Thermal power plant heat supply and steam extraction overbottom pressure utilization system with back pressure turbine

A steam turbine and back pressure technology, which is applied in the field of thermal power plant heating and extraction residual pressure utilization system, can solve the problems of large investment and loss, and achieve the effect of short investment payback period, small investment and low technical risk

Inactive Publication Date: 2014-10-29
XI AN JIAOTONG UNIV
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AI Technical Summary

Problems solved by technology

Since the design end difference of the heating network heater is generally about 8°C, the above-mentioned heating extraction pressure is much higher than the heating system needs, and it is often necessary to throttle in actual operation, causing great losses
In order to efficiently utilize the heat energy of heat supply and extraction, some thermal power plants u

Method used

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  • Thermal power plant heat supply and steam extraction overbottom pressure utilization system with back pressure turbine

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Embodiment Construction

[0017] The present invention will be described in further detail below in conjunction with the accompanying drawings.

[0018] see figure 1 , the present invention includes a back-pressure steam turbine 1 connected to a heat supply and extraction pipeline, the steam exhaust port of the back-pressure steam turbine 1 is connected to the heat release side inlet of a vacuum heat network heater 2 through a pipeline, and the vacuum heat network heater 2. A heat well 10 is installed at the outlet of the heat release side. The drain of the vacuum heating network heater 2 returns to the thermal system from the heat well 10 through the pipeline and the drainage pump 3 installed on the pipeline. The heat absorption of the vacuum heating network heater 2 The inlet on the side is connected to the return water of the heat network through the pipeline and the heat network circulating water pump 4 installed on the pipeline, and the outlet of the heat absorption side of the vacuum heat network...

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Abstract

A thermal power plant heat supply and steam extraction overbottom pressure utilization system with a back pressure turbine comprises the back pressure turbine connected with a heat supply and steam extraction pipeline. A steam exhaust port of the back pressure turbine is connected with an inlet in a heat releasing side of a vacuum type heating network heater, drain water of the vacuum type heating network heater flows through an outlet in the heat releasing side of the vacuum type heating network heater to return back to a thermodynamic system through a pipeline, an inlet in the heat absorbing side of the vacuum type heating network heater is connected with heating network returned water through a pipeline, and an outlet in the heat absorbing side of the vacuum type heating network heater is connected with heating network supplied water through a pipeline. The overbottom pressure produced through heat supply and steam extraction of a thermal power plant are recycled through the back pressure turbine to generate electricity, and the steam discharged through the back pressure turbine is supplied to the heating network heater to form a heat supply and steam overtbottom pressure recycling system. The system can efficiently utilize the thermal energy of heat supply and steam extraction, the generating capacity of a heat supply unit is increased, economic benefits of the system are improved, the coal consumption rate of the unit can be obviously reduced, and the system has obvious economic benefits and energy saving and emission reducing effects.

Description

technical field [0001] The invention relates to a system for utilizing the residual pressure of heat supply and extraction steam in a thermal power plant, in particular to a system for utilizing the residual pressure of heat supply and extraction steam in a thermal power plant using a back pressure steam turbine. Background technique [0002] The heating unit converts the chemical energy of the fuel into high-grade thermal energy for power generation, and at the same time supplies heat to the outside with the low-grade thermal energy that has done work in the heating turbine, thereby realizing cascaded utilization of thermal energy and improving energy utilization efficiency . By the end of 2009, the installed capacity of cogeneration units in my country had reached 90.59 million kilowatts, accounting for more than 10% of my country's total installed power capacity. At the same time, due to the support of relevant national policies, the development momentum of cogeneration i...

Claims

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Application Information

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IPC IPC(8): F01K17/02F24D1/04
CPCY02E20/14
Inventor 刘继平邢秦安严俊杰种道彤刘明王进仕陈伟雄
Owner XI AN JIAOTONG UNIV
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