Thermodynamic system for comprehensive utilization of latent heat of exhaust steam of steam turbine

A thermal system and steam turbine technology, applied in the field of steam turbines, can solve problems such as waste, achieve the effects of ensuring water production rate, reducing investment costs and operating costs, and alleviating the shortage of fresh water resources

CN105110400BActive Publication Date: 2017-10-24POWERCHINA SEPCO1 ELECTRIC POWER CONSTR CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Publication Date
2017-10-24

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Abstract

The invention discloses a turbine dead steam latent heat comprehensive utilization thermodynamic system which comprises a turbine, generators and a condenser hot well, wherein an exhaust opening at one end of the turbine is connected with the condenser hot well; the condenser hot well is connected with a condenser; the condenser is connected with a condensed water distributor; one end of the condenser is connected with a low-temperature multi-effect structure; the other end of the condenser is connected with seawater; seawater is desalinated through the low-temperature multi-effect structure; the low-temperature multi-effect structure is connected with the condensed water distributor and a concentrated seawater discharging pipeline; the condensed water distributor discharges part of fresh water; an extracting opening is formed in the left side of the turbine; the extracting opening and the exhaust opening are connected with the air inlet of a steam ejector respectively; the air outlet of the steam ejector is connected with the air inlet of the low-temperature multi-effect structure; mixed steam is adopted as a heat source for seawater desalination. The turbine dead steam latent heat comprehensive utilization thermodynamic system utilizes the condenser dead steam latent heat resource and solves the problems that a power plant needs to invest a lot of fund to establish a cooling device and waste is caused by electric energy application.
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Description

technical field

[0001] The invention relates to the technical field of steam turbines, in particular to a thermodynamic system for comprehensive utilization of latent heat of exhaust steam of steam turbines used in conjunction with steam turbines, and is suitable for comprehensive utilization of latent heat of exhaust steam of steam turbines in thermal power stations. Background technique

[0002] Energy is the material basis for the survival of human beings. The development of human society is inseparable from high-quality energy and advanced science and technology. In today's world, the development of energy is a common concern of the whole world and all mankind. It restricts and affects the world's social economy. important issue of development. At present, the world is facing an energy crisis, and China's energy crisis is even more serious. At the same time, the world's fresh water resources are seriously scarce, and about 1 / 3 of the world's people live in areas with mod...

Examples

Embodiment Construction

[0018] In order to better understand the present invention, the implementation manner of the present invention will be explained in detail below in conjunction with the accompanying drawings.

[0019] Such as figure 1 As shown, a thermodynamic system for comprehensive utilization of latent heat of steam turbine exhaust, including steam turbine 1, generator 2, condenser hot well 3, condenser 4, low-temperature multi-effect device-5, feed pump-6, low-temperature multi-effect device Effect device two 7, feed pump two 8, low-temperature multi-effect device three 9, condensed water distributor 10, steam turbine 1 is connected with generator 2, and the exhaust port at one end of said steam turbine 1 is connected with condenser hot well 3, so The condenser hot well 3 is connected with the condenser 4, the condenser 4 is connected with the condensed water distributor 10, one end of the tube bundle of the condenser 4 is connected with the low-temperature multi-effect structure, and the...