序号 专利名 申请号 申请日 公开(公告)号 公开(公告)日 发明人
1 貫流平蒸発器のチューブ配置 JP2018500533 2016-07-05 JP2018524547A 2018-08-30 シノイ,シュレッシュ・コタチャリー; マギー,ジェフリー・フレドリック
本明細書では、入口マニホールド(202)と、入口マニホールドと流体連通する入口ヘッダ(204)と、チューブ積層体であって、各チューブ積層体が、傾いた蒸発器チューブを含み、チューブ積層体が、入口ヘッダと流体連通し、傾いたチューブが、鉛直に対して90度より小さな度、または90度より大きな角度で傾き、各チューブ積層体が、複数の列と複数の段とに配置された複数のチューブを含み、第1の列の複数のチューブが、第2の列の複数のチューブから距離d2だけずらされ、第1の段の複数のチューブが、第2の段の複数のチューブから距離d1だけずらされ、d1が0.1d2から1000d2まで変わる、チューブ積層体(210)と、チューブ積層体と流体連通する出口ヘッダと、出口ヘッダと流体連通する出口マニホールドとを備える貫流蒸発器(200)が開示される。
【選択図】図3
2 JPS50201A - JP4010274 1974-04-10 JPS50201A 1975-01-06
3 TUBE ARRANGEMENT IN A ONCE-THROUGH HORIZONTAL EVAPORATOR EP16739053.3 2016-07-05 EP3320261A1 2018-05-16 SHENOY, Suresh, Kotachary; MAGEE, Jeffrey, Frederick
Disclosed herein is a once-through evaporator comprising an inlet manifold; one or more inlet headers in fluid communication with the inlet manifold; one or more tube stacks, where each tube stack comprises one or more inclined evaporator tubes; the one or more tube stacks being in fluid communication with the one or more inlet headers; where the inclined tubes are inclined at an angle of less than 90 degrees or greater than 90 degrees to a vertical; where each tube stack comprises a plurality of tubes arranged in a plurality of columns and a plurality of rows; where a plurality of tubes in a first column are offset from a plurality of tubes in a second column by a distance d2 and where a plurality of tubes in a first row are offset from a plurality of tubes in a second row by a distance d1; where d1 varies from 0.1d2 to 1000d2; one or more outlet headers in fluid communication with one or more tube stacks; and an outlet manifold in fluid communication with the one or more outlet headers.
4 상향 가스 유동을 위한 수직 덕트와 관련된 자연 순환 증기 발생기의 증발 사이클 KR1020167028615 2014-03-21 KR1020160130500A 2016-11-11 알바레스루이스프란시스코하비에르; 피사로프란시스코
본발명은, 상향가스유동 (14) 을위한수직덕트 (12) 와관련된자연순환증기발생기의증발사이클 (10) 에관한것으로, 본증발사이클은, 증기드럼 (16); 다운코머튜브와유동연통하고, 제 1 증발섹션 (28), 및상기제 1 증발섹션과병렬로연결되고상기제 1 증발섹션보다높은레벨에배치된제 2 증발섹션 (30) 을포함하는증발기 (20) 로서, 상기증발섹션각각은다수의병렬연결된증발튜브들 (32, 42) 을포함하고상기수직덕트에걸쳐실질적으로수평의통로 (34) 또는다수의직렬연결된실질적으로수평의통로들 (44, 44') 을구비하는, 상기증발기 (20); 및상기증발기와유동연통하는상향튜브 (22) 를포함한다. 본발명에따르면, 증발기사이클은상기증발기에서의물의유동을보조하기위해상기가스유동으로부터유래하는열 이외에다른외부구동력소스와관련되지않고, 상기증발기는, 상기제 1 및제 2 증발섹션들로부터상기상향튜브쪽으로증기와물을가져가기위한수직으로배치된출구매니폴드 (40) 를포함하고, 상기출구매니폴드는하측부분 (38) 및상기하측부분위의상측부분 (48) 을포함한다. 더욱이, 상기제 1 증발섹션은상기하측부분과직접유동연통하고, 상기제 2 증발섹션은상기상측부분과직접유동연통한다.
