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    • 1. 发明专利
    • 排ガス発電浄化システム
    • 废气发电净化系统
    • JPWO2014017377A1
    • 2016-07-11
    • JP2014526883
    • 2013-07-18
    • 啓吾 清水啓吾 清水
    • 啓吾 清水啓吾 清水
    • B01D53/56B01D53/38B01D53/50B01D53/60B01D53/77F01D15/08F01D15/10F01D25/00F01K27/00F02C3/045F23J15/00
    • F01K21/045B01D47/021B01D47/06B01D53/38B01D53/77B01D53/8625B01D2251/2067B01D2257/302F01K25/06Y02E20/12
    • サイクロン集塵機を通過した高温排ガスの膨張力で回転するタービン車室にブロワーを用いて排ガスを導入すると共に、タービン車室入口またはタービン車室内もしくはその両方に尿素水のミストを噴霧し気化させ、タービン車室内における該ミストの気化膨張時のエネルギーを直接タービン駆動に利用することでタービンの回転力を増加させ、連結された発電用モーターによりエネルギー回収し、該タービン排気を湿式浄化装置へ送り込んで排ガスの浄化を行うと共に該気化したミストを凝縮したのちフィルターにより微細な塵埃を濾過したものを該タービンへの噴霧用ミストとして再び用い、炉内または煙道へも噴霧し、湿式浄化装置から排出された排気の一部又は全部を炉内へ還流させて還流させない排気を活性炭吸着塔に送り込み、又は該排気を活性炭吸着塔へ送り込み、該活性炭吸着塔から排出される排ガスの一部又は全部を炉内へ還流させる。
    • 连同鼓风机涡轮机壳体由通过旋风灰尘收集器的高温废气的膨胀力而旋转导入的废气,由涡轮机壳体的入口或涡轮机叶轮隔室或尿素水两者的雾喷射气化,涡轮 通过蒸发和在车厢中的雾的膨胀,并且通过所连接的发电电动机回收的能量期间利用直接涡轮驱动能量增加了涡轮机的旋转力,排气被送入涡轮排气至湿气体净化装置 通过过滤器的细尘过滤后再次使用冷凝汽化的雾进行清洗以喷雾雾对涡轮之后,还喷入炉膛或烟道,其从湿净化设备排出 这是排气或不排气回流到回流整个入炉内通过活性炭的吸附塔进料的一部分, 它被馈送到排气到活性炭的吸附塔,再循环从活性炭吸附塔排出到炉的排气的一部分或全部。
    • 2. 发明专利
    • Various energy storage cycle jointing engine
    • JP2014043847A
    • 2014-03-13
    • JP2012188179
    • 2012-08-29
    • Hiroyasu Tanigawa浩保 谷川Kazunaga Tanigawa和永 谷川
    • TANIGAWA HIROYASUTANIGAWA KAZUNAGA
    • F02C3/045F02C3/107F02C6/00
    • PROBLEM TO BE SOLVED: To solve a problem that power generation of an existing steam turbine whose half of stationary blades has a 0-output is almost 0-output power generation in which a steam velocity is reduced to 1/10 and a maximum velocity part water has a capacity 43000 times larger by blocking the steam velocity.SOLUTION: A half of stationary blades have a 0-output, so as to block a light-weight steam velocity and the like. Then, a power generation amount is improved to 1/10 or less at light object power generation, so as to double-reverse all of moving blades by a gear with a transverse axis 1h. Power is generated at, for example, mercury gravity acceleration under vacuum of 30 mmHg, so as to reach Mach 30. One hundred sets of mercury injection turbines are overlaid, and the power generation amount of one turbine is 1355 times as large as that of the existing one, so as to obtain a bearing load of 0. An inexpensive electric-driven solar power heater with fuel consumption of 0 and power initial cost of 1/100 is manufactured, so as to provide heat supply facility 3D of electricity, liquid-air, and overheated steam. An automobile, a ship, an aircraft and the like are compression-driven by liquid oxygen, so as to provide 21/60000 capacity compression power of that of air compression, 1/10 fuel consumption, and 10 times velocity. The aircraft is targeted to 1/500000 costs for reaching a cosmic space, so as to make a profit ratio for operating all of products extraordinarily best in the world and permanent like a one-day round trip everywhere in the world.
    • 4. 发明专利
    • GAS TURBINE
    • JPH09195794A
    • 1997-07-29
    • JP4203096
    • 1996-01-22
    • MURAYAMA YOSHINOBU
    • MURAYAMA YOSHINOBU
    • F01D25/00F02B61/04F02C3/045F02C5/12F02C7/266F02C7/27F02K7/067
    • PROBLEM TO BE SOLVED: To provide a small gas turbine which possesses high performance and low cost to replace a reciprocal engine as a generator for mobile industrial machine such as an automobile vehicle and which facilitate maintenance and starting thereof, with no vibration. SOLUTION: Compression blades 8 in one side and impulse blades 15 in other side are formed integrally and a blade wheel 2 is keyed to a shaft 1, the both end of which are supported by the bearings 3, 4. A partitioner 9 with a number of pierced holes 10 and plate spring 11, for closing these holes are pinched by the cases 5, 6. Several plugs 13 are provided in a combustion chamber 12. Guide blade 14 inside the case 6 and cooling fins 25, 26 outside the case are formed. On a support 17 keyed to the shaft an axial flow turbine 16 is secured. A flywheel 29 having impulse vanes 30 is keyed to the shaft. Guide blade 28 is disposed in a portion of a cover 27, and several exhaust part 31 are formed. A tank 18 with an air pump 23 is attached and the port 19 and 24 communicating to the combustion chamber 12 is closed by pushing with a spring 21 at the tapered part of a needle valve 20. When opening the needle valve with a ring 22 the turbine is started by using the pressurized gas in the tank.
    • 5. 发明专利
    • GAS TURBINE
    • JPH09125985A
    • 1997-05-13
    • JP31575195
    • 1995-10-27
    • MURAYAMA YOSHINOBU
    • MURAYAMA YOSHINOBU
    • F02C3/045F02B61/04F02C3/08F02C5/12F02C7/266F23R3/26
    • PROBLEM TO BE SOLVED: To provide an inexpensive, economical, vibrationproof, and compact prime mover. SOLUTION: An impeller 2, having a compression spring 8 integrally provided on one side and having an impulse blade 15 integrally provided on the back side, is secured to a shaft 1 and supported by bearings 3, 4, the compression blade 8 serving also as a cooling fin. A partition plate 9 pierced with a number of holes 10 and a plate spring 11 closing the holes are sandwiched between cases 5, 6. Several heating plugs 13 are provided in a combustion chamber 12 in the case 6. A guide plate 25 is provided on the inside of the case 6, and a cooling fin 25 is provided on the outside of the case 6. An axial flow turbine 16 is secured to a base 17 secured to the shaft 1. A cooling fin 26 is provided on the outside of the holding part of the case 6 which holds the bearing 4. A tank 18 provided with an air pump 23 is provided in the combustion chamber 12 in the case 6. Holes 19, 24 leading to the combustion chamber 12 are closed by the taper part of a needle valve 20 by pressing the taper part with a spring 21. The needle valve 20 is raised with a lever 22 for startup.