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FULL-SCALE HYDRAULIC POWER GENERATION METHOD USING SEAWATER
To solve the problem of conventional hydraulic power generation in which an amount of water supplied from nature is not constant over a year in (regulating reservoir type and water reservoir type) power generation where a power source for inflow power generation base supply and a power source for (pumping type, regulating reservoir type and water reservoir type) power generation peak supply are divided as individual power sources, and the pumping type power generation is a facility that pumps up water to an upper pond (regulating reservoir) using a pump turbine with power that is surplus at night and uses the water in daytime.SOLUTION: Hydraulic power generation is performed using sea water close to infinite, a power source for inflow power generation base supply and a power source for pumping type power generation peak supply are combined, which changes the power generation to power generation for base supply and increases a ratio of the hydraulic power generation by the power generation combination, and can convert a nuclear power generation furnace into a waste furnace. The hydraulic power generation which can solve CO, natural environment, air pollution and fuel cost and is safe is the best method for preventing global warming.SELECTED DRAWING: Figure 1
【課題】従来の水力発電において、流込式発電ベース供給用と(揚水式、調整池式、貯水池式)発電ピーク供給用と単体で個々の電源として分かれていた(調整池式、貯水池式)発電では自然から供給される水の量が年間を通じて一定ではないという問題があった。揚水式発電は夜間に余った電力でポンプ水車で上池(調整池)にくみ上げ、昼間に活用するための設備であった。【解決手段】本発明は無限に近い海水を利用して水力発電を行い、流込式発電ベース供給用と揚水式発電ピーク供給用とを合体することにより、ベース供給用発電に変更し電源組合せで水力発電の比率が上昇し、原子力発電は廃炉にすることが可能となる。CO2、自然環境、大気汚染、燃料コストも解決できる安全な水力発電は地球温暖化防止の最良の方法である。【選択図】図1
FULL-SCALE HYDRAULIC POWER GENERATION METHOD USING SEAWATER
To solve the problem of conventional hydraulic power generation in which an amount of water supplied from nature is not constant over a year in (regulating reservoir type and water reservoir type) power generation where a power source for inflow power generation base supply and a power source for (pumping type, regulating reservoir type and water reservoir type) power generation peak supply are divided as individual power sources, and the pumping type power generation is a facility that pumps up water to an upper pond (regulating reservoir) using a pump turbine with power that is surplus at night and uses the water in daytime.SOLUTION: Hydraulic power generation is performed using sea water close to infinite, a power source for inflow power generation base supply and a power source for pumping type power generation peak supply are combined, which changes the power generation to power generation for base supply and increases a ratio of the hydraulic power generation by the power generation combination, and can convert a nuclear power generation furnace into a waste furnace. The hydraulic power generation which can solve CO, natural environment, air pollution and fuel cost and is safe is the best method for preventing global warming.SELECTED DRAWING: Figure 1
【課題】従来の水力発電において、流込式発電ベース供給用と(揚水式、調整池式、貯水池式)発電ピーク供給用と単体で個々の電源として分かれていた(調整池式、貯水池式)発電では自然から供給される水の量が年間を通じて一定ではないという問題があった。揚水式発電は夜間に余った電力でポンプ水車で上池(調整池)にくみ上げ、昼間に活用するための設備であった。【解決手段】本発明は無限に近い海水を利用して水力発電を行い、流込式発電ベース供給用と揚水式発電ピーク供給用とを合体することにより、ベース供給用発電に変更し電源組合せで水力発電の比率が上昇し、原子力発電は廃炉にすることが可能となる。CO2、自然環境、大気汚染、燃料コストも解決できる安全な水力発電は地球温暖化防止の最良の方法である。【選択図】図1
FULL-SCALE HYDRAULIC POWER GENERATION METHOD USING SEAWATER
海水利用の本格的な水力発電の方法
SAKAGAMI TOSHIHIRO (author)
2019-05-23
Patent
Electronic Resource
Japanese
IPC:
E02B
HYDRAULIC ENGINEERING
,
Wasserbau
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