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天然氣發(fā)電機(jī)組以其清潔、高效、啟停靈活的特性,在分布式能源領(lǐng)域占據(jù)重要地位。通過(guò)與其他類(lèi)型發(fā)電機(jī)組的協(xié)同運(yùn)行,可構(gòu)建多能互補(bǔ)的能源供應(yīng)體系,提升系統(tǒng)可靠性、經(jīng)濟(jì)性及環(huán)境效益。
Natural gas generators play an important role in the field of distributed energy due to their clean, efficient, and flexible start stop characteristics. By coordinating with other types of generator sets, a multi energy complementary energy supply system can be constructed, improving system reliability, economy, and environmental benefits.
天然氣與柴油發(fā)電機(jī)組的協(xié)同應(yīng)用
Collaborative application of natural gas and diesel generator sets
調(diào)峰填谷功能強(qiáng)化:柴油發(fā)電機(jī)組具有快速啟動(dòng)能力,可在天然氣機(jī)組啟?;蚬收蠒r(shí)提供瞬時(shí)功率支撐。某醫(yī)院應(yīng)急電源系統(tǒng)采用“天然氣+柴油”雙機(jī)組配置,天然氣機(jī)組承擔(dān)基荷運(yùn)行,柴油機(jī)組作為備用,實(shí)現(xiàn)供電可靠性。
Enhanced peak shaving and valley filling function: Diesel generator sets have the ability to start quickly and provide instantaneous power support in the event of natural gas unit start stop or failure. The emergency power system of a certain hospital adopts a dual unit configuration of "natural gas+diesel". The natural gas unit is responsible for the base load operation, and the diesel unit is used as a backup to achieve power supply reliability.
燃料靈活性提升:在天然氣供應(yīng)中斷或價(jià)格波動(dòng)時(shí),柴油機(jī)組可切換運(yùn)行模式,保障能源供應(yīng)連續(xù)性。某海島微電網(wǎng)項(xiàng)目通過(guò)該設(shè)計(jì),使系統(tǒng)燃料適應(yīng)性提升,運(yùn)維成本降低。
Fuel flexibility improvement: In the event of natural gas supply interruption or price fluctuations, diesel units can switch operating modes to ensure energy supply continuity. The design of a microgrid project on a certain island has improved the fuel adaptability of the system and reduced operation and maintenance costs.
天然氣與可再生能源發(fā)電的互補(bǔ)運(yùn)行
Complementary operation of natural gas and renewable energy generation
風(fēng)光氣儲(chǔ)一體化系統(tǒng):將天然氣發(fā)電機(jī)組與光伏、風(fēng)電機(jī)組耦合,利用天然氣機(jī)組調(diào)節(jié)出力波動(dòng)。某西北地區(qū)示范工程數(shù)據(jù)顯示,該系統(tǒng)使新能源消納率提升,棄風(fēng)棄光率下降。
Integrated wind solar energy storage system: coupling natural gas generators with photovoltaic and wind turbines, using natural gas generators to regulate output fluctuations. According to data from a demonstration project in the northwest region, the system has increased the consumption rate of new energy and reduced the rate of wind and solar power curtailment.
氫能融合潛力:通過(guò)電解水制氫將風(fēng)光過(guò)剩電力轉(zhuǎn)化為氫氣,與天然氣摻燒發(fā)電。某歐洲能源公司試點(diǎn)項(xiàng)目表明,摻氫比例可達(dá),碳排放較純天然氣發(fā)電降低。
Hydrogen fusion potential: By electrolyzing water to produce hydrogen, excess electricity from wind and solar power can be converted into hydrogen, which can be co fired with natural gas for power generation. A pilot project of a European energy company has shown that the hydrogen blending ratio can be reached, and carbon emissions are reduced compared to pure natural gas power generation.
天然氣與余熱利用技術(shù)的集成創(chuàng)新
Integrated innovation of natural gas and waste heat utilization technology
熱電聯(lián)產(chǎn)(CHP)系統(tǒng):將天然氣發(fā)電機(jī)組與余熱鍋爐、溴化鋰吸收式機(jī)組結(jié)合,實(shí)現(xiàn)電、熱、冷三聯(lián)供。某工業(yè)園區(qū)CHP項(xiàng)目年綜合能效達(dá),較傳統(tǒng)分產(chǎn)系統(tǒng)節(jié)能。
Cogeneration (CHP) system: Combining natural gas generators with waste heat boilers and lithium bromide absorption units to achieve triple power supply of electricity, heat, and cooling. The annual comprehensive energy efficiency of a CHP project in an industrial park has reached, which is more energy-efficient than traditional distribution systems.
