JP2013221503A - 排出ガス再循環を備えた燃焼タービン発電プラントに関連する方法、システム、及び装置 - Google Patents
排出ガス再循環を備えた燃焼タービン発電プラントに関連する方法、システム、及び装置 Download PDFInfo
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Abstract
【解決手段】作動流体及び再循環ループを含む発電プラントを制御する方法であって、該発電プラントがタービンに動作可能に接続された燃焼器を含み、本方法が、再循環ループを通って作動流体の少なくとも一部を再循環するステップと、燃焼器が好ましい理論混合比で少なくとも周期的に作動するよう発電プラントを制御するステップと、燃焼器が好ましい理論混合比で作動している期間中に再循環ループ上に位置付けられた第1の抽出ポイント及び第2の抽出ポイントの少なくとも1つから作動流体を抽出するステップとを含む。
【選択図】 図1
Description
酸化剤圧縮機11及び燃料供給源20それぞれを介して再循環ループ10に流入する加圧酸化剤及び燃料の量にほぼ等しい排出ガスの量を再循環通気孔41を通じて放出しなければならない点は理解されるであろう。再循環ループ10に注入される酸化剤/燃料と、再循環ループ10から放出された排出ガスとの間の所望の平衡を得ることは、ループ10に流入する酸化剤及び燃料の量と流出する排出ガスの量とを記録するセンサ、並びに再循環ループ10内の温度センサ、バルブセンサ、圧力センサ、及び他の従来の手段及びシステムを介して実施することができる点は理解されるであろう。
9 発電プラント
10 再循環ループ
11 酸化剤圧縮機
12 再循環圧縮機
14 シャフト
16 ブースター圧縮機
18 発電機
20 燃料供給源
22 上流側燃焼器
24 下流側燃焼器
30 高圧タービン
32 低圧タービン
39 熱回収蒸気発生器
40 再循環導管
41 再循環通気孔
44 冷却器
46 ブロア
51 抽出ポイント
52 第1の酸化剤導管
54 酸化剤バルブ(第1の酸化剤導管52の)
56 通気バルブ
58 上流側燃焼器燃料バルブ
59 下流側燃焼器燃料バルブ
61 抽出バルブ
62 抽出供給ガス
63 タービンバイパス導管
64 過剰酸化剤を検出するセンサ
65 制御ユニット
67 第2の酸化剤導管
68 酸化剤バルブ(第2の酸化剤導管67の)
70 センサ
75 第1の抽出ポイント
76 第2の抽出ポイント
78 上流側燃焼器燃料供給源
79 下流側燃焼器燃料供給源
81 第1の酸化剤抽出位置
83 第2の酸化剤抽出位置
Claims (46)
- 作動流体及び再循環ループを含む発電プラントを制御する方法であって、該発電プラントがタービンに動作可能に接続された燃焼器を含み、前記方法が、
再循環ループを通って前記作動流体の少なくとも一部を再循環するステップと、
前記燃焼器が好ましい理論混合比で少なくとも周期的に作動するよう前記発電プラントを制御するステップと、
前記燃焼器が前記好ましい理論混合比で作動している期間中に前記再循環ループ上に位置付けられた第1の抽出ポイント及び第2の抽出ポイントの少なくとも1つから前記作動流体を抽出するステップと
を含む、方法。 - 前記再循環ループが、再循環圧縮機と、該再循環圧縮機の下流側に位置付けられた燃焼器と、前記燃焼器の下流側に位置付けられたタービンと、前記タービンからの作動流体の流出流を前記再循環圧縮機に配向するよう構成された再循環導管とを含み、前記燃焼器が好ましい理論混合比で少なくとも周期的に作動するよう前記発電プラントを制御するステップが、酸化剤入力にて前記燃焼器に供給される加圧酸化剤の量と、燃料入力にて前記燃焼器に供給される燃料の量とを制御するステップを含み、前記再循環ループが、前記燃焼器において生じる入力を除いて全ての位置での酸化剤及び燃料の入力を阻止するよう構成されており、前記方法が更に、
