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METHOD AND DEVICE FOR IMPROVING AIR-CONDITIONING SYSTEM APPLYING ALL-WEATHER SOLAR ENERGY HEAT SUPPLY

机译:采用全天候太阳能供热的空调系统的改进方法和装置

摘要

A method for improving an air-conditioning system applying an all-weather solar energy heat supply. The method comprises: in an air-conditioning system comprising an original single-function cooling air-conditioning main apparatus (1) combined with a cooling tower (2) and a boiler (3), utilizing a plate heat exchanger (9), a solar energy heat collecting plate (13) and an energy storing tank (14) and adding recycling pipes; absorbing heat of air in winter by utilizing the cooling tower (2); absorbing solar energy heat by utilizing the solar energy heat collecting plate (13) and transferring the heat to the plate heat exchanger (9); absorbing heat of an antifreeze solution by utilizing the single-function cooling air-conditioning main apparatus (1); and configuring the plate heat exchanger (9) to form a secondary loop to prevent the antifreeze solution from freezing, thus supplying heat to an interior without starting the boiler (3) when the outside temperature is above five degrees. The method adds a function of supplying heat in winter without changing an original system and while maintaining operational performance of the original system used in summer, improves the utilization of the single-function cooling air-conditioning main apparatus (1) and the cooling tower (2), and greatly reduces a usage time of the boiler (3), thereby improving energy utilization and reducing environmental contamination.
机译:一种用于改进全天候太阳能供热的空调系统的方法。该方法包括:在包括原始的单功能冷却空调主设备(1),冷却塔(2)和锅炉(3)的空调系统中,利用板式热交换器(9),太阳能集热板(13)和储能罐(14),并增加回收管;利用冷却塔(2)在冬天吸收空气中的热量;利用太阳能集热板(13)吸收太阳能热量并将热量传递给板式热交换器(9)。利用单功能冷却空调主体装置(1)吸收防冻液的热量。构造板式热交换器(9)以形成次级回路以防止防冻剂溶液冻结,从而当外部温度高于五度时,无需启动锅炉(3)就向内部提供热量。该方法增加了在不改变原有系统的情况下在冬季供热的功能,同时保持了夏季使用的原有系统的运行性能,提高了单功能冷却空调主机(1)和冷却塔( 2),大大减少了锅炉(3)的使用时间,从而提高了能源利用率,减少了环境污染。

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