05-02-2015 дата публикации
Номер: US20150034045A1
Принадлежит:
A compression ignition (diesel) engine uses two or more fuel charges during a combustion cycle, with the fuel charges having two or more reactivities (e.g., different cetane numbers), in order to control the timing and duration of combustion. By appropriately choosing the reactivities of the charges, their relative amounts, and their timing, combustion can be tailored to achieve optimal power output (and thus fuel efficiency), at controlled temperatures (and thus controlled NOx), and with controlled equivalence ratios (and thus controlled soot). At low load and no load (idling) conditions, the aforementioned results are attained by restricting airflow to the combustion chamber during the intake stroke (as by throttling the incoming air at or prior to the combustion chamber's intake port) so that the cylinder air pressure is below ambient pressure at the start of the compression stroke. 2. The method of wherein the fuel and the material define a stratified distribution of fuel reactivity within the combustion chamber during the engine combustion cycle claim 1 , with regions of highest fuel reactivity being spaced from regions of lowest reactivity.3. The method of wherein:a. one or more of the fuel and the material are supplied into the combustion chamber in a first fuel charge; (1) is supplied into the combustion chamber subsequent to the first fuel charge, and', '(2) has a reactivity different from the reactivity of the first fuel charge., 'b. one or more of the fuel and the material are supplied into the combustion chamber in a second fuel charge, wherein the second fuel charge4. The method of wherein the second fuel charge is supplied into the combustion chamber between:a. the start of the compression stroke, andb. 40 degrees prior to Top Dead Center (TDC).5. The method of wherein the fuel and the material are supplied to the combustion chamber at different times during the engine combustion cycle.6. The method of wherein:a. the fuel from the first supply is ...
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