首页> 外国专利> A method for improving thermal efficiency of a central hot medium buffered supply installation equipped with a storage heater wherein the heat source is a low-temperature boiler heater, and the central hot medium buffered supply installation

A method for improving thermal efficiency of a central hot medium buffered supply installation equipped with a storage heater wherein the heat source is a low-temperature boiler heater, and the central hot medium buffered supply installation

机译:一种用于提高配备有储热器的中央热介质缓冲供应设备的热效率的方法,其中,热源是低温锅炉加热器,并且该中央热介质缓冲供应设备是

摘要

The method outlined in the invention relates to lowering the temperature of the working medium in addition to the working medium return (b) , in a controlled manner and dependent on the maximum temperature difference between working medium supply ( a ) and working medium return (b) going back to heat source ( B ), going back to the heat source ( B ), cooling thereof with a cooler medium flow going through an additional external heat exchanger ( 2 ), pumped by a cold medium circulation pump ( 4 or 4a ) from the bottom of storage heater ( 1 ), filled with hot buffered medium, or from a supply connection ( 1b 1 ) feeding the storage heater tank ( 1 ) with buffered medium. To reduce the working medium temperature in the working medium return (b) going to the heat source ( B ) is controlled by a controller ( 6 ). The controller input signals being signals from first ( 6a ), second ( 6b ) and third ( 6c ) temperature sensor, used to collect data from the first hydraulic circuit ( 2a ) of the additional external heat exchanger (2) connected in parallel to the working medium return (b) going from storage heater ( 1 ) heat exchanger (1a) to the heat source ( B ), the second hydraulic circuit ( 2b ) of additional external heat exchanger ( 2 ), and from the working medium supply ( a ) to the heat exchanger (1a) of storage heater ( 1 ), respectively. Quantity flow control is used for the flow of the cold medium in the process of cooling the returning working medium.
机译:本发明概述的方法涉及以受控方式并且取决于工作介质供应(a)和工作介质回流(b)之间的最大温差来降低工作介质回流(b)之外的工作介质的温度。 )回到热源(B),再回到热源(B),用较冷的介质流进行冷却,该介质流通过附加的外部热交换器(2),由外部冷媒循环泵(4或4a)泵送从存储加热器(1)的底部填充热的缓冲介质,或从供应接口(1b 1)向存储加热器罐(1)提供缓冲介质。为了降低工作介质中的工作介质温度,通过控制器(6)控制去往热源(B)的回流管(b)。控制器输入信号是来自第一温度传感器(6a),第二温度传感器(6b)和第三温度传感器(6c)的信号,用于从与之并联的附加外部热交换器(2)的第一液压回路(2a)收集数据。从存储加热器(1)热交换器(1a)到热源(B),附加外部热交换器(2)的第二液压回路(2b)和工作介质供应(a)的工作介质返回(b) )分别向存储加热器(1)的热交换器(1a)输送。在冷却返回的工作介质的过程中,流量控制用于冷介质的流动。

著录项

  • 公开/公告号EP2602559B1

    专利类型

  • 公开/公告日2017-11-01

    原文格式PDF

  • 申请/专利权人 KURZAWSKI PAWEL;

    申请/专利号EP20120185517

  • 发明设计人 KURZAWSKI PAWEL;

    申请日2012-09-21

  • 分类号F24D17;F24D19/10;

  • 国家 EP

  • 入库时间 2022-08-21 14:07:30

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