Eine Plattform für die Wissenschaft: Bauingenieurwesen, Architektur und Urbanistik
DEAERATOR OF POWER GENERATOR FOR IRRIGATION DAM
PROBLEM TO BE SOLVED: To stably supply inexpensive electric power, by safely sending water by conventional dam pressure after power generation, by collecting water conduit pipes of respective use destinations such as irrigation, a water guide and industrial use arranged from a dam, or effectively melting-removing generating gas.SOLUTION: A large diameter deaeration cylinder 7 is installed in a rear part of a power generator 1, and a sucking-out pipe 4 is connected to the deaeration cylinder 7, and the downstream side whole water conduit pipes 2 are connected at a constant interval via a taper pipe 8 to a rear part of the deaeration cylinder 7, and a deaeration pipe 9 is connected to an upper part of the deaeration cylinder 7, and is installed in an electric pump 10 with a solenoid valve of normal operation, and a water replenishing pipe 11 is arranged from a water intake port, and the tip of the water replenishing pipe 11 is branched off into a large diameter pipe 12, a medium diameter pipe 13 and a small diameter pipe 14, and is connected to the deaeration cylinder 7, so that dam water entering the deaeration cylinder 7 from the sucking-out pipe 4 descends while rotating, while dissolving gas, and undissolved gas rises, and is forcedly discharged to the outside of the deaeration cylinder from the electric pump 10 with the solenoid valve of the normal operation. While the descended dam water is completely dissolved by merging with high-density dam water entering from the water replenishing pipe 11.
【課題】ダムより配設されたかんがい、水導、工業用等の各用途先の導水管をまとめるか、発生するガスを効果的に溶解・排除し、発電後は従来のダム圧で安全に送水し、安価な電力を安定して供給する。【解決手段】発電機1の後部に、大径の脱気筒7を設置し、該脱気筒7に吸い出し管4を接続し、脱気筒7の後部に下流側の全導水管2をテーパ管8を介して一定間隔で接続し、脱気筒7の上部に脱気管9を接続して常運転の電磁弁付電動ポンプ10に取り付け、取水口より補水管11を配設し、該補水管11の先端は大口径管12、中口径管13、小口径管14に分岐して脱気筒7に接続することにより、吸い出し管4から脱気筒7に入ったダム水は回転しながら、ガスを溶解しつつ下降し、未溶解ガスは上昇して常運転の電磁弁付電動ポンプ10から脱気筒外へ強制的に排出される。一方、下降したダム水は、補水管11から入った高密度のダム水と合流して完全に溶解する。【選択図】図1
DEAERATOR OF POWER GENERATOR FOR IRRIGATION DAM
PROBLEM TO BE SOLVED: To stably supply inexpensive electric power, by safely sending water by conventional dam pressure after power generation, by collecting water conduit pipes of respective use destinations such as irrigation, a water guide and industrial use arranged from a dam, or effectively melting-removing generating gas.SOLUTION: A large diameter deaeration cylinder 7 is installed in a rear part of a power generator 1, and a sucking-out pipe 4 is connected to the deaeration cylinder 7, and the downstream side whole water conduit pipes 2 are connected at a constant interval via a taper pipe 8 to a rear part of the deaeration cylinder 7, and a deaeration pipe 9 is connected to an upper part of the deaeration cylinder 7, and is installed in an electric pump 10 with a solenoid valve of normal operation, and a water replenishing pipe 11 is arranged from a water intake port, and the tip of the water replenishing pipe 11 is branched off into a large diameter pipe 12, a medium diameter pipe 13 and a small diameter pipe 14, and is connected to the deaeration cylinder 7, so that dam water entering the deaeration cylinder 7 from the sucking-out pipe 4 descends while rotating, while dissolving gas, and undissolved gas rises, and is forcedly discharged to the outside of the deaeration cylinder from the electric pump 10 with the solenoid valve of the normal operation. While the descended dam water is completely dissolved by merging with high-density dam water entering from the water replenishing pipe 11.
【課題】ダムより配設されたかんがい、水導、工業用等の各用途先の導水管をまとめるか、発生するガスを効果的に溶解・排除し、発電後は従来のダム圧で安全に送水し、安価な電力を安定して供給する。【解決手段】発電機1の後部に、大径の脱気筒7を設置し、該脱気筒7に吸い出し管4を接続し、脱気筒7の後部に下流側の全導水管2をテーパ管8を介して一定間隔で接続し、脱気筒7の上部に脱気管9を接続して常運転の電磁弁付電動ポンプ10に取り付け、取水口より補水管11を配設し、該補水管11の先端は大口径管12、中口径管13、小口径管14に分岐して脱気筒7に接続することにより、吸い出し管4から脱気筒7に入ったダム水は回転しながら、ガスを溶解しつつ下降し、未溶解ガスは上昇して常運転の電磁弁付電動ポンプ10から脱気筒外へ強制的に排出される。一方、下降したダム水は、補水管11から入った高密度のダム水と合流して完全に溶解する。【選択図】図1
DEAERATOR OF POWER GENERATOR FOR IRRIGATION DAM
利水ダム用発電装置の脱気装置
ARIYOSHI KAZUO (Autor:in)
26.11.2015
Patent
Elektronische Ressource
Japanisch
IPC:
E02B
HYDRAULIC ENGINEERING
,
Wasserbau
High-Pressure Deaerator for 300-MW Power Generating Units
Online Contents | 2016
|High-Pressure Deaerator for 300-MW Power Generating Units
Springer Verlag | 2016
|High-Pressure Deaerator for 300-MW Power Generating Units
Online Contents | 2016
|Corrosion and Its Countermeasures of the Deaerator in a Power Plant
British Library Online Contents | 2006
|