SOLID OXIDE TYPE FUEL BATTERY DEVICE

PROBLEM TO BE SOLVED: To provide a solid oxide type fuel battery device that can reduce pressure loss of fluid passing through a fluid treatment device for treating fluid contributing to power generation in a fuel battery module.SOLUTION: A solid oxide type fuel battery device 1 includes a fluid tre...

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Bibliographic Details
Main Authors MATSUO TAKUYA, TSUBOI FUMIO, AKAGI YOSUKE
Format Patent
LanguageEnglish
Japanese
Published 01.09.2016
Subjects
Online AccessGet full text

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Summary:PROBLEM TO BE SOLVED: To provide a solid oxide type fuel battery device that can reduce pressure loss of fluid passing through a fluid treatment device for treating fluid contributing to power generation in a fuel battery module.SOLUTION: A solid oxide type fuel battery device 1 includes a fluid treatment device 140 for treating fluid contributing to power generation in a fuel battery module. The fluid treatment device includes plural particulate filling materials 182, 186 which are filled in predetermined areas R1, R2 in a case 141 and change the state of fluid passing through the inside of the case, and filling material flow-out preventing plates 145-148 which form the predetermined areas for holding the plural filling materials together with a partition plate provided to the inner wall of the case or inside the case and prevent the filling materials from flowing out from the predetermined areas. Slits 145a-148a of the filling material flow-out preventing plates are formed to extend to connection portions 190, 198, 204, 206, 210, 212 which are connected and fixed to the inner wall portion of the case.SELECTED DRAWING: Figure 10 【課題】燃料電池モジュールにおける発電に関与する流体を処理する流体処理装置を通過する流体の圧力損失を低減させることができる固体酸化物形燃料電池装置を提供する。【解決手段】本発明の固体酸化物形燃料電池装置1は、燃料電池モジュールにおける発電に関与する流体を処理する流体処理装置140を有し、この流体処理装置は、ケース141内の所定領域R1,R2内に充填されてケース内を通過する流体の状態を変化させる複数の粒子状の充填材182,186と、ケースの内壁部又はケース内に設けられた仕切り板とにより複数の充填材が保持される所定領域を形成すると共に充填材が所定領域から流出することを防止する充填材流出防止板145〜148と、を備え、この充填材流出防止板のスリット145a〜148aは、ケースの内壁部に接続して固定される接続部190,198,204,206,210,212まで延びるように形成されている。【選択図】図10
Bibliography:Application Number: JP20150035250