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Generator Derating Explained: Altitude, Temperature, and Humidity

Introduction

The generator power rating always shows the maximum operating output of the generator. It is possible to get this output when the generator reaches 100% of its efficiency, which is technically impossible. High mountains, scorching summers, humid tropical climates, and poorly ventilated installation sites affect the Generators. Generator derating helps here.

 

We will dive deep into the generator derating, understand how it works, and know the derating factors and other aspects. Let’s have a detailed discussion.

What is Generator Derating?

 

The name highlights it all!! Generator derating is the process in which the generator performs at an output lower than the maximum output. For example, the maximum or rated output of the generator is 500kW in the standard conditions. But at high altitude, generator performance decreases exponentially, and it will not achieve the 500kW or power closer to it.

 

That is where an intentional lowering of the power output occurs, where the purpose is to increase the safety of operating limits and get higher efficiency.

 

Rated GeneratorActual Available OutputReason
500 kW500 kWStandard conditions
500 kW480 kWHigh temperature
500 kW455 kWHigh altitude
500 kW430 kWHigh altitude + heat
500 kW410 kWAltitude + heat + humidity

 

What Happens When a Generator Is Not Derated?

Ignoring the derating process can cause several issues with your generator systems. We have evaluated the key reasons and side effects of not derating your generators.

 

Engine Overloading

 

An engine relies on fuel combustion. When you are at high altitude and can’t have enough oxygen, it puts stress on the combustion system. There are a few typical results that occur during such a condition.

 

  • Black exhaust smoke
  • Fuel wastage
  • Power loss
  • Increased emissions

 

Higher Operating Temperatures

 

High operating temperatures are the headaches of your system. Generators already experience high heat due to the combustion system. Atmospheric temperature can further cause overheating and may have the following impacts on the generator systems.

 

  • Coolant overheating
  • Oil degradation
  • Radiator overload
  • Frequent shutdowns

 

Poor Voltage Stability

 

Since your generator is not performing up to the mark and the power output is continuously dropping, it leads to unstable voltage. Here are a few impacts.

 

  • Voltage fluctuations
  • Frequency variations
  • Equipment malfunction
  • Sensitive electronics shutting down

 

Reduced Engine Life

 

Engine Life depends on the operating conditions, temperature, fuel quality, and stress. With the high temperature or altitude conditions, the stress is higher, leading to a decreased lifespan of:

 

  • Pistons
  • Valves
  • Turbochargers
  • Bearings
  • Cylinder liners

 

Unexpected Shutdowns

 

Modern systems have an automated shutdown mechanism whenever the temperature or altitude conditions exceed the limits. Here are a few conditions triggering the automated shutdown.

 

  • High coolant temperature
  • Low oil pressure
  • Overfrequency
  • Underfrequency
  • Overload conditions

 

The Three Major Environmental Derating Factors

 

There are three major factors affecting the derating process and decreasing the engine performance. Let’s have a detailed look at the impact of each factor and understand how they perform in different conditions.

 

LocationAltitudeTemperatureHumidity
DesertLowHighLow
MountainsHighModerateLow
Tropical CoastLowHighHigh
Mining SiteHighHighLow
RainforestLowHighVery High

 

Factor #1: Generator Derating Due to Altitude

 

Altitude is one of the biggest factors behind the decreased performance of the generator engines. Therefore, generator derating becomes essential at this point.

 

How Altitude Affects Diesel Engines

 

Altitude affects diesel engines in many ways. For example, it lowers the oxygen levels. Here are a few more effects of the high altitude on the diesel engines.

 

  • Reduced power
  • Higher fuel consumption
  • Increased smoke
  • More carbon deposits
  • Maximum generator capacity decreases.
  • Continuous loading must be reduced.

 

Typical Generator Altitude Derating Values

 

You might wonder how much generator derating is required. Different manufacturers recommend different derating values. We have added the key values.

 

AltitudeTypical Power Reduction
Up to 1000 mNone
1500 m3%
2000 m6%
2500 m9%
3000 m12%
3500 m15%
4000 m18%

 

Example: Altitude Derating Calculation

 

Let’s calculate the generator derating using the following example.

 

Suppose:

 

Generator rating = 500 kW

Installation altitude = 2500 m

Recommended derating = 9%

Calculation:

Available Output

= 500 × (1 − 0.09)

= 455 kW

Although the generator rating is 500kW, after derating, it provides 455 kW of power at an altitude of 2500 meters.