前記第1の抽出ポイントにおける前記作動流体の特性を決定するステップと、
前記第2の抽出ポイントにおける前記作動流体の特性を決定するステップと、
前記第1及び第2の抽出ポイントにおける前記作動流体の特性に基づいて、前記第1の抽出ポイントからのみ、又は前記第2の抽出ポイントからのみ、或いは前記第1及び第2の抽出ポイント両方から前記作動流体を選択的に抽出するステップと
を含む、請求項1記載の方法。 - 前記第1の抽出ポイントが第1の制御可能な抽出バルブを含み、前記第1の制御可能な抽出バルブが、少なくとも3つの設定、すなわち、前記作動流体の抽出を阻止する1つの閉鎖設定及び異なるレベルの作動流体の抽出を可能にする2つの開放設定に制御可能であり、前記第2の抽出ポイントが第2の制御可能な抽出バルブを含み、該第2の制御可能な抽出バルブが、少なくとも3つの設定、すなわち、前記作動流体の抽出を阻止する1つの閉鎖設定及び異なるレベルの作動流体の抽出を可能にする2つの開放設定に制御可能であり、前記第1の抽出ポイントからのみ、又は前記第2の抽出ポイントからのみ、或いは前記第1及び第2の抽出ポイント両方から前記作動流体を選択的に抽出するステップが、前記第1及び第2の制御可能抽出バルブの設定を制御するステップを含む、請求項2記載の方法。
- 前記作動流体が、前記第1の抽出ポイント及び前記第2の抽出ポイントの両方から同時に抽出され、前記方法が更に、
前記第1の抽出ポイントでの前記作動流体の特性を決定するステップと、
前記第2の抽出ポイントでの前記作動流体の特性を決定するステップと、
目的とする下流側での適用に基づいて前記作動流体の特性の好ましい値を決定するステップと、
前記第1の抽出ポイント及び前記第2の抽出ポイントから抽出された前記作動流体を制御可能に混合し、前記抽出作動流体の組み合わせ流が前記特性の好ましい値を含むようにするステップと
を含む、請求項2記載の方法。 - 前記燃焼器に供給される前記加圧酸化剤の量を制御するステップが、
酸化剤圧縮機において酸化剤を加圧するステップと、
異なる加圧酸化剤の量を前記燃焼器に送給することができる少なくとも2つの開放設定に制御可能な制御可能酸化剤バルブを含む酸化剤導管を通して前記酸化剤圧縮機から引き出された加圧酸化剤を配向するステップと、
前記制御可能酸化剤バルブの設定を変更するステップと
を含み、前記燃焼器に供給される燃料の量を制御するステップが、
燃料供給源から引き出された燃料を、異なる加圧酸化剤の量を前記燃焼器に送給することができる少なくとも2つの開放設定に制御可能な制御可能燃料バルブを通して前記燃焼器に配向するステップと、
前記制御可能燃料バルブの設定を変更するステップと
を含む、請求項3記載の方法。 - 前記タービンからの作動流体の流出流が、前記再循環導管を介して前記再循環圧縮機に配向される排出ガスを含み、前記再循環圧縮機が、前記排出ガスを加圧して、前記再循環圧縮機からの作動流体の流出流が加圧排出ガスを含むように構成されており、
前記燃焼器が好ましい理論混合比で少なくとも周期的に作動するよう前記発電プラントを制御するステップが、
前記制御可能酸化剤バルブ及び前記制御可能燃料バルブの設定を制御するよう構成されたコンピュータ制御ユニットを用いるステップを含み、前記好ましい理論混合比が約1の理論混合比を含む、請求項5記載の方法。 - 前記好ましい理論混合比が、0.75〜1.25の間の理論混合比の範囲を含む、請求項6記載の方法。
- 前記好ましい理論混合比が、0.9〜1.1の間の理論混合比の範囲を含む、請求項6記載の方法。
- 前記作動流体の特性の好ましい値を決定するステップと、
