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CO-GENERATION OF POWER AND COOLING FROM SOLAR HEAT AND BIO-WASTE (BIOGAS)/INDUSTRIAL WASTE

机译:太阳能和生物废料(BIOGAS)/工业废料的热电联产和冷却

摘要

A power generation system consists with vacuum tube (1 ), parabolic reflector (2), heat pipe (3), TE module (4), heat exchanger (5), storage tank (6), DC to AC converter (7) and mechanism and electronic tracking system (8); and hybrid system additionally consists with header tank (9), insulated heat pipe (10) and burner (11 ). The parabolic reflectors (2) collect thermal energy in the vacuum tube (1); the heat is transferred to the hot junction of the TE module (4) by means of heat pipe (3); the cold junction is maintained by water/fluid flow in the heat exchanger (5) attached to it; the heat extracted at the cold junction by the heat exchanger (5) is taken to the storage tank (6); the DC to AC converter (7) get desired input from the temperature difference of two junctions of the TE module (4); the sun tracking system (8) is mounted on the parabolic reflectors (2) to concentrate on the vacuum tube (1 ) the received solar energy throughout the day; the header tank (9) collects auxiliary heat by insulated heat pipes (10) from the another directional burner (11 ). In the case of low power solar energy and at night, hybrid system uses waste bio-mass or bio gas or industrial waste to generate the power.
机译:发电系统包括真空管(1),抛物面反射器(2),热管(3),TE模块(4),热交换器(5),储罐(6),DC / AC转换器(7)和机构和电子跟踪系统(8);混合动力系统还包括总箱(9),绝热管(10)和燃烧器(11)。抛物面反射器(2)在真空管(1)中收集热能。热量通过热管(3)传递到TE模块(4)的热结点;通过连接在其上的热交换器(5)中的水/流体流来维持冷接点;热交换器(5)在冷端提取的热量被带到储罐(6)。 DC-AC转换器(7)从TE模块(4)两个结的温差中获得所需的输入;太阳跟踪系统(8)安装在抛物面反射器(2)上,以将全天接收的太阳能集中在真空管(1)上;集管箱(9)通过绝热管(10)从另一个定向燃烧器(11)收集辅助热量。在低功率太阳能和夜间的情况下,混合动力系统使用废物生物质或沼气或工业废物来发电。

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