 

Industries Most Affected by Altitude

 

There are several industries affected by the high altitude. Here is the list of all the industrial sectors.

 

IndustryTypical Elevation
Mining2000–4500 m
Hydropower1500–3500 m
Mountain Hospitals1800–3000 m
Telecommunications2000–4000 m
Military BasesVariable
Remote VillagesHigh elevation

 

Factor #2: Generator Derating Due to High Temperature

 

High Temperature is a major critical factor in the decreased performance of the generators. The generator has overheating issues, which are likely to be triggered by the high temperature conditions.

 

Why High Temperatures Reduce Generator Output

 

Do you know that high temperatures decrease output? There are a few side effects of the generator output on the cooling process.

 

  • Increased coolant temperature
  • Hot engine oil
  • Reduced radiator performance
  • Higher alternator winding temperatures

 

Overheating can cause a few issues. For example, it affects:

 

  • Insulation materials
  • Rubber hoses
  • Electronic control modules
  • Bearings
  • Lubricating oil

 

Typical Temperature Derating Guidelines

 

The exact derating values depend on engine design, cooling system capacity, and manufacturer recommendations.

Here are a few guidelines for temperature increases.

 

Ambient TemperatureTypical Derating
Up to 40°CNone or Minimal
45°C2–3%
50°C4–6%
55°C6–8%
60°C8–12%

 

Factor #3: Generator Derating Due to Humidity

 

Humidity has less of an impact compared to the other factors, such as high temperature or altitude. However, the humidity decreases the oxygen content by moving through the engines or influences the engineer’s performance very well.

 

How High Humidity Affects Generator Performance

 

High humidity has several impacts on different components. For example, it causes reduced oxygen content and has the following effects.

 

  • Slight reduction in combustion efficiency
  • Lower engine horsepower
  • Increased fuel consumption
  • Minor power loss

 

There are several electrical problems related to generator performance, such as:

 

  • Insulation degradation
  • Condensation inside alternators
  • Short circuits
  • Corrosion of electrical terminals
  • Reduced insulation resistance

 

Typical Humidity Effects

 

Since there is a little humidity effect, generator derating is not always necessary unless there is a need.

 

Relative HumidityTypical Performance Impact
30%None
50%Negligible
70%Slight reduction
85%Minor derating may occur
Above 90%Reduced combustion efficiency and increased maintenance needs

 

Combined Effect of Altitude, Temperature, and Humidity

The impact is even greater when you have all three factors affecting the generators.

Suppose an example here.

 

  • Altitude: 2,500 m
  • Ambient Temperature: 50°C
  • Relative Humidity: 85%

 

The combined derating is at least 15% compared to the above example conditions.

 

ConditionEstimated Power Reduction
Altitude9%
High Temperature5%
High Humidity1%
Total Approximate Reduction15%

 

Generator Derating Calculation

 

Suppose the above example and the derating is 15%. Let’s have a calculation here.

Suppose you have installed a generator with 800kW. After 15% derating, the calculation and power output rating would be:

 

ParameterValue
Generator Rating800 kW
Installation Altitude2,500 m
Ambient Temperature50°C
Relative Humidity80%
Estimated Total Derating15%

 

Available output = 800 × (1 − 0.15)

Available Output = 680 kW

Although the generator is 800kW, the available output is 680 kW after you have derated the generator.

 

Generator Derating Reference Table

 

To help you better understand, we have added the generator derating reference table.

 

AltitudeTemperatureEstimated DeratingAvailable Output
Sea Level25°C0%500 kW
1000 m35°C2%490 kW
1500 m40°C5%475 kW
2000 m45°C8%460 kW
2500 m50°C15%425 kW
3000 m55°C20%400 kW

 

Practical Methods to Reduce Generator Derating

 

If you want to reduce the generator derating and meet the required demands, here are a few tips to avoid the derating impacts.

 

Select Large Generator

 

One of the best solutions at this point is oversizing. You should buy a generator with a larger size than required, as you can later derate it and get the same efficiency and power output.

 

For example, you need a generator with 500kW. Instead of going for 500kW, purchase a generator with 600kW output and fetch the adjustable power output when derating the system.

 

Required LoadRecommended Generator
450 kW500–550 kW
700 kW800 kW
900 kW1000 kW

 

Inspect High-quality Cooling System

 

A high-quality cooling system can avoid unnecessary overheating and decreased engine performance.