前記第1及び第2の抽出ポイントにおける前記作動流体の特性並びに抽出した前記作動流体の特性の前記好ましい値に基づいて、前記第1の抽出ポイントからのみ、又は前記第2の抽出ポイントからのみ、或いは前記第1及び第2の抽出ポイント両方から前記作動流体を選択的に抽出するステップと
を更に含む、請求項6記載の方法。 - 前記抽出した作動流体の目的とする下流側での適用を決定するステップを更に含み、前記作動流体の特性の好ましい値が、前記目的とする下流側での適用を考慮した好ましい値に基づいている、請求項9記載の方法。
- 前記第1の抽出ポイントからのみ、又は前記第2の抽出ポイントからのみ、或いは前記第1及び第2の抽出ポイント両方から前記作動流体を選択的に抽出するステップが、
前記第1の抽出ポイントでの前記作動流体の特性が、前記特性の好ましい値に対して所定の範囲内にある場合、前記第1の抽出ポイントからのみ抽出するステップと、
前記第2の抽出ポイントでの前記作動流体の特性が、前記特性の好ましい値に対して所定の範囲内にある場合、前記第2の抽出ポイントからのみ抽出するステップと、
前記特性の好ましい値が、前記第1の抽出ポイントでの前記作動流体の特性と前記第2の抽出ポイントでの前記作動流体の特性との間にある所定の範囲内にある場合、前記第1及び第2の抽出ポイント両方から抽出するステップと
を含む、請求項10記載の方法。 - 前記第1の抽出ポイントからのみ、又は前記第2の抽出ポイントからのみ、或いは前記第1及び第2の抽出ポイント両方から前記作動流体を選択的に抽出するステップが、
前記第1の抽出ポイントでの前記作動流体の特性が、前記特性の好ましい値にほぼ等しい場合、前記第1の抽出ポイントから抽出するステップと、
前記第2の抽出ポイントでの前記作動流体の特性が、前記特性の好ましい値にほぼ等しい場合、前記第2の抽出ポイントから抽出するステップと、
前記特性の好ましい値が、前記第1の抽出ポイントでの前記作動流体の特性と前記第2の抽出ポイントでの前記作動流体の特性との間にある場合、前記第1及び第2の抽出ポイント両方から抽出するステップと
を含む、請求項10記載の方法。 - 前記第1の抽出ポイントから抽出された前記作動流体を前記第2の抽出ポイントから抽出された前記作動流体と制御可能に混合し、前記抽出作動流体の組み合わせ流が前記特性の好ましい値を含むようにするステップを更に含む、請求項11記載の方法。
- 前記制御可能に混合するステップが、
第1の所定量の作動流体が前記第1の抽出ポイントから抽出されるように前記第1の制御可能な抽出バルブの設定を制御するステップと、
第2の所定量の作動流体が前記第2の抽出ポイントから抽出されるように前記第2の制御可能な抽出バルブの設定を制御するステップと、
組み合わせ合流部にて前記第1の所定量の作動流体を前記第2の所定量の作動流体と組み合わせて抽出作動流体の組み合わせ流が形成されるようにするステップと
を含み、前記第1の抽出ポイント及び前記第2の抽出ポイントでの前記作動流体の特性を考慮して、前記第1の抽出ポイントから抽出された前記第1の所定量の作動流体及び前記第2の抽出ポイントから抽出された前記第2の所定量の作動流体が、混合されたときに前記特性の好ましい値を有する前記抽出作動流体の組み合わせ流をもたらす前記作動流体の量を含む、請求項13記載の方法。 - 前記特性が、圧力及び温度の少なくとも1つを含む、請求項13記載の方法。
- 前記第1の抽出ポイントが前記再循環ループ内に所定の第1の位置を含み、前記第2の抽出ポイントが前記再循環ループ内に所定の第2の位置を含み、前記前記再循環ループ内の第1の位置及び前記再循環ループ内の第2の位置が、予測される作動条件下で各々における前記作動流体が互いに異なる第1の特性と同様の第2の特性とを含むように選択され、前記抽出作動流体の組み合わせ流が、前記第1の抽出ポイントでの前記第1の特性のレベルと前記第2の抽出ポイントでの前記第1の特性のレベルとの間にある所望のレベルの結果として得られる第1の特性と、前記第1の抽出ポイント及び前記第2の抽出ポイントでの前記同様の第2の特性のレベルにほぼ等しい結果として得られる第2の特性とを含むように、前記第1の抽出ポイントから抽出された作動流体と前記第2の抽出ポイントから抽出された作動流体とを混合するステップを更に含む、請求項13記載の方法。
