JP6444880B2 - 量論的排気ガス再循環ガスタービンシステムにおける酸化剤圧縮のためのシステム及び方法 - Google Patents
量論的排気ガス再循環ガスタービンシステムにおける酸化剤圧縮のためのシステム及び方法 Download PDFInfo
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- JP6444880B2 JP6444880B2 JP2015540786A JP2015540786A JP6444880B2 JP 6444880 B2 JP6444880 B2 JP 6444880B2 JP 2015540786 A JP2015540786 A JP 2015540786A JP 2015540786 A JP2015540786 A JP 2015540786A JP 6444880 B2 JP6444880 B2 JP 6444880B2
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- oxidant
- exhaust gas
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- compressor
- moc
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- F02C—GAS-TURBINE PLANTS; AIR INTAKES FOR JET-PROPULSION PLANTS; CONTROLLING FUEL SUPPLY IN AIR-BREATHING JET-PROPULSION PLANTS
- F02C3/00—Gas-turbine plants characterised by the use of combustion products as the working fluid
- F02C3/34—Gas-turbine plants characterised by the use of combustion products as the working fluid with recycling of part of the working fluid, i.e. semi-closed cycles with combustion products in the closed part of the cycle
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- B01D—SEPARATION
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- B01D53/26—Drying gases or vapours
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- B01D53/34—Chemical or biological purification of waste gases
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- F01K23/02—Plants characterised by more than one engine delivering power external to the plant, the engines being driven by different fluids the engine cycles being thermally coupled
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F05—INDEXING SCHEMES RELATING TO ENGINES OR PUMPS IN VARIOUS SUBCLASSES OF CLASSES F01-F04
- F05D—INDEXING SCHEME FOR ASPECTS RELATING TO NON-POSITIVE-DISPLACEMENT MACHINES OR ENGINES, GAS-TURBINES OR JET-PROPULSION PLANTS
- F05D2260/00—Function
- F05D2260/40—Transmission of power
- F05D2260/403—Transmission of power through the shape of the drive components
- F05D2260/4031—Transmission of power through the shape of the drive components as in toothed gearing
- F05D2260/40311—Transmission of power through the shape of the drive components as in toothed gearing of the epicyclical, planetary or differential type
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- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02E—REDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
- Y02E20/00—Combustion technologies with mitigation potential
- Y02E20/16—Combined cycle power plant [CCPP], or combined cycle gas turbine [CCGT]
-
- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02T—CLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO TRANSPORTATION
- Y02T50/00—Aeronautics or air transport
