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GTL GAS GENERATOR

The world is experiencing steady growth. The total global&demand for energy will grow by 41% up to 2035. For over 10 years, GTLhas worked tirelessly to meet the growing&demand for energy, prioritising the use of engines and fuels&which will ensure a sustainable future.

GAS generator sets which are powered by environmentally&friendly fuels, such as natural gas,biogas,coal seam gasesandassociated petroleum gas.Thanks toGTL’s vertical manufacturing process, our equipmenthas proven excellence in the use of the latest technology duringmanufacture and the use of materials that ensure qualityperformance which surpasses all expectations.

Gas Engine Basics

The image below shows the basics of a stationary gas engine and generator used for the production of power. It consists of four main components - the engine which is fueled by different gases. Once the gas is burnt in the cylinders of the engine, the force turns a crank shaft within the engine. The crank shaft turns an alternator which results in the generation of electricity. Heat from the combustion process is released from the cylinders;This must be either recovered and used in acombined heat and powerconfiguration or dissipated via dump radiators located close to the engine. Finally and importantly there are advanced control systems to facilitate robust performance of the generator.

Power Production

GTL generatorcan be configured to produce:

Gasgeneratorare typically applied as stationary continuous generation units;but can also operate aspeaking plants& ingreenhousesto meet fluctuations in local electricity demand. They can produce electricity in parallel with the local electricity grid, inisland mode operation, or forpower generation in remote areas.

Gas Engine Energy Balance

Efficiency & Reliability

The class-leading efficiency of up to 44.3% of GTLengines results in outstanding fuel economy and in parallel the highest levels of environmental performance. The engines have also proved to be highly reliable and durable in all types of applications, particularly when used for natural gas and biological gas applications. GTL generators are renowned for being able to constantly generate the rated output even with variable gas conditions.

The lean burn combustion control system fitted on all GTLengines guarantees the correct air/fuel ratio under all operating conditions in order to minimise exhaust gas emissions whilst maintaining stable operation. GTLengines are not only renowned for being able to operate on gases with extremely low calorific value, low methane number and hence degree of knock, but also gases with a very high calorific value.

Possible gas sources vary from low calorific gas produced insteel manufacture,chemical industries,wood gas, and pyrolysis gas produced from decomposition of substances by heat (gasification),landfill gas,sewage gas, natural gas, propane and butane which have a very high calorific value. One of the most important properties regarding use of gas in an engine is the knock resistance rated according to the ‘methane number’. High knock resistance pure methane has a number of 100. In contrast to this, butane has a number of 10 and hydrogen 0 which is at the bottom of the scale and therefore has a low resistance to knocking. The high efficiency of the GTL&engines becomes particularly beneficial when used in a CHP (combined heat and power) or tri-generation application, such as district heating schemes, hospitals, universities or industrial plants. With governmental pressure mounting on companies and organisations to reduce their carbon footprint the efficiencies and energy returns from CHP and&trigeneration&installations have proven to be the energy resource of choice.

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      Gas Generator Set
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