- 前記第1の抽出ポイントが前記再循環ループ内に所定の第1の位置を含み、前記第2の抽出ポイントが前記再循環ループ内に所定の第2の位置を含み、前記前記再循環ループ内の第1の位置及び前記再循環ループ内の第2の位置が、予測される作動条件下で各々における前記作動流体が互いに異なる第1の特性と異なる第2の特性とを含むように選択され、前記抽出作動流体の組み合わせ流が、前記第1の抽出ポイントでの前記第1の特性のレベルと前記第2の抽出ポイントでの前記第1の特性のレベルとの間にある所望のレベルの結果として得られる第1の特性と、前記第1の抽出ポイントでの前記第2の特性のレベルと前記第2の抽出ポイントでの前記第2の特性のレベルとの間にある所望のレベルの結果として得られる第2の特性とを含むように、前記第1の抽出ポイントから抽出された作動流体と前記第2の抽出ポイントから抽出された作動流体とを混合するステップを更に含む、請求項13記載の方法。
- 前記第1の抽出ポイントが前記再循環圧縮機内の位置を含み、前記第2の抽出ポイントが前記タービン内の位置を含み、前記再循環圧縮機内の位置及び前記タービン内の位置が、前記異なる第1の特性が温度であり且つ前記同様の第2の特性が圧力であるように選択される、請求項16記載の方法。
- 前記第1の抽出ポイントが前記再循環圧縮機内の位置を含み、前記第2の抽出ポイントが前記再循環導管内の位置を含み、前記再循環圧縮機内の位置及び前記再循環導管内の位置が、前記異なる第1の特性が圧力であり且つ前記同様の第2の特性が温度であるように選択される、請求項16記載の方法。
- 前記第1の抽出ポイントが前記タービン内の位置を含み、前記第2の抽出ポイントが前記再循環導管内の位置を含み、前記タービン内の位置及び前記再循環導管内の位置が、前記異なる第1の特性が圧力であり且つ前記異なる第2の特性が温度であるように選択される、請求項17記載の方法。
- 前記第1の抽出ポイントが、前記発電プラントの第1の動作モード中に前記作動流体の所望の圧力又は温度レベルと一致することに起因して選択された第1の位置を前記再循環圧縮機内に含み、前記第2の抽出ポイントが、前記発電プラントの第2の動作モード中に前記作動流体の所望の圧力又は温度レベルと一致することに起因して選択された第2の位置を前記再循環圧縮機内に含み、
前記方法が更に、前記発電プラントが前記第1の作動モードで作動しているときに前記第1の抽出ポイントから作動流体を抽出し、前記発電プラントが前記第2の作動モードで作動しているときに前記第2の抽出ポイントから作動流体を抽出するステップを含む、請求項13記載の方法。 - 前記第1の作動モードがベース負荷作動モードを含み、前記第2の作動モードがターンダウン作動モードを含む、請求項21記載の方法。
- 前記第1の抽出ポイントが、前記発電プラントの第1の動作モード中に前記作動流体の所望の圧力又は温度レベルと一致することに起因して選択された第1の位置を前記タービン内に含み、前記第2の抽出ポイントが、前記発電プラントの第2の動作モード中に前記作動流体の所望の圧力又は温度レベルと一致することに起因して選択された第2の位置を前記タービン内に含み、
前記方法が更に、前記発電プラントが前記第1の作動モードで作動しているときに前記第1の抽出ポイントから作動流体を抽出し、前記発電プラントが前記第2の作動モードで作動しているときに前記第2の抽出ポイントから作動流体を抽出するステップを含む、請求項13記載の方法。 - 前記第1の作動モードがベース負荷作動モードを含み、前記第2の作動モードがターンダウン作動モードを含む、請求項23記載の方法。