- Y02T50/60—Efficient propulsion technologies, e.g. for aircraft
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Description
本出願は、2013年10月29日出願の名称が「SYSTEM AND METHOD FOR OXIDANT COMPRESSION IN A STOICHIOMETRIC EXHAUST GAS RECIRCULATION GAS TURBINE SYSTEM」である米国特許本出願第14/066,579号、2012年12月28日出願の名称が「SYSTEM AND METHOD FOR OXIDANT COMPRESSION IN A STOICHIOMETRIC EXHAUST GAS RECIRCULATION GAS TURBINE SYSTEM」である米国特許仮出願第61/747,192号、2012年11月2日出願の名称が「SYSTEM AND METHOD FOR DIFFUSION COMBUSTION IN A STOICHIOMETRIC EXHAUST GAS RECIRCULATION GAS TURBINE SYSTEM」である米国特許仮出願第61/722,118号、2012年11月2日出願の名称が「SYSTEM AND METHOD FOR DIFFUSION COMBUSTION WITH FUEL−DILUENT MIXING IN A STOICHIOMETRIC EXHAUST GAS RECIRCULATION GAS TURBINE SYSTEM」である米国特許仮出願第61/722,115号、2012年11月2日出願の名称が「SYSTEM AND METHOD FOR DIFFUSION COMBUSTION WITH OXIDANT−DILUENT MIXING IN A STOICHIOMETRIC EXHAUST GAS RECIRCULATION GAS TURBINE SYSTEM」である米国特許仮出願第61/722,114号、及び2012年11月2日出願の名称が「SYSTEM AND METHOD FOR LOAD CONTROL WITH DIFFUSION COMBUSTION IN A STOICHIOMETRIC EXHAUST GAS RECIRCULATION GAS TURBINE SYSTEMである米国特許仮出願第61/722,111号に対して優先権及び利益を主張し、これら特許出願の全ては、引用により全体が本明細書に組み込まれる。
本発明の実施形態は、排気ガス再循環ガスタービンエンジンで使用するための酸化剤(例えば、大気中空気、酸化富化空気、低酸素空気、実質的に純酸素)を圧縮するシステム及び方法を提供する。上記で記載された特徴の何れか又はその組み合わせは、好適なあらゆる組み合わせで利用することができる点に留意されたい。当然ながら、このような組み合わせの全ての並び換えも本発明において企図される。例証として、以下の条項は、本開示の更なる説明として提供されるものである。
第1又は第2の酸化剤圧縮機のうちの少なくとも1つが、1又は2以上の軸流圧縮機、1又は2以上の遠心圧縮機、又はこれらの組み合わせを含む、実施形態4、5、6、7、8、9、10、11、12、13、14、又は15に記載のシステム。
Claims (10)
- システムであって、
ガスタービンシステムを備え、
前記ガスタービンシステムが、
タービン燃焼器と、
前記タービン燃焼器からの燃焼生成物により駆動されるタービンと、
前記タービンにより駆動され、排気ガスを圧縮して前記タービン燃焼器に供給するよう構成された排気ガス圧縮機と、
排気ガス再循環経路に沿って前記排気ガスを前記タービンから前記排気ガス圧縮機に再循環するよう構成された排気ガス再循環(EGR)システムと、を有し、
前記システムはさらに、圧縮酸化剤を前記ガスタービンシステムに供給するよう構成された主酸化剤圧縮システムを備え、
前記主酸化剤圧縮システムが、
第1の酸化剤圧縮機と、
前記ガスタービンシステムの第1の作動速度と異なる第1の速度で前記第1の酸化剤圧縮機が動作できるように構成された第1のギアボックスと、を有し、
前記主酸化剤圧縮システムが、前記ガスタービンシステムによって少なくとも部分的に駆動され、
該主酸化剤圧縮システムが、第1の酸化剤圧縮機と第2の酸化剤圧縮機とを備えた複数の圧縮段を有し、第1の酸化剤圧縮機が前記第1のギアボックスを介してガスタービンシステムによって駆動され、前記第1酸化剤圧縮機および第2の酸化剤圧縮機が、並列に前記ガスタービンシステムに連結されており、
前記システムはさらに、
前記ガスタービンのシャフトに連結された発電機であって、前記第1の酸化剤圧縮機が前記第1のギアボックスを介して該発電機に連結されている発電機と、
前記第2の酸化剤圧縮機に連結された駆動装置であって、蒸気タービンまたは電気モータを備えている駆動装置と、
前記第2の酸化剤圧縮機と前記駆動装置を結合する第2のギアボックスであって、前記第2の酸化剤圧縮機が前記駆動装置の第2の作動速度と異なる第2の速度で動作できるようにするように構成されている第2のギアボックスと、備えている、
ことを特徴とするシステム。 - 前記第1のギアボックスが、互いにほぼ平行な入力シャフトと出力シャフトとを有する平行軸ギアボックスを有し、前記入力シャフトが、前記ガスタービンシステムの軸線と一直線状であり、前記出力シャフトが、前記第1の酸化剤圧縮機に駆動結合される、又は、
前記第1のギアボックスが、互いに且つ前記ガスタービンシステムの軸線と一直線状になった入力シャフトと出力シャフトとを有する遊星ギアボックスを有し、前記出力シャフトが、記第1の酸化剤圧縮機に駆動結合されている、
請求項1に記載のシステム。 - 前記酸化剤中において0.95〜1.05の燃料対酸素の燃焼等量比で燃料/酸化剤混合気を燃焼させるよう構成されたタービン燃焼器を有する量論的燃焼システムと、
前記ガスタービンシステムに連結された熱回収蒸気発生器(HRSG)であって、前記排気ガスからの熱を給水に伝達することによって蒸気を発生するよう構成されているHRSGと、を備え、
