Automatic steam pressure generator
원문보기
IPC분류정보
국가/구분 |
United States(US) Patent
등록
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국제특허분류(IPC7판) |
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출원번호 |
US-0876366
(1978-02-09)
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발명자
/ 주소 |
- Kincaid
- Jr. Elmo (1160 Ashley Dr. Clarkston WA 99403)
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인용정보 |
피인용 횟수 :
7 인용 특허 :
0 |
초록
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An automatic steam pressure generator comprises compression means to compress ambient air, power means to power the compression means, an air receiving tank to store the compressed air, continuous combustion burner means to burn fuel with the compressed air providing a high pressure, high temperatur
An automatic steam pressure generator comprises compression means to compress ambient air, power means to power the compression means, an air receiving tank to store the compressed air, continuous combustion burner means to burn fuel with the compressed air providing a high pressure, high temperature combustion product, water injection means to inject water into the combustion products providing a lower temperature mixture to steam and combustion products, and a steam storage tank to store the mixture of steam and combustion products. Steam supply control means and burner control means are responsive to the pressure in the steam storage means regulating the amount of the mixture that is produced in order to provide automatically a relatively constant pressure supply of the mixture.
대표청구항
▼
An automatic steam pressure generator comprising: (a) compression means configured for compressing ambient air, (b) power means operatively connected to the compression means and configured for powering thereof, (c) heat exchanger means configured for receiving the compressed air from the compressio
An automatic steam pressure generator comprising: (a) compression means configured for compressing ambient air, (b) power means operatively connected to the compression means and configured for powering thereof, (c) heat exchanger means configured for receiving the compressed air from the compression means and transferring heat therefrom to preheat injection water, (d) an air receiving tank joined to the compression means for receiving the compressed air after it leaves the heat exchanger means, (e) a plurality of continuous combustion burner means connected to the air receiving tank and configured to burn fuel, supplied thereto with the compressed air, producing high pressure, high temperature combustion products, (f) water injection means joined to the burner means and configured for injecting the preheated injection water into the combustion products providing a lower temperature mixture of steam and combustion products, (g) steam storage means connected to the water injection means for storing the mixture of steam and combustion products, (h) each of said continuous combustion burner means including burner automatic control means, configured for activating its associated burner means and for controlling the amount of fuel and compressed air supplied to said burner means, for controlling the output of said burner means, the control means being responsive to the pressure in the air receiving tank, said burner automatic control means comprising: (1) a cylinder open at one end to the air receiving tank, and having a port defined therein, said port opening to said burner means, (2) a piston configured for free sliding fit within the cylinder, said piston being large enough to sealingly cover and close said port, (3) a needle valve located within the burner means having a gear located on its terminal portion, and an orifice located at the end of the burner means in alignment with the needle valve, (4) the needle valve being threaded into the burner means in a manner such that turning the needle valve causes it to be positionable in the burner means in a manner allowing opening and closing of the orifice, (5) a piston rod extending from the piston and having gear teeth positioned in a manner that movement of the piston away from the air receiving tank causes the needle valve to rotate in a direction opening the orifice and movement of the piston toward the air receiving tank causes the needle valve to rotate in a direction closing the orifice, (6) a spring normally urging the piston to a position wherein the piston covers the port and said gear teeth on the piston rod cause the needle valve to close said orifice, (7) adjustment means engaging the spring in the cylinder in a manner allowing setting the spring tension for allowing the port and orifice to be opened at a predetermined pressure, and thereafter to be opened proportional to the pressure of the air in the air receiving tank, and (8) ignition means associated with each of said burner means.
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Beliveau, Clint A.; Elliot, Scott C.; Popham, Vernon Wade, Hydrogen-producing fuel processing systems and fuel cell systems with a liquid leak detection system.
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Beliveau, Clint A.; Elliot, Scott C.; Popham, Vernon Wade, Hydrogen-producing fuel processing systems with a liquid leak detection system.
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