Hydrogen gas cooling method and hydrogen gas cooling system
US-2016131434-A1 · May 12, 2016 · US
US10746473B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10746473-B2 |
| Application number | US-201715459784-A |
| Country | US |
| Kind code | B2 |
| Filing date | Mar 15, 2017 |
| Priority date | Mar 17, 2016 |
| Publication date | Aug 18, 2020 |
| Grant date | Aug 18, 2020 |
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A stacked type fluid heater includes a first low temperature layer with low temperature side flow passages into which target medium to be heated is introduced, a first high temperature layer with high temperature side flow passages into which heating medium for heating the target medium to be heated is introduced, a second high temperature layer with high temperature side flow passages into which the heating medium is introduced. The target medium has a temperature lower than the freezing point of the heating medium. The first high temperature layer includes the high temperature side flow passages located adjacent each other via a metal material of the first high temperature layer. The high temperature side flow passages of the first high temperature layer and those of the second high temperature layer are adjacent each other via a metal material of the second high temperature layer.
Opening claim text (preview).
What is claimed is: 1. A stacked type fluid heater comprising: a first low temperature layer on which a plural number of low temperature side flow passages is formed to introduce therein target medium to be heated; and a first high temperature layer adjacent to the first low temperature layer, on which a plural number of high temperature side flow passages is formed to introduce therein heating medium for heating the target medium to be heated, wherein: a temperature of the target medium to be heated introduced to the plural number of low temperature side flow passages is lower than a freezing point of the heating medium; the plural number of high temperature side flow passages are arranged to be adjacent to one another through a component of the first high temperature layer; and further comprising: a second high temperature layer adjacent to the first high temperature layer, on which a plural number of high temperature side flow passages is formed to introduce therein heating medium which is a same fluid as said heating medium to be introduced to the flow passages of the first high temperature layer; the plural number of high temperature side flow passages of the first high temperature layer and the plural number of high temperature side flow passages of the second high temperature layer are arranged to be adjacent to one another through at least one of a component of the first high temperature layer and a component of the second high temperature layer; a third high temperature layer adjacent to the second high temperature layer, on which a plural number of high temperature side flow passages is formed to introduce therein heating medium which is a same fluid as said heating medium to be introduced to the flow passages of the high temperature layer; the plural number of high temperature side flow passages of the second high temperature layer and the plural number of high temperature side flow passages of the third high temperature layer are arranged to be adjacent to one another through at least one of a component of the second high temperature layer and a component of the third high temperature layer; a second low temperature layer adjacent to the third high temperature layer, on which a plural number of low temperature side flow passages is formed to introduce therein target medium to be heated which is a same fluid as said target medium to be heated; and a high temperature side supply header that supplies heating medium into the plural number of high temperature side flow passages of the first high temperature layer, the plural number of high temperature side flow passages of the second high temperature layer, and the plural number of high temperature side flow passages of the third temperature layer; wherein a thickness of the second high temperature layer is smaller than a thickness of the first high temperature layer and a thickness of the third high temperature layer and a cross sectional area of each of the high temperature side flow passages formed on the second high temperature layer is smaller than that of each of the high temperature side flow passages formed on the first high temperature layer and the third high temperature layer. 2. The stacked type fluid heater according to claim 1 , wherein the second high temperature layer comprises a second low temperature layer laminated thereon, on which a plural number of low temperature side flow passages are formed to introduce therein target medium to be heated which is the same fluid as said target medium to be heated. 3. The stacked type fluid heater according to claim 1 , wherein a temperature of the target medium to be heated to be introduced into the plural number of low temperature side flow passages is −40° C. or less.
Heat-exchange apparatus having stationary plate-like or laminated conduit assemblies for both heat-exchange media, the media being in contact with different sides of a conduit wall {(F28F3/083, F28F3/086 take precedence)} · CPC title
by diffusion bonding · CPC title
Multi-circuit heat-exchangers, e.g. integrating different heat exchange sections in the same unit or heat-exchangers for more than two fluids · CPC title
the plates having openings therein for both heat-exchange media · CPC title
Control arrangements or safety devices specially adapted for heat-exchange or heat-transfer apparatus (control arrangements in general G05) · CPC title
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