- 前記第1の抽出ポイント及び前記第2の抽出ポイントの少なくとも1つから前記作動流体を抽出し、抽出された作動流体を大気に放出するステップを更に含む、請求項3記載の方法。
- 作動流体がその回りを再循環される再循環ループを含むように構成され、該再循環ループが、近隣の上流側構成要素から作動流体の流出流を受け入れて、作動流体の流入流を近隣の下流側構成要素に提供するよう構成された複数の構成要素を備えた発電プラントであって、前記再循環ループが、再循環圧縮機と、該再循環圧縮機の下流側に位置付けられた燃焼器と、該燃焼器の下流側に位置付けられたタービンと、前記作動流体の流出流を前記タービンから前記再循環圧縮機に配向するよう構成された再循環導管とを含み、
前記発電プラントが、
前記再循環ループ上の第1の抽出ポイントから前記作動流体を抽出する第1の抽出手段と、
前記再循環ループ上の第2の抽出ポイントから前記作動流体を抽出する第2の抽出手段と、
前記燃焼器が好ましい理論混合比で少なくとも周期的に作動するように前記発電プラントを制御する手段と、
前記燃焼器が好ましい理論混合比で作動している期間中に前記第1の抽出手段及び前記第2の抽出手段の少なくとも1つから前記作動流体を抽出する手段と
を備える、発電プラント。 - 前記燃焼器が好ましい理論混合比で少なくとも周期的に作動するように前記発電プラントを制御する手段が、前記燃焼器に供給される加圧酸化剤の量を制御する手段と、前記燃焼器に供給される燃料の量を制御する手段とを含み、前記作動流体を抽出する第1の抽出手段が前記第1の抽出ポイントにて第1の制御可能抽出バルブを含み、該第1の制御可能抽出バルブが、少なくとも2つの設定、すなわち作動流体の抽出を阻止する閉鎖設定と該作動流体の抽出を可能にする開放設定とに制御可能であり、前記作動流体を抽出する第2の抽出手段が、前記第2の抽出ポイントにて第2の制御可能抽出バルブを含み、該第2の制御可能抽出バルブが、少なくとも2つの設定、すなわち作動流体の抽出を阻止する閉鎖設定と該作動流体の抽出を可能にする開放設定とに制御可能である、請求項26記載の発電プラント。
- 前記燃焼器に供給される加圧酸化剤の量を制御する手段が、酸化剤圧縮機と、該酸化剤圧縮機から引き出された加圧酸化剤を前記燃焼器に配向するよう構成された酸化剤導管と、前記酸化剤導管上に配置され、異なる加圧酸化剤の量を前記燃焼器に送給可能にする少なくとも2つの開放設定に制御可能な制御可能酸化剤バルブとを含み、前記燃焼器に供給される燃料の量を制御する手段が、異なる燃料の量を前記燃焼器に送給可能にする少なくとも2つの開放設定に制御可能な制御可能燃料バルブを有する燃焼器燃料供給源を含む、請求項27記載の発電プラント。
- 前記タービンからの作動流体の流出流が、前記再循環導管を介して前記再循環圧縮機に配向される排出ガスを含み、前記再循環圧縮機が、前記排出ガスを加圧して該再循環圧縮機からの作動流体の流出流加圧排出ガスを含むようにし、前記燃焼器が好ましい理論混合比で少なくとも周期的に作動するように前記発電プラントを制御する手段が、前記制御可能な制御可能酸化剤バルブ及び制御可能燃料バルブの設定を制御するよう構成されたコンピュータ制御ユニットと、前記燃焼器が作動している現在の理論混合比及び該現在の理論混合比が前記好ましい理論混合比に等しいかどうかを決定する手段とを含み、前記好ましい理論混合比が約1の理論混合比を含む、請求項28記載の発電プラント。
- 前記好ましい理論混合比が、0.75〜1.25の間の理論混合比を含む、請求項29記載の発電プラント。
- 前記好ましい理論混合比が、0.9〜1.1の間の理論混合比を含む、請求項29記載の発電プラント。
