Once manually enabled for a steam turbine, it prevents it from wasting steam by automatically shutting it off in case there is a large excess of mechanical power on the shaft. Once the power on the shaft gets low, the turbine gets restarted. However restarts are not instant so shaft should be accompanied with a mechanical power storage to achieve stable supply of energy.
Once manually enabled for a steam turbine, it prevents it from wasting steam by automatically shutting it off in case there is a large excess of mechanical power on the shaft. Once the power on the shaft gets low, the turbine gets restarted. However restarts are not instant so shaft should be accompanied with a mechanical power storage to achieve stable supply of energy.
Once manually enabled for a steam turbine, it prevents it from wasting steam by automatically shutting it off in case there is a large excess of mechanical power on the shaft. Once the power on the shaft gets low, the turbine gets restarted. However restarts are not instant so shaft should be accompanied with a mechanical power storage to achieve stable supply of energy.
Once manually enabled for a steam turbine, it prevents it from wasting steam by automatically shutting it off in case there is a large excess of mechanical power on the shaft. Once the power on the shaft gets low, the turbine gets restarted. However restarts are not instant so shaft should be accompanied with a mechanical power storage to achieve stable supply of energy.
Once manually enabled for a steam turbine, it prevents it from wasting steam by automatically shutting it off in case there is a large excess of mechanical power on the shaft. Once the power on the shaft gets low, the turbine gets restarted. However restarts are not instant so shaft should be accompanied with a mechanical power storage to achieve stable supply of energy.
Once manually enabled for a steam turbine, it prevents it from wasting steam by automatically shutting it off in case there is a large excess of mechanical power on the shaft. Once the power on the shaft gets low, the turbine gets restarted. However restarts are not instant so shaft should be accompanied with a mechanical power storage to achieve stable supply of energy.
Once manually enabled for a steam turbine, it prevents it from wasting steam by automatically shutting it off in case there is a large excess of mechanical power on the shaft. Once the power on the shaft gets low, the turbine gets restarted. However restarts are not instant so shaft should be accompanied with a mechanical power storage to achieve stable supply of energy.
Once manually enabled for a steam turbine, it prevents it from wasting steam by automatically shutting it off in case there is a large excess of mechanical power on the shaft. Once the power on the shaft gets low, the turbine gets restarted. However restarts are not instant so shaft should be accompanied with a mechanical power storage to achieve stable supply of energy.蒸気タービンに手動で設定すると、軸の機械的動力が過剰になった場合に自動的にタービンを停止し、蒸気の浪費を防止します。軸の動力が低下するとタービンは再始動します。しかし、再稼働は即座にできないため、安定したエネルギー供給を実現するためには、軸に機械的な動力貯蔵装置を併設することが必要です。
Once manually enabled for a steam turbine, it prevents it from wasting steam by automatically shutting it off in case there is a large excess of mechanical power on the shaft. Once the power on the shaft gets low, the turbine gets restarted. However restarts are not instant so shaft should be accompanied with a mechanical power storage to achieve stable supply of energy.
Once manually enabled for a steam turbine, it prevents it from wasting steam by automatically shutting it off in case there is a large excess of mechanical power on the shaft. Once the power on the shaft gets low, the turbine gets restarted. However restarts are not instant so shaft should be accompanied with a mechanical power storage to achieve stable supply of energy.
Once manually enabled for a steam turbine, it prevents it from wasting steam by automatically shutting it off in case there is a large excess of mechanical power on the shaft. Once the power on the shaft gets low, the turbine gets restarted. However restarts are not instant so shaft should be accompanied with a mechanical power storage to achieve stable supply of energy.
タービン回転式原動機に手動で設定すると、軸の機械的動力が過剰になった場合に自動的にタービン回転式原動機を停止し、蒸気の浪費を防止します。軸の動力が低下するとタービン回転式原動機は再始動します。しかし、再稼働は即座に出来ない為、安定したエネルギー供給を実現する為には、軸に機械的な動力貯蔵施設を併設する事が必要です。