Oil field waste heat energy power system based on gasification of cellular cavity
A power system and exhaust gas technology, applied in indirect heat exchangers, heat exchanger types, machines/engines, etc., can solve the problems of small external waste heat absorption rate, small amount of work, unstable working medium gasification temperature, etc. Improve gasification efficiency and condensation efficiency, stabilize gasification temperature and working medium flow rate, and avoid the effect of unstable turbine speed
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Embodiment 1
[0081] Embodiment one (such as figure 1 Shown): An oilfield waste gas thermal energy power system based on honeycomb cavity gasification, including a heat collector 1, a gasification device 2, a turbine 3, an oilfield waste gas combustion device 4, a condensation device 5, a circulating pipeline 6, and a circulating working medium 7 And the one-way hydraulic pump 9, the gasification device 2, the turbine 3, the condensing device 5 and the one-way hydraulic pump 9 realize the circulation communication through the circulation pipeline 6 in sequence. Externalization device 2;
[0082] (Such as figure 2 As shown), the oilfield exhaust gas combustion device 4 includes exhaust gas inlet 41, oilfield exhaust gas induced draft fan 42, exhaust gas combustion chamber 43, continuous ignition device 44 and hot gas discharge pipe 45, air inlet 41, exhaust gas combustion chamber 43 and hot gas discharge The pipes 45 are connected in turn, the oil field exhaust gas induced draft fan 42 is...
Embodiment 2
[0093] Embodiment two (such as Figure 9 shown): The difference from Embodiment 1 is that two layers of upper cover protruding rings 111 are distributed on the lower part of the upper cover 11 of the heat collecting device 1, and two layers of lower cover protruding rings are distributed on the upper part of the lower cover 12 of the heat collecting device 1. The ring 121, the upper cover protruding ring 111 and the lower cover protruding ring 121 are staggered.
[0094] By conducting experiments on the thermal energy power system of oil field waste gas based on honeycomb cavity gasification in the above-mentioned embodiment 2, the oil field waste gas is introduced into the oil field waste gas combustion device 4, and the combustion temperatures in the oil field waste gas combustion device 4 are respectively 120°C, 150°C, and 200°C. °C, 250 °C, 300 °C, 400 °C, the flow rate of the working medium in the circulation pipe is adjusted according to the operation stability of the oi...
Embodiment 3
[0095] Embodiment three (such as Figure 10 Shown): The difference from Embodiment 1 is that the lower part of the upper cover 11 of the heat collecting device 1 is provided with a three-layer upper cover protruding ring 111, and the upper part of the lower cover 12 of the heat collecting device 1 is distributed with a three-layer lower cover protruding ring 121 , the upper cover protruding ring 111 and the lower cover protruding ring 121 are staggered.
[0096] By conducting experiments on the thermal energy power system of oil field waste gas based on honeycomb cavity gasification in the third embodiment above, the oil field waste gas is introduced into the oil field waste gas combustion device 4, and the combustion temperatures in the oil field waste gas combustion device 4 are respectively 120°C, 150°C, and 200°C. °C, 250 °C, 300 °C, 400 °C, the flow rate of the working medium in the circulation pipe is adjusted according to the operation stability of the oil field waste g...
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