Piston type thermodynamic gas compressor

A piston-type, thermal technology, applied in the field of thermal compressors, can solve problems such as complex structure, large irreversible loss, and increased cost, and achieve the effects of facilitating popularization and application, wide application range, and improving efficiency

Inactive Publication Date: 2007-04-25
王汝武
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

There are generally two ways of thermal compression, one is the steam injection compressor, the other is to use the steam turbine to directly drive the steam compressor. The ratio of the pressure drop of the low-pressure steam to the pressure rise of the low-pressure steam can have a higher efficiency within a certain range. Generally, the efficiency is low or the structure of the turbocompressor unit is complicated and the cost is increased. Generally, the steam injection thermal compressor The efficiency is 10-20%, the highest is 50%, and the efficiency of the turbo-compressor unit is generally only 40-60%. In this way, the thermal power station can use the fresh steam of the boiler as power to increase the steam extraction pressure of the st...

Method used

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  • Piston type thermodynamic gas compressor

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Embodiment Construction

[0015] Embodiments of the present invention are described in detail with reference to the accompanying drawings. As shown in Figure 1, two identical cylinders 1 are respectively provided with coaxially connected pistons 2, and the inner cavity of the cylinder 1 is divided into a low-pressure steam chamber and a high-pressure steam chamber by the piston 2, and the low-pressure steam chamber of the cylinder 1 The end face is provided with a low-pressure steam inlet and outlet, the upper part of the high-pressure steam chamber is provided with a high-pressure steam inlet, and the lower part is provided with a high-pressure steam outlet; the control system includes that the low-pressure steam source passes through a valve, and the pipeline passes through a one-way valve (10, 12 ) is connected to the low-pressure steam inlet of the two cylinders 1, and the high-pressure steam source is connected to the high-pressure steam inlet through valves (3, 5) through the electric control valv...

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Abstract

The invention relates to a thermal compressor for recycling low pressure steam in heating system, especially the thermal compressor for improving heating supply steam pressure in steam power plant, comprising two cylinders with inlet and outlet port of high and low pressure steam (1), coaxial piston (2) in each cylinder and control system for it. Compared with prior technology, in the invention according to the principle that low pressure steam is not contacted with high pressure steam, the pressure of low pressure steam rises by low pressure steam in compressed way of piston and two cylinders work in turn so that the press of low pressure steam rises to destined value, outlet one-way valve of low pressure steam is opened and the steam is transported into steam supply pipe by the control system. It is energy saving and efficiency improving with two to four times by experiment testifying. It is no constrained by the parameter of high and low pressure steam and wide application while it is provided with simple structure and low cost.

Description

technical field [0001] The invention relates to a thermodynamic steam compressor for recovering low-pressure steam in a steam heat supply system, in particular to a thermodynamic steam compressor for increasing the pressure of heating steam in a thermal power plant. Background technique [0002] Enterprises that use steam in the production process generally have exhaust steam emissions, which not only pollutes the environment but also wastes energy. In order to recycle the exhaust steam, it is necessary to increase the pressure of the exhaust steam. In the past, there were two methods of increasing vapor pressure, mechanical compression and thermal compression. Mechanical compression consumes electricity, while thermal compression directly consumes heat energy. The direct consumption of thermal energy is more economical than the consumption of electrical energy, because the conversion process from thermal energy to electrical energy is reduced and the conversion loss is re...

Claims

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Application Information

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IPC IPC(8): F04B31/00F04B35/02F04B49/22
Inventor 王汝武
Owner 王汝武
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