5 TUBE ARRANGEMENT IN A ONCE-THROUGH HORIZONTAL EVAPORATOR US14795036 2015-07-09 US20170010053A1 2017-01-12 Suresh Kotachary Shenoy; Jeffrey Fredrick Magee
Disclosed herein is a once-through evaporator comprising an inlet manifold; one or more inlet headers in fluid communication with the inlet manifold; one or more tube stacks, where each tube stack comprises one or more inclined evaporator tubes; the one or more tube stacks being in fluid communication with the one or more inlet headers; where the inclined tubes are inclined at an angle of less than 90 degrees or greater than 90 degrees to a vertical; where each tube stack comprises a plurality of tubes arranged in a plurality of columns and a plurality of rows; where a plurality of tubes in a first column are offset from a plurality of tubes in a second column by a distance d2 and where a plurality of tubes in a first row are offset from a plurality of tubes in a second row by a distance d1; where d1 varies from 0.1d2 to 1000d2; one or more outlet headers in fluid communication with one or more tube stacks; and an outlet manifold in fluid communication with the one or more outlet headers.
6 Large water leg boiler US3796194D 1973-04-11 US3796194A 1974-03-12 PETERSON E
This application covers a wet base boiler of the multi-section type, that is, a boiler in which the firebox is ''''surrounded'''' by water, but one of the legs of each section, i.e., the right leg, is made different in cross-sectional area from the left leg. Thus, the right legs may be made much larger in cross-sectional dimensions than the left legs, especially if the nipple port of the boiler is positioned above the right legs. This results in an improved quality of steam for boilers operated to generate steam. A tankless water coil may be added to the boiler, either positioned in the water chamber above the firebox or in the nipple port area. In either case, there will be a clockwise water movement throughout the sections of the boiler due to the difference in the sizes of the right and left legs, causing the water to move downwardly in all of the right legs and to move upwardly in all of the left legs. This circuital travel of the water through the legs of the various sections improves the heat transfer to the water flowing through the tankless coil.
7 Elastic fluid generator and the like US62851932 1932-08-12 US1965427A 1934-07-03 NERAD ANTHONY J
8 Automotive steam generator US18737727 1927-04-28 US1798550A 1931-03-31 MCKNIGHT RUFUS R; ARTHUR WEBBER
9 Steam generator US7287725 1925-12-03 US1793867A 1931-02-24 JULES NICLAUSSE; ALBERT NICLAUSSE
10 Boiler construction US11904826 1926-06-28 US1731957A 1929-10-15 GUSTAVE WELTER
11 Sectional water-tube boiler US13519626 1926-09-13 US1657266A 1928-01-24 GEORG MAAS
12 Steam generator US56080122 1922-05-13 US1503614A 1924-08-05 TRAVERS WILLIAM E
13 Steam boiler US64373123 1923-06-06 US1486888A 1924-03-18 GILBERT HAWLEY CHARLES
14 Steam generator US39769220 1920-07-20 US1450838A 1923-04-03 ALBERT BUSSAC GEORGES
15 Steam-boiler. US1914823747 1914-03-10 US1268549A 1918-06-04 STRENS EMILIO DE
16 Boiler US8091216 1916-02-28 US1258248A 1918-03-05 RITTS WILLIAM H
17 Steam-boiler of the vertical-water-tube type. US1914875263 1914-12-03 US1152135A 1915-08-31 WILKINSON HENRY
18 Steam-boiler. US1909484335 1909-03-18 US965883A 1910-08-02 DURBAN THOMAS E
19 Superheating-boiler. US1909481484 1909-03-05 US963257A 1910-07-05 STIRLING ALISON B
20 Water-tube boiler. US1909476790 1909-02-08 US936723A 1909-10-12 HUTCHISON RICHARD
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