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    • 3. 发明公开
    • METHOD FOR CONTROLLING HEAT TRANSFER BETWEEN A LOCAL COOLING SYSTEM AND A LOCAL HEATING SYSTEM
    • 用于控制局部冷却系统与局部加热系统之间的传热的方法
    • EP3273168A1
    • 2018-01-24
    • EP16180064.4
    • 2016-07-19
    • E.ON Sverige AB
    • ROSÉN, Per
    • F24D10/00F24F5/00F24D19/10
    • F24D10/003F24D19/1048F24D2200/123F24D2200/13F24F5/0003F24F11/83Y02B30/17Y02E20/14
    • The disclosure relates to a method for controlling heat transfer between a local cooling system (40, 40') and a local heating system (30, 30'), the method comprising:
      determining a local energy consumption need (LCC1, LCC2) of the local cooling system (40, 40');
      determining a local energy consumption need (LHC1, LHC2) of the local heating system (30, 30');
      controlling, based on the local energy consumption need (LCC1, LCC2) of the local cooling system (40, 40') and the local energy consumption need (LHC1, LHC2) of the local heating system (30, 30'), a heat pump (50, 50') connected between the local cooling system (40, 40') and the local heating system (30, 30') and configured to transfer heat from the local cooling system (40, 40') to the local heating system (30, 30').
    • 本发明涉及一种用于控制局部冷却系统(40,40')和局部加热系统(30,30')之间的热传递的方法,所述方法包括:确定所述局部能量需求(LCC1,LCC2) 本地冷却系统(40,40'); 确定局部加热系统(30,30')的本地能量消耗需求(LHC1,LHC2); 基于局部冷却系统(40,40')的局部能量消耗需求(LCC1,LCC2)和局部加热系统(30,30')的局部能量消耗需求(LHC1,LHC2),控制热量 连接在所述局部冷却系统(40,40')和所述局部加热系统(30,30')之间并且被配置为将来自所述局部冷却系统(40,40')的热量传递到所述局部加热系统 系统(30,30')。
    • 5. 发明公开
    • DEVICE INTEGRATING A HEAT PUMP, A HEAT SOURCE AND ELECTRICITY SOURCES
    • 集成热泵,热源和电源的装置
    • EP3184933A1
    • 2017-06-28
    • EP15460131.4
    • 2015-12-23
    • Mamet, Radoslaw
    • GRECH, RadoslawMAMET, Radoslaw
    • F24J3/08F24D11/02F24D19/10
    • F24D19/1081F24D11/0214F24D19/1039F24D19/1048F24D19/1054F24D19/1063F24D19/1072F24D2200/02F24D2200/11F24T10/00Y02B10/40Y02B30/125Y02E10/10
    • The invention relates to a device integrating a heat pump, heat sources and electricity sources characterised in that it is provided inside with an inverter (2), heat storage tank (3), three circulating pumps: a central heating circulating pump (4), a ventilation circulating pump (5) and a circulating pump (6) connected to a coil (7), three energy meters: an energy meter (8) in the central heating circuit, an energy meter (9) in the ventilation circuit, an energy meter (10) in the supply from the lower source to the heat pump, an electricity meter (11), a control system (12), a PV protection system (13) and a switchover three-way valve (14), wherein the device is provided with the following connection stub pipes leading to the outside: a stub pipe (15a) for connecting a ventilation supply pipe, a stub pipe (15b) for connecting a ventilation return pipe, a stub pipe (15c) for connecting a central heating return pipe, a stub pipe (15d) for connecting a central heating supply pipe, a stub pipe (15e) for connecting a supply pipe of the lower heat source to the heat pump, a stub pipe (15f) for connecting a return pipe from the heat pump to the lower heat source, a stub pipe (15g) for connecting a return pipe onto the lower heat source, a stub pipe (15h) for connecting a pipe of the lower supply source, a stub pipe (15i) for connecting a central heating return pipe to the heat pump in the integrating device 1, a stub pipe (15j) for connecting a central heating supply pipe from the heat pump.
    • 本发明涉及一种集热泵,热源和电源于一体的装置,其特征在于内部设有逆变器(2),蓄热箱(3),三个循环泵:中央加热循环泵(4) 与线圈(7)连接的通风循环泵(5)和循环泵(6);三个能量计:中央加热回路中的能量计(8),通风回路中的能量计(9), (11),控制系统(12),光伏保护系统(13)和切换三通阀(14),其中,所述电能表(10) 该装置设有通向外部的以下连接短管:用于连接通风供应管的短管(15a),用于连接通风返回管的短管(15b),用于连接通气管的短管(15c) 中央加热回流管,用于连接中央供热管,短管的短管(15d) 将下热源的供给管与热泵连接的配管(15e),将热泵的返回配管与下热源连接的短管(15f),连接回流管的短管(15g) 配管连接下部热源的配管(15h),连接集中装置1的热泵的中央加热回流管的短管(15i),连接下部热源的短管 15j),用于连接来自热泵的中央供热管。
    • 8. 发明公开
    • REMOTE METER-READING CALORIMETER, AND OPERATING METHOD AND SYSTEM THEREOF
    • 巴勒斯坦权力机构
    • EP3096118A1
    • 2016-11-23
    • EP14878725.2
    • 2014-01-21
    • Korea Institute of Energy Research
    • LEE, JaeyongIM, YonghoonSHIM, Sootaek
    • G01K17/10
    • G01K17/10F24D19/1048G01K19/00
    • The present invention relates to a remote meter-reading system which can improve transmission efficiency of meter-reading data meter-read by a calorimeter. The present invention provides a remote meter-reading system comprising: a temperature sensor for sensing the temperature of fluid moving through piping; a calorimeter for measuring an amount of energy for cooling or heating on the basis of sensing data transferred from the temperature sensor to generate meter-reading data; and a server for receiving the meter-reading data from the calorimeter to calculate the amount of used energy for cooling or heating, wherein the calorimeter determines whether failure has occurred in itself, generates first meter-reading data when it is determined that the failure has not occurred, generates second meter-reading data different from the first meter-reading data when it is determined that the failure has occurred, and transmits the first and second meter-reading data to the server.
    • 远程抄表系统本发明涉及一种能够通过量热计提高抄表数据表读取的传输效率的远程抄表系统。 本发明提供了一种远程读表系统,包括:温度传感器,用于感测通过管道移动的流体的温度; 基于从温度传感器传送的感测数据来测量用于冷却或加热的能量的量热计,以产生测量读数据; 以及服务器,用于接收来自量热计的读数数据,以计算用于冷却或加热的用过量的量,其中量热计本身确定是否发生故障,当确定故障已经产生时,产生第一抄表数据 当确定发生故障时,不发生与第一抄表数据不同的第二抄表数据,并将第一和第二抄表数据发送到服务器。