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    • 2. 发明授权
    • Fuel distillation property determining apparatus and method
    • 燃料蒸馏性能测定装置及方法
    • US07987696B2
    • 2011-08-02
    • US12332597
    • 2008-12-11
    • Tokuji KuronitaSatoru Sasaki
    • Tokuji KuronitaSatoru Sasaki
    • G01N33/22
    • G01N33/2829
    • A fuel distillation property determining apparatus for use in a multi-injection system for diesel engines. The apparatus acquires a physical quantity indicating a state of burning of fuel in the diesel engine, determines a physical quantity variation sensitivity defined by a ratio of a quantity variation that is a difference between a first value of the physical quantity, as acquired upon execution of a first one of a sequence of sub-injections, and a second value of the physical quantity, as acquired upon execution of a following one of the sub-injections, to a difference between a first quantity of fuel sprayed in the first sub-injection and a second quantity of fuel sprayed in the following sub-injection, and determine a cetane value of the fuel based on a predefined relation between the physical quantity variation sensitivity and the cetane value. This ensures the accuracy in determining the cetane value at low costs.
    • 一种用于柴油发动机的多喷射系统的燃料蒸馏特性测定装置。 该装置获取表示柴油发动机燃料的燃烧状态的物理量,确定由执行后获取的作为物理量的第一值之间的差的量的变化量的比例定义的物理量变化灵敏度 子注射序列中的第一个和在执行下一个次注射之后获取的物理量的第二值,与在第一次注射中喷射的第一燃料量之间的差异 以及在以下次喷射中喷射的第二数量的燃料,并且基于物理量变化灵敏度和十六烷值之间的预定关系来确定燃料的十六烷值。 这确保了以低成本确定十六烷值的准确性。
    • 3. 发明授权
    • Fuel injection control device and fuel injection control system
    • 燃油喷射控制装置和燃油喷射控制系统
    • US07870845B2
    • 2011-01-18
    • US12192303
    • 2008-08-15
    • Satoru SasakiTokuji KuronitaYouhei Morimoto
    • Satoru SasakiTokuji KuronitaYouhei Morimoto
    • F02B3/00F02B3/02
    • F02D41/403F02D35/023F02D35/024F02D35/026Y02T10/44
    • A fuel injection control device controls an operation of an injector such that fuel to be injected into a combustion chamber per combustion cycle is divided and injected at least through a first injection and a second injection, which is performed with a larger fuel quantity than the first injection after the first injection. The fuel injection control device includes an acquiring section and a first combustion state estimating section. The acquiring section acquires a sensing value of cylinder pressure in the combustion chamber sensed with a cylinder pressure sensor. The first combustion state estimating section estimates an actual combustion state of the fuel injected by the first injection based upon a second combustion timing cylinder pressure sensing value attributable to combustion of the fuel injected by the second injection out of the cylinder pressure sensing values.
    • 燃料喷射控制装置控制喷射器的操作,使得至少通过第一喷射和第二喷射来分配并喷射要在每个燃烧循环中喷射到燃烧室中的燃料,该第一喷射和第二喷射以比第一喷射 注射后第一次注射。 燃料喷射控制装置包括获取部和第一燃烧状态估计部。 获取部获取用气缸压力传感器感测的燃烧室中的气缸压力的感测值。 第一燃烧状态估计部基于由于通过第二次喷射喷射的燃料的燃烧而导致的第二燃烧正时气缸压力感测值,估计由第一喷射喷射的燃料的实际燃烧状态。
    • 8. 发明授权
    • Fuel injection nozzle
    • 燃油喷嘴
    • US07798430B2
    • 2010-09-21
    • US11896538
    • 2007-09-04
    • Tokuji KuronitaSatoru Sasaki
    • Tokuji KuronitaSatoru Sasaki
    • F02M61/00
    • F02M61/182F02M61/1826F02M61/1833
    • A fuel injection nozzle is formed with a nozzle hole group including at least two individual nozzle holes, which are disposed close to each other. Fuel is injected through the nozzle hole group. In at least one combination of two adjacent individual nozzle holes included in the same nozzle hole group, at least one of the two adjacent individual nozzle holes is configured such that each of the at least one of the two adjacent individual nozzle holes has a diameter, the diameter increasing only toward a corresponding adjacent one of the two adjacent individual nozzle holes along a direction from an inside to an outside of the each of the at least one of the two adjacent individual nozzle holes, and the diameter being maximized at an outer opening of the each of the at least one of the two adjacent individual nozzle holes.
    • 燃料喷射喷嘴形成有喷嘴孔组,其包括彼此靠近设置的至少两个单独的喷嘴孔。 燃料通过喷嘴孔组注入。 在包括在相同喷嘴孔组中的两个相邻的独立喷嘴孔的至少一个组合中,两个相邻的独立喷嘴孔中的至少一个被构造成使得两个相邻的独立喷嘴孔中的至少一个喷嘴孔中的每一个具有直径, 直径相对于两个相邻的独立喷嘴孔中的至少一个相邻的独立喷嘴孔中的至少一个的内侧至外部的方向仅朝两个相邻的独立喷嘴孔中相应的相邻的一个喷嘴孔径增加,并且该直径在外部开口处最大化 的两个相邻的独立喷嘴孔中的至少一个的每一个。