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公开(公告)号:US20160341420A1
公开(公告)日:2016-11-24
申请号:US15155338
申请日:2016-05-16
申请人: Richard E. Aho
发明人: Richard E. Aho , William Walter Mee
摘要: A cavitation engine configured to produce superheat steam from injected liquid water. The cavitation engine includes a funnel shaped impact chamber having an impact surface having a temperature of at least 375 degrees Fahrenheit, a small diameter opening at a bottom of the impact chamber, and an expansion chamber below the small diameter opening. The engine includes a fluid injector having an outlet positioned adjacent a largest diameter of the impact chamber and located to inject hyperbaric liquid water onto the impact surface of the impact chamber at supersonic velocities such that cavitation bubbles are present in the injected water. The outlet of the fluid injector and the impact surface are located relative to one another such that the outlet is spaced a distance from the impact surface of between 0.150 and 0.450 inches and the injected water hits the impact surface at an angle of between 85 and 95 degrees. Impact of the water with the impact surface crushes the cavitation bubbles in the injected water to generate pressure above 1,000 pounds per square inch and produce superheated steam.
摘要翻译: 一种空化引擎,配置为从注射的液态水产生过热蒸汽。 空化发动机包括具有至少375华氏度的温度,冲击室底部的小直径开口和小直径开口下方的膨胀室的冲击表面的漏斗形冲击室。 发动机包括流体喷射器,其具有邻近冲击室的最大直径定位的出口,并且定位成以超音速将高压液体水喷射到冲击室的冲击表面上,使得在注入的水中存在空化气泡。 流体注射器和冲击表面的出口相对于彼此定位,使得出口与冲击表面间隔一定距离在0.150和0.450英寸之间,并且注入的水以85和95之间的角度撞击冲击表面 度。 水冲击表面的冲击破坏了注入水中的空化气泡,产生的压力高于1000磅/平方英寸,产生过热蒸汽。
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公开(公告)号:US09995479B2
公开(公告)日:2018-06-12
申请号:US15155338
申请日:2016-05-16
申请人: Richard E. Aho
发明人: Richard E. Aho , William Walter Mee
摘要: A cavitation engine configured to produce superheat steam from injected liquid water. The cavitation engine includes a funnel shaped impact chamber having an impact surface having a temperature of at least 375 degrees Fahrenheit, a small diameter opening at a bottom of the impact chamber, and an expansion chamber below the small diameter opening. The engine includes a fluid injector having an outlet positioned adjacent a largest diameter of the impact chamber and located to inject hyperbaric liquid water onto the impact surface of the impact chamber at supersonic velocities such that cavitation bubbles are present in the injected water. The outlet of the fluid injector and the impact surface are located relative to one another such that the outlet is spaced a distance from the impact surface of between 0.150 and 0.450 inches and the injected water hits the impact surface at an angle of between 85 and 95 degrees. Impact of the water with the impact surface crushes the cavitation bubbles in the injected water to generate pressure above 1,000 pounds per square inch and produce superheated steam.
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