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    • 2. 发明申请
    • Infrared Aided Fuel Emulsion
    • 红外辅助燃料乳液
    • US20160101391A1
    • 2016-04-14
    • US14973379
    • 2015-12-17
    • Albert Chin-Tang Wey
    • Albert Chin-Tang Wey
    • B01F3/04C10L3/06B01F5/04C10L1/32
    • B01F3/0446B01F3/0815B01F5/04B01F13/001C10L1/32C10L3/00C10L3/06C10L2200/0259C10L2250/08C10L2270/02C10L2290/14C10L2290/24C10L2290/36
    • This invention relates to a system and a method for generating emulsified fuels for improved fuel efficiency of combustion devices with reduced specific fuel consumption rate and emissions, comprising at least a continuous phase fuel, a dispersed phase component, and an infrared radiation source whose infrared radiation spans at least a portion of 3-16 micrometers wavelength spectrum. In said system the continuous phase fuel and/or dispersed phase component are exposed to said infrared before or during emulsification. The continuous phase fuel may be selected from fossil fuels, biofuels, alcohol fuels, vegetable oils, or any combustible liquid fuels, while the dispersed phase component may be oxygen, hydrogen, nitrogen, carbon monoxide, methane, propane, butane, any petroleum gas, hydrogen peroxide, or water. The emulsified fuels can be used in combustion devices such as internal combustion engines, boilers, burners, or gas turbines.
    • 本发明涉及一种用于产生乳化燃料的系统和方法,用于提高具有降低的特定燃料消耗率和排放的燃烧装置的燃料效率,该至少一种连续相燃料,分散相组分和红外辐射源的红外辐射 跨越3-16微米波长光谱的至少一部分。 在所述系统中,连续相燃料和/或分散相组分在乳化之前或期间暴露于所述红外线。 连续相燃料可以选自化石燃料,生物燃料,醇燃料,植物油或任何可燃液体燃料,而分散相组分可以是氧,氢,氮,一氧化碳,甲烷,丙烷,丁烷,任何石油气 ,过氧化氢或水。 乳化燃料可用于诸如内燃机,锅炉,燃烧器或燃气轮机的燃烧装置中。
    • 3. 发明申请
    • Infrared-emitting ceramics for fuel activation
    • 用于燃料激活的红外发射陶瓷
    • US20150285136A1
    • 2015-10-08
    • US14603669
    • 2015-01-23
    • Albert Chin-Tang Wey
    • Albert Chin-Tang Wey
    • F02B51/06F02M27/06C09K11/68
    • F02B51/06C09K11/685F02M27/06Y02T10/126
    • This invention relates to a ceramic composite that comprises of a mixture of infrared-emitting metal oxides having specific spectral luminance in 3-20 μm (micrometers) wavelength range and an effective amount of pyroelectric material that helps enhance infrared emissions of said oxides in said wavelength range. Said ceramic composite can be deviced to provide an effective means of improving hydrocarbon fuel efficiency in internal combustion engines for better engine performance with increased torque and power, improved fuel economy, and reduced exhaust emissions. Such ceramic composites can also be used in other applications that utilize infrared emissions in said wavelength range.
    • 本发明涉及一种陶瓷复合材料,其特征在于包括在3-20μm(微米)波长范围内具有特定光谱亮度的红外发射金属氧化物的混合物和有助于促进所述波长氧化物的红外发射的热电材料 范围。 可以设计所述陶瓷复合材料以提供内燃机中的碳氢化合物燃料效率的有效手段,以提高扭矩和功率,提高燃料经济性和减少废气排放。 这种陶瓷复合材料也可以用于在所述波长范围内利用红外发射的其它应用中。
    • 4. 发明授权
    • Efficient combustion of hydrocarbon fuels in engines
    • 发动机中碳氢燃料的有效燃烧
    • US08887697B2
    • 2014-11-18
    • US12806369
    • 2010-08-11
    • Albert Chin-Tang Wey
    • Albert Chin-Tang Wey
    • F02M33/00
    • F02B51/06F02D19/0644F02D19/0671F02M27/06Y02T10/126Y02T10/36
    • This invention relates to a system and a method for achieving efficient combustion of hydrocarbon fuels in internal combustion engines to enhance the engine performance with reduced fuel consumption and emissions, comprising at least an infrared radiation source emitting infrared at wavelengths covering at least a portion of 3-20 micrometers wavelength range for exciting the hydrocarbon fuel and a hydrogen source providing hydrogen gas to be burned along with the infrared-excited hydrocarbon fuel in engine cylinder. The hydrocarbon fuel can be any of hydrocarbon-based fuels, including methane, propane, gasoline, ethanol, diesels, biodiesels, and renewable fuels, that are used to power internal combustion engines. The expectation is to provide an effective means of improving hydrocarbon fuel efficiency in engines for better engine performance with increased torque and power, improved fuel economy, and reduced exhaust emissions.
    • 本发明涉及一种用于实现内燃机中碳氢燃料的有效燃烧的系统和方法,以减少燃料消耗和排放来提高发动机性能,其包括至少一个发射红外线的红外辐射源,其中波长覆盖至少部分3 用于激发烃燃料的-20微米波长范围和提供与发动机气缸中的红外线激发烃燃料一起燃烧的氢气的氢源。 烃燃料可以是用于为内燃机供电的任何一种烃基燃料,包括甲烷,丙烷,汽油,乙醇,柴油,生物柴油和可再生燃料。 期望的是提供一种有效的方法来提高发动机中的碳氢化合物燃料效率,以提高扭矩和功率,提高燃油经济性和减少废气排放。
    • 8. 发明申请
    • Method of measuring instantaneous arterial blood pressure and compliance and device thereof
    • 测量瞬时动脉血压和依从性及其装置的方法
    • US20090069699A1
    • 2009-03-12
    • US12071190
    • 2008-02-19
    • Albert Chin-Yuh Lin
    • Albert Chin-Yuh Lin
    • A61B5/02A61B19/00A61B5/00
    • A61B5/021A61B5/6843
    • A method of measuring the instantaneous arterial blood pressure and compliance and the device thereof are disclosed. The method identifies a critical depth under the skin. At this critical position, the arterial mean blood pressure is equivalent to the mean blood pressure obtained on the skin. The variation in the arterial mean blood pressure is tracked and controlled to maintain the equivalence between the mean blood pressure measured on the skin and the arterial mean blood pressure. In this case, the compliance of the muscle tissues remains invariant. Therefore, the variation measured on the skin is simply the behavior of the blood vessel. Using the skin-artery correlation, the invention can obtain the instantaneous blood pressure after some computation and the dynamic compliance at the critical position.
    • 公开了一种测量瞬时动脉血压和依从性及其装置的方法。 该方法识别皮肤下的临界深度。 在这个临界位置,动脉平均血压等于皮肤上获得的平均血压。 跟踪和控制动脉平均血压的变化,以保持在皮肤上测量的平均血压与动脉平均血压之间的等效性。 在这种情况下,肌肉组织的依从性保持不变。 因此,在皮肤上测量的变化仅仅是血管的行为。 使用皮肤 - 动脉相关性,本发明可以获得一些计算后的瞬时血压和临界位置的动态依从性。