Parameter |
Unitas |
Ciclo simple OBT20 |
Ciclo recuperado OBT20R |
Productum Model |
|
OBT20 |
OBT20R |
Potencia eléctrica de salida |
kw |
20 |
17 |
Efficientia electrica |
% |
12 |
23 |
Output Voltage |
VAC |
400-480 |
400-480 |
Frequens output |
Hz |
50 |
50 |
Nuntius electricus |
- |
trifásico, 4 hilos |
trifásico, 4 hilos |
Entrada de combustible |
MJ/h |
537 |
255 |
Pressio Inlet Combustibilis |
bar(g) |
4-5 |
4-5 |
Fluxus Fumi Exhausti |
kg/h |
720 |
720 |
Temperatura Gas Exsufflationis |
℃ |
570 |
257 |
> Nota de Performantia: Valores supradicti ex schedula producti data sunt. Output situs, efficentia, input combustibilis, et condicionis exhaustus variare possunt secundum altitudinem, temperaturam ambientem, compositionem combustibilis, pressionem inlet et exhaustus, et dissignationem systematis complementaris.
OBT20 est microturbina gasica compacta ad generationem potentiae distributam, frigus combinatum, calefactionem et potentiam, et ad utilisationem energiae multi-combustibilis. Series duas configurationes includit: OBT20 modello ciclo-simplex 20 kW output electrici praebet et ad projecta apta est quae caloribus exhaustus altis proficiunt, dum OBT20 Modello R recuperato 17 kW ad 23% efficentia electrica praebet pro applicationibus ubi oeconomicitas combustibilis praecipua est.
Constructus circa generator integratus alti velocitatis et architectura modularis, OBT20 combinat parvam superficiem cum integratione systematis flexibili. Potest construi pro applicationibus gas naturalis, gas petrolei associati, gas biomassae, diesel, et selectis applicationibus combustibilium hydrogenii, ammoniae, vel alcoholeorum. Cum connectitur ad apparatus recuperationis caloris, turbinis potest fieri nucleus electricus systematis CCHP, quod supplet electricitatem, calorem utilem, et refrigerationem.
OBT cyclum simplex 20: Praebet 20 kW potentiae electricae cum temperatura exhaustus 570 ℃. Exhaustus alti temperaturae praebet fontem caloris utilem pro vaporibus, aqua calida, calefactione processuali, aut aliis systematis recuperationis caloris.
OBT cyclum recuperatum 20R: Praebet 17 kW ad 23% efficientiam electricam, cum inputo combustibilis declarato 255 MJ/h et temperatura exhaustus 257 ℃. Optime idoneum est pro projectis quae in efficientia electrica et minore consumptione combustibilis versantur.
Systema combustionis ad diversas condiciones operationis et combustibilis configurari potest. Combustibilia potentialia sunt gas naturalis, gas associatum, gas ex biomassa, diesel, hydrogenium, ammoniacum, et combustibilia ex alcoholibus. Compositio permittenda, intervallo valoris calorifici, ratio mixtionis, requisita purgationis gas, et praestatio emissionum confirmari debent ex analysi representativa combustibilis.
Microturbina gas habet partes mobiles pauciores quam multa systemata potestatis reciprocantia conventionalia, quae ad reductionem complexitatis mechanicae et punctorum defectus potentialium contribuunt. Systema avans controlis et supervisionis operativae optimisationem activam, initiationem et cessationem unius tactus, adjustmentem lati intervalli potentiae, et modos operationis multiplices pro variis oneribus loci et conditionibus rete supportat.
The high-speed integrated generator provides a high power-to-size ratio. Modular manufacturing helps reduce site work and shorten installation schedules. A project can use a single OBT20 or a multi-unit arrangement, allowing capacity to be added in stages as demand grows.
Low-emission combustion technology is designed to reduce NOx emissions. The OBT20 can also help convert associated gas, biomass-derived gas, and other available fuels into useful electricity and heat instead of allowing their energy value to be wasted. Hydrogen blending and other clean-fuel applications may be evaluated when the fuel specification and project safety requirements are satisfied.
OBT20 potest fungere ut unitas generans in compacto systemate combinato frigus, calor, et potentia. Cum coniungitur cum scambiatore caloris, unitate recuperationis caloris, aut frigorifero absorptionis, potest sustinere necessitates electricitatis, aquae calidae domesticarum, caloris processualis, aut frigoris ex una sola fonte combustibilis. Designatio modularis eius maxime utilis est pro centris datorum, hospitibus, hoteles, campus, et aedificiis commercialibus quae expansionem capacitatis per fases requirunt.
Facilitates chemicae, ferri, et aliae industriales fortasse possunt uti gasibus exhalatis comburibilibus idoneis ad generationem distributam potentiae et recuperationem caloris. Antequam utantur, gas debet aestimari secundum valorem calorificum, pressionem, umiditatem, particulas, picem, composita sulfuris, et variabilitatem compositionis. Apparatus idoneus purgationis et conditionandi gas debet includi in designo systematis.
In oil and gas production sites with limited pipeline access, the OBT20 can convert conditioned associated gas into local electricity for field equipment, instrumentation, and auxiliary systems. Recovering exhaust heat can further increase the value obtained from the available fuel.
Its compact size and high power density make the OBT20 suitable for feasibility studies involving unmanned aerial vehicles, marine systems, and other specialized power applications. These installations require dedicated engineering for weight, vibration, air intake, exhaust routing, controls, safety, and environmental conditions.
Selige OBT20 simple-cycle model when maximum electrical output or high-temperature exhaust heat is the main priority. Its 570 ℃exhaust can support higher-grade heat-recovery applications.
Selige OBT20 R recuperated model when electrical efficiency and fuel economy are more important. Its 23% electrical efficiency and lower fuel input make it attractive for applications with long operating hours and limited high-temperature heat demand.
Final selection should consider the electrical load profile, thermal demand, annual operating hours, fuel price, utility tariff, grid connection, and expected return on investment.
Questiones Frecventer Interrogatae
The OBT20 series includes two models. The OBT20 simple-cycle unit delivers 20 kW, while the OBT20 R recuperated unit delivers 17 kW at a higher electrical efficiency of 23%. Selection should be based on the complete energy balance, not rated power alone.
The supplied product information identifies natural gas, associated gas, biomass gas, diesel, hydrogen, ammonia, and alcohol-based fuels as potential options. Actual compatibility and allowable blending ratios depend on fuel analysis, fuel conditioning, combustor configuration, emissions requirements, and project safety standards.
Yes. Its exhaust can be connected to heat-recovery and cooling equipment to produce useful heat, hot water, steam, or chilled water. The simple-cycle and recuperated models have different exhaust temperatures, so the balance-of-plant equipment must be designed for the selected model.
The modular architecture allows multi-unit configurations to be evaluated for larger or variable loads. The electrical system, control logic, redundancy strategy, and grid-protection scheme must be engineered for each project.
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