 

For the cooling process, you should take the following steps.

 

  • Larger radiators
  • High-efficiency fans
  • Remote cooling systems
  • External heat exchangers

 

Improve Ventilation

 

Ventilation has several benefits. For example, it circulates the air and maintains its flow. Moreover, it causes the cooling phenomenon and helps ease the overheating.

 

Therefore, you should have the following practices for ventilation improvement.

 

  • Large air inlets
  • Proper exhaust routing
  • Adequate clearance around equipment
  • Ventilation fans
  • Unrestricted airflow

 

Use a Turbocharged Engine

 

Turbochargers are the best option to minimize the impact of the high altitude and low air pressure. They assess and compress the air to provide maximum oxygen to the engines.

 

The benefits of the turbocharged engines include:

 

  • Better high-altitude performance
  • Improved combustion
  • Reduced power loss
  • Lower smoke emissions

 

Regular Maintenance

 

The efficiency and durability of the generators depend on maintenance. A regularly maintained generator always offers good efficiency.

 

You should look for the following maintenance hassles.

 

  • Replace air filters
  • Clean radiators
  • Inspect turbochargers
  • Check injectors
  • Change engine oil
  • Test coolant condition
  • Verify alternator insulation resistance

 

Install Environmental Monitoring

 

Environmental Monitoring can help prevent issues due to harsh environmental conditions. Nowadays, advanced systems monitor:

 

  • Ambient temperature
  • Engine temperature
  • Humidity
  • Air pressure
  • Altitude compensation

 

They help optimize the generators according to temperature, humidity, and altitude conditions and improve the overall efficiency. Therefore, you should have a powerful monitoring system as well.

 

Applications Where Generator Derating Is Critical

 

A few industries are particularly effective for the generator derating process. Here are those critical applications.

IndustryWhy Derating Matters
MiningHigh elevations and heavy continuous loads
Oil & GasDesert heat and remote locations
TelecommunicationsMountain-top installations
HospitalsReliable backup power under all conditions
Data CentersTight voltage and frequency requirements
ConstructionTemporary outdoor installations
AgricultureSeasonal heat and dust
HydropowerMountainous environments
MilitaryDiverse climatic conditions

 

FAQs

 

  • Can turbochargers eliminate altitude derating?

 

To some extent, we can say yes. Turbochargers compress the air and elevate the pressure at high altitudes, but they can’t compensate for the whole time.

 

  • Does humidity have a significant impact?

 

Yes. Humidity can intrude through the different components and cause electrical sparks. Especially in the batteries, it can cause failure, leading to generator failure as a whole.

 

  • Does every generator require derating?

 

No. Not all the generators require derating. Only those generators installed in harsh environmental conditions with temperatures or high altitudes above the rated value might require derating for optimal power production.

 

  • How much power can a generator lose at high altitude?

 

Power loss depends on the generator types, the reputation of the generator brand, and the quality. However, most generators lose 3–5% of their rated output for every 500 meters above 1,000 meters.

 

  • Why does altitude reduce generator power?

 

High altitude causes decreased air pressure and a low oxygen supply. As a result, combustion of the fuel is very inefficient in the generator, causing more stress on the engines to produce the power.

 

  • Where can I find official derating values?

 

You should consult manufacturers’ technical documentation, engine performance curves, and derating charts for the office derating values.

 

  • Should I oversize my generator for harsh environments?

 

Yes. You should install a higher-capacity generator so you can derate it, but still meet the required power output demands.

 

  • How can I minimize derating?

 

There are a few ways to minimize the derating of a generator. For example, choose a properly sized generator, improve ventilation, use high-capacity cooling systems, perform regular maintenance, and follow the manufacturer’s derating recommendations.

 

  • What happens if I ignore derating?

 

If you ignore the derating, the generator performs at a lower output and causes more stress. It leads to overheating, excessive fuel consumption, voltage instability, frequent shutdowns, increased emissions, and reduced engine life.

 

Conclusion

 

Generator Derating is an ideal solution when the temperature conditions are very harsh. However, if you still need to meet the power demands, choose an oversized generator to install on such occasions. Derate them until they meet your required power demands. Choosing high-end generator systems can help you gain high efficiency.

 

Are you looking for top-notch generators? Contact Huaquan Power Solutions. We have premium generators that offer compatibility with high-altitude and temperature conditions. Our generators even perform under stressful environments. Contact Us right away!