摘要:
Provided is a mixer including a ring-shaped swirl chamber; an inlet port which is connected to the swirl chamber in a direction tangential to the outer circumference of the swirl chamber to suck a fuel; a cylindrical vortex chamber coaxially and more inwardly formed with respect to the swirl chamber; a passage which connects the swirl chamber to the vortex chamber; and a taper port which is coaxially connected to the vortex chamber and is configured so that the inner diameter thereof is decreased from the vortex chamber-side end toward the opposite side end; and a supply port which is in communication with the taper port to suck a desired fluid.
摘要:
A mixer for a fuel feeding device comprises a swirl flow chamber having a doughnut-shaped space, an inflow hole connected to the swirl flow chamber from the outer peripheral side of the swirl flow chamber, a cylindrical section which is formed concentrically to the swirl flow chamber and which has a cylindrical space area, a tapered hole formed concentrically to the swirl flow chamber, diverged toward the swirl flow chamber, and connected to the swirl flow chamber and the cylindrical section, and an outflow hole which is formed concentrically to the swirl flow chamber and which communicates with the cylindrical section on the opposite side thereof to the side where the cylindrical section is connected to the tapered hole.
摘要:
A mixed fuel generation method comprises a step of mixing a fuel oil and at least one additional fluid other than the fuel oil, wherein one of the additional fluids is water, and a specific ratio that is a ratio of a volume of the water to a volume of the mixed fuel is 6% or less.
摘要:
An efficient internal combustion engine jointly using hydrogen obtained by dehydrogenation of a hydrogen supply mass. There is disclosed a hydrogen supply unit for internal combustion engine comprising hydrogen separating means, storage means for storage of separated hydrogen, means for storage of dehydrogenation products and means for addition supply of produced hydrogen to a fuel source. The hydrogen separating means for separating produced hydrogen from dehydrogenation products, includes a dehydrogenation reactor for production of hydrogen from a hydrogen supply mass using at least either the hydrogen supply mass or a hydrocarbon fuel as the fuel source, which dehydrogenation reactor on its one face is provided with a hydrogen production section bearing a dehydrogenation catalyst and on its other face is provided with an oxidation reaction section allowing passage of an exhaust from the internal combustion engine and bearing an oxidation catalyst for oxidizing any dehydrogenation products from the hydrogen supply mass to thereby bring about heat generation.