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Calculation method for determining refrigerating capacity and smoke discharge parameter of smoke single-effect type lithium bromide refrigerating machine

A calculation method, lithium bromide technology, applied in refrigerators, refrigeration components, refrigeration and liquefaction, etc., can solve problems such as matching and difficult cooling capacity

Inactive Publication Date: 2018-05-11
林振娴
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  • Abstract
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  • Application Information

AI Technical Summary

Problems solved by technology

Under certain working conditions, the cooling capacity of the flue gas single-effect lithium bromide refrigerator is difficult to match the project load demand

Method used

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  • Calculation method for determining refrigerating capacity and smoke discharge parameter of smoke single-effect type lithium bromide refrigerating machine
  • Calculation method for determining refrigerating capacity and smoke discharge parameter of smoke single-effect type lithium bromide refrigerating machine
  • Calculation method for determining refrigerating capacity and smoke discharge parameter of smoke single-effect type lithium bromide refrigerating machine

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Embodiment Construction

[0162] The present invention will be further described below in conjunction with the accompanying drawings.

[0163] like figure 1 Shown is a calculation method for determining the cooling capacity and smoke exhaust parameters of a flue gas single-effect lithium bromide refrigerator. The process includes the collection and measurement of S1 related parameters, the selection of S2 refrigerator design parameters, and the S3 thermodynamic cycle point parameters. Calculation of S4 equipment load calculation and determination of cooling capacity. The calculation is as follows:

[0164] Firstly, the relevant parameters are collected and measured, and various input parameters of the flue gas single-effect lithium bromide refrigerator are obtained through instrument measurement and sampling analysis, including:

[0165] According to the actual situation of the project, collect the flue gas composition of the heat source, and calculate the specific heat of the flue gas

[0166] Ac...

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Abstract

The invention discloses a calculation method for determining the refrigerating capacity and smoke discharge parameter of a smoke single-effect type lithium bromide refrigerating machine. The calculation method is designed mainly for the problems that heat source parameters of smoke single-effect type lithium bromide refrigerating machines are different, standard design for the lithium bromide refrigerating machines is difficult to achieve, independent design is conducted generally according to heat sources and users, and a large amount of manpower and time need to be consumed to conduct complicated thermodynamic cycle calculation. The calculation method for the refrigerating capacity and smoke discharge parameter of the smoke single-effect type lithium bromide refrigerating machine comprises the steps of collection and measurement of relevant parameters, selection of design parameters of the refrigerating machine, calculation of parameters of thermodynamic cycle points, calculation ofthe equipment load and determination of the refrigerating capacity. According to the calculation method, the refrigerating capacity and work smoke outlet temperature of the smoke single-effect type lithium bromide refrigerating machine can be calculated accurately, a basis is provided for the configuration scheme of the smoke single-effect type lithium bromide refrigerating machine in a project, then thermal efficiency of the whole project system can reach the maximum, and finally the purposes of energy saving and consumption reducing are achieved.

Description

technical field [0001] The invention relates to refrigeration equipment in the field of thermal energy engineering, in particular to a calculation method for the cooling capacity and smoke exhaust parameters of a flue gas single-effect lithium bromide refrigerator. Background technique [0002] Natural gas distributed energy is a comprehensive energy utilization system distributed at the user end. It is mainly based on gaseous fuel and supplemented by renewable energy. It generates electricity through gas turbines or internal combustion engines, and passes the tail flue gas through energy conversion equipment to produce the heat energy utilization forms required by users, such as steam, domestic hot water, heating hot water or Heat energy for refrigeration, etc.; according to the principle of "temperature matching, cascade utilization", the comprehensive energy utilization rate of the natural gas distributed energy system is greater than 70%. The development of natural gas ...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): F25B15/06
CPCF25B15/06F25B2500/19Y02B30/62Y02A30/27
Inventor 林振娴赵志渊
Owner 林振娴
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