- 前記燃焼器が作動している現在の理論混合比を決定する手段が、前記燃焼器に供給される加圧酸化剤の量を測定する手段と、前記燃焼器に供給される燃料の量を測定する手段とを含み、前記コンピュータ制御ユニットが、前記測定した加圧酸化剤の量及び前記測定した燃料の量に基づいて前記燃焼器が作動している理論混合比を計算するよう構成されている、請求項29記載の発電プラント。
- 前記燃焼器が作動している現在の理論混合比を決定する手段が、前記燃焼器から排出された前記作動流体を試験する試験手段を含み、該試験手段が、過剰な酸化剤を検出するセンサ及び未使用燃料を検出するセンサの少なくとも1つを含み、前記試験の位置は、前記タービンへの入口と下流側方向に進んだ前記燃焼器への入口との間に定められる前記再循環ループ上のある位置範囲内にある位置を含む、請求項32記載の発電プラント。
- 前記コンピュータ制御ユニットが、前記燃焼器における現在の理論混合比が前記好ましい理論混合比に等しいと判定されたかどうかに基づいて前記第1の抽出ポイント及び前記第2の抽出ポイントの少なくとも1つから作動流体を選択的に抽出するよう構成されている、請求項29記載の発電プラント。
- 前記再循環導管が、前記タービンからの前記排出ガスの一部を収集し、該排出ガスの一部を前記再循環圧縮機の吸気口に配向するよう構成され、前記再循環導管が更に、ボイラーを有する熱回収蒸気発生器を含み、該熱回収蒸気発生器が、前記タービンからの排出ガスが前記ボイラー用の熱源を含むように構成されており、前記再循環導管が、チラーと、その上に位置付けられたブロアとを含み、該チラーは、前記再循環圧縮機の吸気口でより望ましい温度が得られるように前記再循環導管を流れる前記排出ガスからある量の熱を制御可能に除去するよう構成されており、前記ブロアが、前記再循環圧縮機の吸気口でより望ましい圧力が得られるように前記再循環導管を流れる前記排出ガスを制御可能に循環させるように構成されている、請求項29記載の発電プラント。
- 前記第1の抽出ポイントにて前記作動流体の特性を決定する手段と、
前記第2の抽出ポイントにて前記作動流体の特性を決定する手段と
を更に備え、前記コンピュータ制御ユニットが、前記第1及び第2の抽出ポイントでの前記作動流体の特性に基づいて、前記第1の抽出ポイントからのみ、又は前記第2の抽出ポイントからのみ、或いは前記第1及び第2の抽出ポイント両方から前記作動流体を選択的に抽出するよう構成されている、請求項29記載の発電プラント。 - 前記第1の抽出ポイントにて前記作動流体の特性を決定する手段及び前記第2の抽出ポイントにて前記作動流体の特性を決定する手段が、圧力センサ及び温度センサの少なくとも1つを含み、前記コンピュータ制御ユニットが、前記第1及び第2の制御可能抽出バルブの設定を制御することにより、前記第1の抽出ポイントからのみ、又は前記第2の抽出ポイントからのみ、或いは前記第1及び第2の抽出ポイント両方から前記作動流体を選択的に抽出するよう構成されている、請求項36記載の発電プラント。
- 前記コンピュータ制御ユニットが、前記作動流体の特性の好ましい値を決定するよう構成されており、前記コンピュータ制御ユニットが、前記第1及び第2の抽出ポイントでの前記作動流体の特性並びに前記抽出された作動流体の特性の好ましい値に基づいて、前記第1の抽出ポイントからのみ、又は前記第2の抽出ポイントからのみ、或いは前記第1及び第2の抽出ポイント両方から前記作動流体を選択的に抽出するよう構成されている、請求項36記載の発電プラント。
- 前記コンピュータ制御ユニットが、前記抽出された作動流体の目的とする下流側での適用を決定するよう構成され、前記作動流体の特性の好ましい値が、前記目的とする下流側での適用を考慮した好ましい値に基づいている、請求項38記載の発電プラント。
