Abstract PURPOSE:To stabilize the transfer of heat energy in a gas with a heat medium as well as to generate power continuously in a stable state with an intermittent feed heat source by equalizing a temperature rise in cooling water. CONSTITUTION:Simultaneously with melting slag being led into a blow-making device 2 from a blast furnace 1, a cooling water regulating valve 16 is opened, and cooling water is fed to the blow-making device 2 according to quantity or discharge of the melting slag and an exhaust pattern. The cooling is heated and fed to a stirring tank 3 together with the slag, and when it reaches to a certain amount, a level switch 17 operates whereby a water granulating pump 4 stops any operation of the blow-making device 2 till slurry inside the stirring tank 3 comes to being below a certain level, and feeds the slurry to a dewatering bin 5. Here, the slag is taken out, and warm water is led into a receiving tank 12. This warm water flow is subject to intermittent variations but regulated to the warm water flow averaged, driving a warm water pump 18, while the cooling water heat-exchanged at a heat exchanger 13 for dichlorodifluoromethane is returned to the blow-making device 2 by way of a water feed pipe 11. The receiving tank 12 precipitates dust in the warm water.
AbstractList PURPOSE:To stabilize the transfer of heat energy in a gas with a heat medium as well as to generate power continuously in a stable state with an intermittent feed heat source by equalizing a temperature rise in cooling water. CONSTITUTION:Simultaneously with melting slag being led into a blow-making device 2 from a blast furnace 1, a cooling water regulating valve 16 is opened, and cooling water is fed to the blow-making device 2 according to quantity or discharge of the melting slag and an exhaust pattern. The cooling is heated and fed to a stirring tank 3 together with the slag, and when it reaches to a certain amount, a level switch 17 operates whereby a water granulating pump 4 stops any operation of the blow-making device 2 till slurry inside the stirring tank 3 comes to being below a certain level, and feeds the slurry to a dewatering bin 5. Here, the slag is taken out, and warm water is led into a receiving tank 12. This warm water flow is subject to intermittent variations but regulated to the warm water flow averaged, driving a warm water pump 18, while the cooling water heat-exchanged at a heat exchanger 13 for dichlorodifluoromethane is returned to the blow-making device 2 by way of a water feed pipe 11. The receiving tank 12 precipitates dust in the warm water.
Author NISHI NORIAKI
YAMAGUCHI MOTONORI
GOTOUDA HIDEMI
TERADA YUUICHI
HOSODA SHIROU
UMAGOE ITSUO
KOSHIO FUMIO
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– fullname: UMAGOE ITSUO
– fullname: NISHI NORIAKI
– fullname: HOSODA SHIROU
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Snippet PURPOSE:To stabilize the transfer of heat energy in a gas with a heat medium as well as to generate power continuously in a stable state with an intermittent...
SourceID epo
SourceType Open Access Repository
SubjectTerms BLASTING
CHEMISTRY
CLIMATE CHANGE MITIGATION TECHNOLOGIES IN THE PRODUCTION ORPROCESSING OF GOODS
ENGINE PLANTS IN GENERAL
ENGINE PLANTS NOT OTHERWISE PROVIDED FOR
ENGINES USING SPECIAL WORKING FLUIDS OR CYCLES
GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS
HEATING
LIGHTING
MACHINES OR ENGINES IN GENERAL
MANUFACTURE OF IRON OR STEEL
MECHANICAL ENGINEERING
METALLURGY
METALLURGY OF IRON
STEAM ACCUMULATORS
STEAM ENGINE PLANTS
STEAM ENGINES
TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINSTCLIMATE CHANGE
WEAPONS
Title GRANULATED SLAG WASTE HEAT RECOVERY GENERATING SET
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