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    • 3. 发明公开
    • 반응 해석 장치, 기록 매체, 계측 시스템, 및 제어 시스템
    • 反应分析仪,记录介质,测量系统和控制系统
    • KR1020090082893A
    • 2009-07-31
    • KR1020097009963
    • 2007-11-17
    • 이마지니어링 가부시키가이샤
    • 이케다,유지니시야마,아츠시
    • G01N21/71G01N21/25F02D45/00
    • G01N21/71
    • It is possible to appropriately judge with high reproducibility whether or not a reaction region is in an abnormal reaction state, an adequate analysis is performed depending on the state of the reaction region, and the feature of the reaction region is efficiently analyzed. A reaction analyzer comprises acquiring means (330, 332) for acquiring the intensity values of first and second wavelength components from the results (302) of measurement of the light emitted from a reaction region by using a spectrophotometer, a relative intensity calculating section (334) for calculating the relative intensity of the first wavelength component to that of the second wavelength component from the intensity values of the first and second wavelength components, a judging section (336) for judging whether or not the calculated relative intensity is within a predetermined range, and an output section (316) for reporting that the state of the reaction region is in a predetermined state if the relative intensity value is judged to be within the predetermined range.
    • 可以以高再现性适当地判断反应区域是否处于异常反应状态,根据反应区域的状态进行适当的分析,有效地分析反应区域的特征。 一种反应分析仪,其特征在于,包括获取单元,用于通过使用分光光度计,从相对强度计算部(334)获取从反应区域发射的光的测量结果(302)中获取第一波长成分和第二波长成分的强度值 ),用于根据第一和第二波长分量的强度值计算第一波长分量相对于第二波长分量的相对强度;判断部分(336),用于判断所计算的相对强度是否在预定范围内 以及输出部(316),用于如果判定相对强度值在预定范围内,则报告反应区域的状态处于预定状态。
    • 4. 发明公开
    • 점화장치, 내연기관, 점화 플러그, 플라즈마장치, 배기가스분해장치, 오존 발생·멸균·소독장치 및 소취장치
    • 点火装置,内燃机,点火插头,等离子体装置,排气分解装置,臭氧发生/灭菌/消毒装置和除臭装置
    • KR1020090055515A
    • 2009-06-02
    • KR1020087011029
    • 2006-10-04
    • 이마지니어링 가부시키가이샤
    • 이케다,유지
    • F02P23/04F02M27/04B01J19/08F02B23/08
    • F02P23/045A61L2/202B01D53/32B01D2259/818C01B13/10F02B23/08F02B47/02F02B47/08F02M25/03F02M27/04H05B6/681H05B6/806H05B2206/045Y02B40/143Y02T10/121Y02T10/125
    • In a thermal engine or a plasma apparatus, for example, a reciprocating engine, a rotary engine, a jet engine, or a gas turbine, even when the proportion of a fuel in a fuel-air mixture is reduced followed by a combustion reaction of a lean mixture, a stable and high-efficiency combustion reaction can be realized to realize stabilized ignition, improved flame propagation speed, improved output, cleaned exhaust gas, stabilized ignition of heterogeneous fuel-air mixture, improved fuel consumption and the like. Permittivity control means for introducing water and/or exhaust gas into a combustion reaction chamber (8) to control the permittivity of a fuel-air mixture within the combustion reaction chamber (8), a microwave radiation antenna (1) for radiating microwaves into the combustion reaction chamber (8), and discharge part (2) for igniting a fuel-air mixture in the combustion reaction chamber (8) are provided. The permittivity control means controls the permittivity of the fuel-air mixture before the combustion reaction of the fuel-air mixture to match the resonance frequency of the fuel-air mixture with the frequency of the microwave.
    • 在热机或等离子体装置中,例如往复式发动机,旋转发动机,喷气式发动机或燃气轮机,即使燃料 - 空气混合物中的燃料比例降低,随后燃烧反应 可以实现精益混合,稳定高效的燃烧反应,实现稳定点火,提高火焰传播速度,改善输出,净化废气,异质燃料空气混合物的稳定点火,改善燃料消耗等。 导流控制装置,用于将水和/或废气引入到燃烧反应室(8)中以控制燃烧反应室(8)内的燃料 - 空气混合物的介电常数;微波辐射天线(1),用于将微波辐射到 燃烧反应室(8)和用于点燃燃烧反应室(8)中的燃料 - 空气混合物的排出部分(2)。 介电常数控制装置控制燃料 - 空气混合物的燃烧反应之前燃料 - 空气混合物的介电常数与燃料 - 空气混合物的共振频率与微波的频率相匹配。