- 前記第1の抽出ポイントが前記再循環圧縮機内の位置を含み、前記第2の抽出ポイントが前記タービン内の位置を含み、前記再循環圧縮機内の位置及び前記タービン内の位置が、異なる温度特性及び同様の圧力特性を有するように選択される、請求項36記載の発電プラント。
- 前記第1の抽出ポイントが前記再循環圧縮機内の位置を含み、前記第2の抽出ポイントが前記再循環導管内の位置を含み、前記再循環圧縮機内の位置及び前記再循環導管内の位置が、同様の圧力特性及び異なる温度特性を有するように選択される、請求項36記載の発電プラント。
- 前記第1の抽出ポイントが前記タービン内の位置を含み、前記第2の抽出ポイントが前記再循環導管内の位置を含み、前記タービン内の位置及び前記再循環導管内の位置が、異なる圧力特性及び異なる温度特性を有するように選択される、請求項36記載の発電プラント。
- 前記第1の抽出ポイントが、前記発電プラントの第1の動作モード中に前記作動流体の所望の圧力又は温度レベルを提供するよう選択された第1の位置を前記再循環圧縮機内に含み、前記第2の抽出ポイントが、前記発電プラントの第2の動作モード中に前記作動流体の所望の圧力又は温度レベルを提供するよう選択された第2の位置を前記再循環圧縮機内に含み、前記コンピュータ制御ユニットが、前記発電プラントが前記第1の作動モードで作動しているときに前記第1の抽出ポイントから作動流体を抽出し、前記発電プラントが前記第2の作動モードで作動しているときに前記第2の抽出ポイントから作動流体を抽出するよう構成されている、請求項36記載の発電プラント。
- 前記第1の作動モードがベース負荷作動モードを含み、前記第2の作動モードがターンダウン作動モードを含む、請求項43記載の発電プラント。
- 前記第1の抽出ポイントが、前記発電プラントの第1の動作モード中に前記作動流体の所望の圧力又は温度レベルを提供するよう選択された第1の位置を前記タービン内に含み、前記第2の抽出ポイントが、前記発電プラントの第2の動作モード中に前記作動流体の所望の圧力又は温度レベルを提供するよう選択された第2の位置を前記タービン内に含み、前記コンピュータ制御ユニットが、前記発電プラントが前記第1の作動モードで作動しているときに前記第1の抽出ポイントから作動流体を抽出し、前記発電プラントが前記第2の作動モードで作動しているときに前記第2の抽出ポイントから作動流体を抽出するよう構成されている、請求項36記載の発電プラント。
- 前記第1の作動モードがベース負荷作動モードを含み、前記第2の作動モードがターンダウン作動モードを含む、請求項45記載の発電プラント。
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| Publication number | Publication date |
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| JP6378469B2 (ja) | 2018-08-22 |
| EP2650504B1 (en) | 2018-11-21 |
| RU2622140C2 (ru) | 2017-06-13 |
| CN103375307A (zh) | 2013-10-30 |
| US9353682B2 (en) | 2016-05-31 |
| US20130269362A1 (en) | 2013-10-17 |
| RU2013116454A (ru) | 2014-10-20 |
| CN103375307B (zh) | 2017-10-13 |
| EP2650504A2 (en) | 2013-10-16 |
| EP2650504A3 (en) | 2017-09-06 |
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