WATER DELIVERY SYSTEM FOR DELIVERING DEMINERALIZED WATER TO A COMBUSTION ENGINE, AND DEMINERALIZATION APPARATUS
A water delivery system for delivering demineralized water to a consuming unit of a motor vehicle, in particular to a combustion engine, encompassing: a water tank having a filling opening; a first aspiration line; a first water pump; a discharge line; a discharge apparatus; a demineralization apparatus for demineralizing water; the first water pump being fluidically connected via the first aspiration line to an internal volume of the water tank; the discharge apparatus being fluidically connected via the discharge line to the first water pump.
1 - 15 . (canceled)
16 . A water delivery system for delivering demineralized water to a consuming unit in a motor vehicle, in particular to a combustion engine, encompassing:
a water tank having a filling opening;
a first aspiration line;
a first water pump;
a discharge line;
a discharge apparatus;
a demineralization apparatus for demineralizing water,
the first water pump being fluidically connected via the first aspiration line to an internal volume of the water tank;
the discharge apparatus being fluidically connected via the discharge line to the first water pump,
wherein
a) the water delivery system encompasses a demineralization circuit that comprises a second aspiration line, a second water pump, a pump line, and a return line, the second water pump being fluidically connected via the second aspiration line to an internal volume of the water tank; an inlet of the demineralization apparatus being fluidically connected via the pump line to the second water pump; and an outlet of the demineralization apparatus being fluidically connected via the return line to the internal volume of the water tank; or
b) the water delivery system encompasses a demineralization arm that comprises a three-way valve, a pump line, and a return line, a first discharge line sub-portion of the discharge line fluidically connecting the three-way valve to the first water pump; a second discharge line sub-portion of the discharge line fluidically connecting the three-way valve to the discharge apparatus; the pump line fluidically connecting an inlet of the demineralization apparatus to the three-way valve; and an outlet of the demineralization apparatus being fluidically connected via the return line to the internal volume of the water tank; or
c) the water delivery system encompasses a filler neck that fluidically connects the filling opening to the internal volume of the water tank; and the demineralization apparatus is arranged in the filler neck; or
d) the water delivery system encompasses, downstream from the first water pump, a demineralization bypass that comprises a first branch line and a second branch line, an inlet of the demineralization apparatus being fluidically connected by the first branch line to a first branching point of the discharge line downstream from the first water pump; and an outlet of the demineralization apparatus being fluidically connected by the second branch line to a second branching point of the discharge line downstream from the first branching point; or
e) the demineralization apparatus divides the internal volume of the water tank into two separate sub-volumes; or
f) the water delivery system encompasses, upstream from the first water pump, a demineralization arm that comprises a three-way valve, a pump line, a direct aspiration line, an intermediate line, and a demineralization aspiration line, the pump line fluidically connecting the three-way valve to the first water pump; the direct aspiration line fluidically connecting the three-way valve directly to the internal volume of the water tank; the intermediate line fluidically connecting the three-way valve to an outlet of the demineralization apparatus; and the demineralization aspiration line fluidically connecting an inlet of the demineralization apparatus directly to the internal volume of the water tank; the first aspiration line being embodied as the direct aspiration line.
17 . The water delivery system according to claim 16 , wherein the consuming unit is a combustion engine, a fuel cell or a battery cooling circuit.
18 . The water delivery system according to claim 16 , wherein the demineralization apparatus is embodied with a replaceable cartridge.
19 . The water delivery system according to claim 16 , wherein the demineralization apparatus divides the internal volume of the water tank into two separate sub-volumes; and the demineralization apparatus is embodied with a reverse osmosis membrane.
20 . The water delivery system according to claim 16 , wherein the water delivery system encompasses a water quality sensor fluidically connected to the internal volume of the water tank.
21 . The water delivery system according to claim 16 , wherein the demineralization apparatus encompasses an ion exchanger as a demineralizing active substance.
22 . The water delivery system according to claim 16 , wherein the demineralization apparatus encompasses at least one demineralizing active substance that generates a precipitate in the context of a water demineralization process.
23 . The water delivery system according to claim 16 , further comprising a discharge arm downstream from the first water pump, the discharge arm comprising a further three-way valve, a first discharge line sub-portion of the discharge line, a second discharge line sub-portion of the discharge line, and a return line; the first discharge line sub-portion fluidically connecting the first water pump to a first port of the further three-way valve; the second discharge line sub-portion fluidically connecting a second port of the further three-way valve to the discharge apparatus; and the return line fluidically connecting a third port of the further three-way valve to the internal volume of the water tank.
