

Who supplies this

What each company supplies at this step, and — where a public figure exists — its share of this specific market — with what that share measures, the period it covers and who published it. Some rows also show the company’s own reported revenue for the segment covering this step, which is a different thing: it says how much this business matters to that company, not how much of the market it holds. Not a ranking and not a recommendation.

  • CaterpillarCAT

    Supplies diesel and gas engine generation across the range used for bridge and standby plant.

    Power & Energy segment — -4.6% of Caterpillar’s reported revenue (-$5.1B)FY2025 · company filings · not a market share

  • CumminsCMI

    Supplies engine generation and the associated controls and paralleling equipment.

    Power Systems segment — 22.2% of Cummins’s reported revenue ($7.5B)FY2025 · company filings · not a market share

  • Rolls-RoyceLondon

    Supplies the high-speed diesel and gas sets sold under mtu, between engine-scale and turbine-scale plant.

  • WärtsiläHelsinki

    Supplies medium-speed engine plant designed for continuous and flexible generation rather than standby.

  • INNIOPrivate

    Supplies the gas engine range used for continuous on-site generation, sold under Jenbacher.

  • MAN Energy SolutionsPrivate

    Supplies large medium-speed engine plant for power generation, at the top of the reciprocating range.

  • Generac HoldingsGNRC

    Supplies packaged generation at the smaller end and is moving upward into data-centre set sizes.

  • KohlerPrivate

    Supplies packaged engine generator sets and the switchgear sold with them.

What would change the picture

  • Whether engine plant keeps its lead-time advantage over turbines as both order books lengthen.

  • Whether continuous-duty permits for gas engine plant become harder to obtain in load-growth regions.

  • Whether operators retain bridge engine plant as standby capacity once grid connections arrive.

Questions people ask about this

Why choose engines over a gas turbine?
Speed and modularity. Engines are available in months rather than years, arrive as packages, are commissioned in sequence, and hold their efficiency at part load. A large turbine is more efficient at full output and in combined cycle, but only once it has been delivered and erected.
Are these the same machines used for backup?
The hardware overlaps, the specification does not. A standby set is rated and permitted for a few hours a year and must accept full load in seconds; continuous plant is rated for thousands of hours, needs after-treatment and a firm fuel supply, and is maintained on a completely different schedule.

How these pages are written

Each page explains one technology in plain language, states what it depends on, and names companies by what they supply at that step. Company roles are described qualitatively and deliberately carry no market shares, revenue figures or rankings — those change faster than an explainer can, and a stale number is worse than none. Ticker links point at company pages on this site and are provided for reference only.

Nothing here is investment advice, a recommendation, or a forecast. A company named on a page about a technology is not thereby a good investment, and the chokepoints described are structural facts about supply chains rather than predictions about prices. Technology moves; where a page describes something as unresolved or in development, that was true when it was written.

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