Hydrogen fuel supply system
US-2017291486-A1 · Oct 12, 2017 · US
US10168106B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10168106-B2 |
| Application number | US-201515507913-A |
| Country | US |
| Kind code | B2 |
| Filing date | Sep 1, 2015 |
| Priority date | Sep 2, 2014 |
| Publication date | Jan 1, 2019 |
| Grant date | Jan 1, 2019 |
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A heat exchanger 1 comprises a shell 2 which has in an interior thereof a heat exchange chamber 20 in which a gas to be cooled or an intermediate medium is filled, and performs heat exchange directly or indirectly between liquid hydrogen and the gas to be cooled, in the interior of the heat exchange chamber 20; a tray 23 which is provided in the interior of the heat exchange chamber 20 and receives a liquefied gas and a deposited substance F which are generated by the heat exchange in the interior of the heat exchange chamber 20; and a liquid discharge mechanism (flashboard 22, drain port 25, and drain pipe 26 ) which discharges the liquefied gas from the tray 23 in a state in which the deposited substance F is left in the tray 23.
Opening claim text (preview).
The invention claimed is: 1. A heat exchanger comprising: a heat exchange container which has in an interior thereof a heat exchange chamber in which a gas to be cooled or an intermediate medium is filled, and performs heat exchange directly or indirectly between liquid hydrogen and the gas to be cooled, in an interior of the heat exchange chamber; at least one heat transmission pipe inserted into the heat exchange container, the liquid hydrogen being flowed into the heat transmission pipe; a tray which is disposed below the at least one heat transmission pipe in the interior of the heat exchange chamber and receives a liquefied gas and a deposited substance which are generated by the heat exchange in the interior of the heat exchange chamber; and a liquid discharge mechanism which discharges the liquefied gas from the tray to an outside area of the heat exchange chamber, wherein the at least one heat transmission pipe includes a vacuum double-walled pipe defining an introduction portion introduced into the heat exchange chamber, and a single-walled pipe defining a portion other than the introduction portion, and wherein the tray is disposed to cover a region that is below the single-walled pipe exposed in the interior of the heat exchange chamber. 2. The heat exchanger according to claim 1 , wherein the heat exchanger is a heat exchanger of an intermediate medium type, which performs the heat exchange between the liquid hydrogen and the gas to be cooled, by use of the intermediate medium, wherein the heat exchange container includes an intermediate medium inlet which opens in an upper portion of the heat exchange chamber, and wherein the tray is disposed below a heat transmission pipe disposed in the vicinity of the intermediate medium inlet, of the at least one heat transmission pipe. 3. The heat exchanger according to claim 2 , wherein the intermediate medium is at least one of air, oxygen and nitrogen. 4. A heat exchanger comprising: a heat exchange container which has in an interior thereof a heat exchange chamber in which a gas to be cooled or an intermediate medium is filled, and performs heat exchange directly or indirectly between liquid hydrogen and the gas to be cooled, in an interior of the heat exchange chamber; a tray which is provided in the interior of the heat exchange chamber and receives a liquefied gas and a deposited substance which are generated by the heat exchange in the interior of the heat exchange chamber; and a liquid discharge mechanism which discharges the liquefied gas from the tray to an outside area of the heat exchange chamber, wherein the tray is disposed in a bottom portion of the heat exchange chamber, and wherein the liquid discharge mechanism includes a drain port which opens in the bottom portion of the heat exchange chamber so that the liquefied gas having overflowed out of the tray flows to the drain port, and a drain pipe connected to the drain port. 5. A heat exchanger comprising: a heat exchange container which has in an interior thereof a heat exchange chamber in which a gas to be cooled or an intermediate medium is filled, and performs heat exchange directly or indirectly between liquid hydrogen and the gas to be cooled, in an interior of the heat exchange chamber; at least one heat transmission pipe inserted into the heat exchange container, the liquid hydrogen being flowed into the heat transmission pipe; a tray which is disposed below the at least one heat transmission pipe in the interior of the heat exchange chamber and receives a liquefied gas and a deposited substance which are generated by the heat exchange in the interior of the heat exchange chamber; and a liquid discharge mechanism which discharges the liquefied gas from the tray to an outside area of the heat exchange chamber, wherein the heat exchanger is a heat exchanger of an intermediate medium type, which performs the heat exchange between the liquid hydrogen and the gas to be cooled, by use of the intermediate medium, wherein the heat exchange container includes an intermediate medium inlet which opens in an upper portion of the heat exchange chamber, and wherein the tray is disposed below a heat transmission pipe disposed in the vicinity of the intermediate medium inlet, of the at least one heat transmission pipe. 6. The heat exchanger according to claim 5 , wherein the intermediate medium is at least one of air, oxygen and nitrogen. 7. A heat exchanger comprising: a heat exchange container which has in an interior thereof a heat exchange chamber in which a gas to be cooled or an intermediate medium is filled, and performs heat exchange directly or indirectly between liquid hydrogen and the gas to be cooled, in an interior of the heat exchange chamber; a tray which is provided in the interior of the heat exchange chamber and receives a liquefied gas and a deposited substance which are generated by the heat exchange in the interior of the heat exchange chamber; and a liquid discharge mechanism which discharges the liquefied gas from the tray to an outside area of the heat exchange chamber, wherein the liquid discharge mechanism is configured to discharge the liquefied gas in a state in which the deposited substance is left in the tray, wherein the tray is disposed in a bottom portion of the heat exchange chamber, and wherein the liquid discharge mechanism includes a drain port which opens in the bottom portion of the heat exchange chamber so that the liquefied gas having overflowed out of the tray flows to the drain port, and a drain pipe connected to the drain port.
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