24 . The water delivery system according to claim 16 , wherein the demineralization apparatus encompassing:
an inlet;
an outlet;
a fluid flow channel extending between the inlet and the outlet;
a baffle plate arranged transversely to a principal direction of extent of the fluid flow channel,
wherein the baffle plate is shaped in such a way that the baffle plate constitutes an edge portion of a passthrough opening in the fluid flow channel, the opening cross section of which opening is smaller than an opening cross section of the fluid flow channel upstream from the baffle plate.
25 . The water delivery system according to claim 24 , wherein the demineralization apparatus further encompassing a further baffle plate arranged, directly downstream from the baffle plate, transversely to the principal direction of extent of the fluid flow channel,
wherein the further baffle plate is shaped in such a way that the further baffle plate constitutes an edge portion of a further passthrough opening in the fluid flow channel, the opening cross section of which opening is smaller than an opening cross section of the fluid flow channel upstream from the further baffle plate; and a projection of the further passthrough opening along the principal direction of extent of the fluid flow channel does not completely overlap with the passthrough opening.
26 . The water delivery system according to claim 24 , wherein the principal direction of extent of the fluid flow channel, at least in portions, follows a flat spiral; and/or, at least in portions, follows a straight line; and/or, at least in portions, follows the course of a helix or coil.
27 . A demineralization apparatus encompassing:
an inlet;
an outlet;
a fluid flow channel extending between the inlet and the outlet;
a baffle plate arranged transversely to a principal direction of extent of the fluid flow channel,
wherein the baffle plate is shaped in such a way that the baffle plate constitutes an edge portion of a passthrough opening in the fluid flow channel, the opening cross section of which opening is smaller than an opening cross section of the fluid flow channel upstream from the baffle plate.
28 . The demineralization apparatus according to claim 27 , further encompassing a further baffle plate arranged, directly downstream from the baffle plate, transversely to the principal direction of extent of the fluid flow channel,
wherein the further baffle plate is shaped in such a way that the further baffle plate constitutes an edge portion of a further passthrough opening in the fluid flow channel, the opening cross section of which opening is smaller than an opening cross section of the fluid flow channel upstream from the further baffle plate; and a projection of the further passthrough opening along the principal direction of extent of the fluid flow channel does not completely overlap with the passthrough opening.
29 . The demineralization apparatus according to claim 27 , wherein the principal direction of extent of the fluid flow channel, at least in portions, follows a flat spiral; and/or, at least in portions, follows a straight line; and/or, at least in portions, follows the course of a helix or coil.
30 . A vehicle having a consuming unit, in particular a combustion engine, and having a water delivery system according to claim 16 , wherein the water delivery system delivers the demineralized water to the consuming unit.
31 . A method for operating a water delivery system having the features of claim 16 , wherein the demineralization apparatus is embodied with a replaceable cartridge and wherein the water delivery system further comprising a discharge arm downstream from the first water pump, the discharge arm comprising a further three-way valve, a first discharge line sub-portion of the discharge line, a second discharge line sub-portion of the discharge line, and a return line; the first discharge line sub-portion fluidically connecting the first water pump to a first port of the further three-way valve; the second discharge line sub-portion fluidically connecting a second port of the further three-way valve to the discharge apparatus; and the return line fluidically connecting a third port of the further three-way valve to the internal volume of the water tank; the method encompassing the following steps:
detecting, by way of a water quality sensor, a degree of demineralization of water in the internal volume of the water tank and carrying out the following steps when the degree of demineralization is below a predetermined or determinable lower threshold value:
either, in accordance with an operating mode A:
switching the three-way valve into a demineralization aspiration state and switching a further three-way valve into a circulation state in which the first port and the third port of the further three-way valve are opened for the passage of fluid, and the second port of the further three-way valve is closed;
conveying water or utility water out of the water tank by the first water pump through the demineralization apparatus;
demineralizing the water component conveyed through the demineralization apparatus;
returning that demineralized water component into the internal volume of the water tank; and
terminating that demineralization process when the water quality sensor detects a degree of demineralization in the internal volume of the water tank which is above the predetermined or predeterminable lower threshold value or above a predetermined or predeterminable stop threshold value that is above the lower threshold value;
or, in accordance with an operating mode B:
switching the three-way valve into a demineralization aspiration state and switching a further three-way valve into a discharge state in which the first port and the second port of the further three-way valve are opened for the passage of fluid, and the third port of the further three-way valve is closed; and
conveying water or utility water out of the water tank by the first water pump through the demineralization apparatus to the discharge apparatus.
32 . The method according to claim 31 , wherein the consuming unit is a combustion engine; and the operating mode A is selected when the combustion engine is shut off, and the operating mode B is selected when the combustion engine is operating.