前記HRSGが、蒸気タービンを有する蒸気タービン発電機に流体連結され、前記蒸気タービンが、前記第2のギアボックスを介して前記第2の酸化剤圧縮機を駆動するよう構成され、
前記EGRシステムが、前記排気ガスを前記タービンから前記HRSGを通って前記排気ガス圧縮機に戻すように構成され、
前記EGRシステムが、
前記排気ガスを前記排気ガス圧縮機に向けて移動させるよう構成されたブロアと、
前記排気ガスを冷却するよう構成された冷却器と、
前記排気ガスから湿分を除去するよう構成された除湿ユニットと、を有している、
請求項1に記載のシステム。 - 前記主酸化剤圧縮システムが、大気空気、体積で21%〜80%の酸素を有する酸素富化空気、体積で1%〜21%の酸素を有する低酸素空気として、または体積で80%よりも多い酸素を含む実質的に純酸素として前記圧縮酸化剤を供給するよう構成される、
請求項1に記載のシステム。 - システムであって、
ガスタービンシステムを備え、
前記ガスタービンシステムが、
タービン燃焼器と、
前記タービン燃焼器からの燃焼生成物により駆動されるタービンと、
前記タービンにより駆動され、排気ガスを圧縮して前記タービン燃焼器に供給するよう構成された排気ガス圧縮機と、
排気ガス再循環経路に沿って前記排気ガスを前記タービンから前記排気ガス圧縮機に再循環するよう構成された排気ガス再循環(EGR)システムと、を有し、
システムはさらに、圧縮酸化剤を前記ガスタービンシステムに供給するよう構成された主酸化剤圧縮システム、を備え、
前記主酸化剤圧縮システムが、
第1の酸化剤圧縮機と、
第2の酸化剤圧縮機と、を有し、
前記第1の酸化剤圧縮機が前記ガスタービンシステムによって駆動され、
前記第2の酸化剤圧縮機が前記ガスタービンシステムとは別の駆動装置によって駆動され、前記第1の酸化剤圧縮機および第2の酸化剤圧縮機が、並列に前記ガスタービンシステムに連結されている、
ことを特徴とするシステム。 - 前記タービンが、前記第1の酸化剤圧縮機に連結されたシャフトを回転させ、前記第1の酸化剤圧縮機を駆動するように構成されている、
請求項5に記載のシステム。 - システムであって、
ガスタービンシステムを備え、
前記ガスタービンシステムが、
タービン燃焼器と、
前記タービン燃焼器からの燃焼生成物により駆動されるタービンと、
前記タービンにより駆動され、排気ガスを圧縮して前記タービン燃焼器に供給するよう構成された排気ガス圧縮機と、
排気ガス再循環経路に沿って前記排気ガスを前記タービンから前記排気ガス圧縮機に再循環するよう構成された排気ガス再循環(EGR)システムと、を有し、
前記システムはさらに、
前記排気ガス圧縮機とは別の主酸化剤圧縮システムであって、圧縮酸化剤を前記ガスタービンシステムに供給するよう構成され、第1および第2の酸化剤圧縮機を備え、第1の酸化剤圧縮機が前記ガスタービンシステムによって駆動される主酸化剤圧縮システムと、を備え、前記主酸化剤圧縮システムの第1の酸化剤圧縮機と第2の酸化剤圧縮機が、並列圧縮構成であり、
前記システムはさらに、
前記ガスタービンシステムに結合され、前記排気ガスからの熱を給水に伝達することによって蒸気を発生するよう構成された熱回収蒸気発生器(HRSG)であって、前記排気ガス再循環経路が前記HRSGを通って延びている熱回収蒸気発生器(HRSG)と、
前記HRSGからの蒸気によって少なくとも部分的に駆動され、凝縮液を給水の少なくとも一部として前記HRSGに戻すように構成された蒸気タービンとを備え、
前記蒸気タービンが前記主酸化剤圧縮システムの第2の酸化剤圧縮機を駆動するように構成されている、
ことを特徴とするシステム。 - 前記主酸化剤圧縮システムの第1の酸化剤圧縮機が、前記ガスタービンシステムのシャフトラインに沿って配置されている、
請求項7に記載のシステム。 - 前記ガスタービンシステムに結合された排気ガス抽出システムであって、前記ガスタービンシステムから前記排気ガスの一部を除去するように構成され、前記排気ガスの一部における酸素の濃度を低減するよう構成された触媒を有している排気ガス抽出システムと、 前記排気ガス抽出システムに流体結合された炭化水素生成システムであって、原油二次回収のための加圧流体として前記排気ガスの一部を利用するよう構成されている炭化水素生成システムと、を備えている、
請求項7に記載のシステム。 - 0.95〜1.05の燃料対酸素の燃焼等量比で燃料/酸化剤混合気を燃焼させるよう構成されたタービン燃焼器を有する量論的燃焼システムを備えている、
請求項7に記載のシステム。
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US20140123620A1 (en) | 2014-05-08 |
BR112015009962A2 (pt) | 2017-07-11 |
EP2914829B8 (en) | 2020-12-23 |
CN104937239B (zh) | 2018-03-13 |
RU2655896C2 (ru) | 2018-05-29 |
JP7029378B2 (ja) | 2022-03-03 |
JP2019031979A (ja) | 2019-02-28 |
CA2890088A1 (en) | 2014-05-08 |
EP2914829A2 (en) | 2015-09-09 |
AU2013337830B2 (en) | 2017-08-17 |
MY179973A (en) | 2020-11-19 |
SG11201503406VA (en) | 2015-05-28 |
AU2017261468B2 (en) | 2020-02-27 |
RU2015120738A (ru) | 2016-12-27 |
WO2014071037A2 (en) | 2014-05-08 |
CN108590856A (zh) | 2018-09-28 |
AU2013337830A1 (en) | 2015-05-21 |
CN108590856B (zh) | 2021-06-08 |
WO2014071037A3 (en) | 2014-07-17 |
CN104937239A (zh) | 2015-09-23 |
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