有機(jī)朗肯循環(huán)(ORC)發(fā)電:利用天然氣機(jī)組排煙余熱驅(qū)動(dòng)ORC系統(tǒng),將低品位熱能轉(zhuǎn)化為電能。某數(shù)據(jù)中心應(yīng)用案例顯示,ORC系統(tǒng)年發(fā)電量,相當(dāng)于減少天然氣消耗。
Organic Rankine Cycle (ORC) power generation: Utilizing the exhaust heat from natural gas units to drive the ORC system, converting low-grade thermal energy into electrical energy. A data center application case shows that the annual power generation of ORC system is equivalent to reducing natural gas consumption.
天然氣與燃料電池的混合發(fā)電
Hybrid power generation of natural gas and fuel cells
固體氧化物燃料電池(SOFC)耦合:將天然氣重整制氫后供給SOFC發(fā)電,尾氣再引入燃?xì)廨啓C(jī)二次做功。某日本企業(yè)研發(fā)的混合系統(tǒng)發(fā)電效率達(dá),較傳統(tǒng)機(jī)組提升。
Solid oxide fuel cell (SOFC) coupling: natural gas is reformed to produce hydrogen and supplied to SOFC for power generation, and the exhaust gas is then introduced into the gas turbine for secondary work. The hybrid system developed by a Japanese company has achieved a higher power generation efficiency than traditional units.
質(zhì)子交換膜燃料電池(PEMFC)調(diào)峰:利用PEMFC快速響應(yīng)特性,與天然氣機(jī)組形成“基荷+調(diào)峰”組合。某商業(yè)綜合體項(xiàng)目通過(guò)該配置,使系統(tǒng)變負(fù)荷速率提升,滿(mǎn)足商業(yè)負(fù)荷波動(dòng)需求。
Proton exchange membrane fuel cell (PEMFC) peak shaving: Utilizing the fast response characteristics of PEMFC, it forms a "base load+peak shaving" combination with natural gas units. Through this configuration, a certain commercial complex project has increased the rate of system load change and met the demand for commercial load fluctuations.
協(xié)同應(yīng)用的核心優(yōu)勢(shì)
The core advantages of collaborative applications
能源梯級(jí)利用:天然氣機(jī)組提供穩(wěn)定基荷,可再生能源承擔(dān)波動(dòng)負(fù)荷,余熱資源實(shí)現(xiàn)二次轉(zhuǎn)化,構(gòu)建起“源-網(wǎng)-荷-儲(chǔ)-熱”的能量流網(wǎng)絡(luò)。
Energy cascade utilization: Natural gas units provide stable base loads, renewable energy sources bear fluctuating loads, waste heat resources achieve secondary conversion, and build an energy flow network of "source grid load storage heat".
經(jīng)濟(jì)性?xún)?yōu)化:通過(guò)峰谷電價(jià)套利、碳交易收益及運(yùn)維成本分?jǐn)偅旌舷到y(tǒng)全生命周期成本較單一機(jī)組降低。某能源服務(wù)公司測(cè)算表明,投資回收期可縮短。
Economic optimization: Through peak valley electricity price arbitrage, carbon trading revenue, and operation and maintenance cost sharing, the full lifecycle cost of the hybrid system is reduced compared to a single unit. A certain energy service company has calculated that the investment payback period can be shortened.
環(huán)境效益提升:天然氣機(jī)組較燃煤機(jī)組碳排放降低,與可再生能源結(jié)合后,系統(tǒng)整體碳強(qiáng)度可降至以下。
Environmental benefits improvement: Natural gas units have reduced carbon emissions compared to coal-fired units, and when combined with renewable energy, the overall carbon intensity of the system can be reduced to below.
天然氣發(fā)電機(jī)組與其他發(fā)電技術(shù)的協(xié)同應(yīng)用,本質(zhì)是構(gòu)建多能互補(bǔ)的能源網(wǎng)絡(luò)。通過(guò)技術(shù)融合與運(yùn)行優(yōu)化,可實(shí)現(xiàn)能源供應(yīng)的可靠性、經(jīng)濟(jì)性與清潔性平衡。隨著氫能、燃料電池等技術(shù)的突破,未來(lái)天然氣發(fā)電將向“深度脫碳、靈活智能”方向發(fā)展,為能源轉(zhuǎn)型提供關(guān)鍵支撐。
The collaborative application of natural gas power generation units with other power generation technologies is essentially the construction of a multi energy complementary energy network. Through technological integration and operational optimization, a balance between reliability, economy, and cleanliness of energy supply can be achieved. With breakthroughs in technologies such as hydrogen energy and fuel cells, natural gas power generation will develop towards "deep decarbonization and flexible intelligence" in the future, providing key support for energy transformation.
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