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    • 3. 发明申请
    • Heating, Ventilation and/or Air Conditioning System Including Four Heat Exchangers
    • 加热,通风和/或空调系统,包括四个换热器
    • US20100287979A1
    • 2010-11-18
    • US12778787
    • 2010-05-12
    • Regine HALLERBertrand NICOLASMohamed YAHIA
    • Regine HALLERBertrand NICOLASMohamed YAHIA
    • F25B41/00
    • B60H1/323B60H1/32281
    • The invention relates to a heating, ventilating and/or air conditioning device (1) comprising an A/C loop (6) inside which a refrigerating fluid FR circulates and a secondary loop (10) inside which a cooling fluid FC circulates. The said device (1) comprising a first heat exchanger (8) between the refrigerating fluid FR and the cooling fluid FC, a second heat exchanger (9) between the refrigerating fluid FR and the cooling fluid FC. The secondary loop comprises a third heat exchanger (14) between the cooling fluid FC and the air, and a fourth heat exchanger (15) between the cooling fluid FC and the air. The secondary loop (10) comprises derivation means (22) of the cooling fluid FC from an outlet point (21) of the cooling fluid FC outside the third heat exchanger (14) and an inlet point (23) of the cooling fluid FC inside the fourth heat exchanger (15).
    • 本发明涉及一种加热,通风和/或空调装置(1),其包括其中冷却流体FR循环的A / C回路(6)和冷却流体FC循环的第二回路(10)。 所述装置(1)包括在冷冻流体FR和冷却流体FC之间的第一热交换器(8),冷冻流体FR和冷却流体FC之间的第二热交换器(9)。 次级回路包括冷却流体FC和空气之间的第三热交换器(14)和冷却流体FC与空气之间的第四热交换器(15)。 第二回路(10)包括来自第三热交换器(14)外部的冷却流体FC的出口点(21)和冷却流体FC内部的入口点(23)的冷却流体FC的推导装置(22) 第四热交换器(15)。
    • 4. 发明申请
    • Optimization Of An Overall Heating Capacity Of An Air Conditioning System
    • 空调系统整体加热能力优化
    • US20110146305A1
    • 2011-06-23
    • US12968368
    • 2010-12-15
    • Mohamed YAHIABertrand NICOLASSamy HAMMI
    • Mohamed YAHIABertrand NICOLASSamy HAMMI
    • F25B7/00G05D23/19
    • B60H1/00921B60H2001/00928B60H2001/00949
    • The invention relates to a control process for an air conditioning system. The air conditioning system comprises a thermal loop (1) used as a heat pump and an electrical heating device (2). The process calculates a global heating capacity (HCglo) in function of the temperature chosen by the passenger, the speed of the blower and the temperature of the exterior air. Then, the process calculates a heating capacity (HC1) of the thermal loop (1) and compares this heating capacity (HC1) of the thermal loop to the global heating capacity (HCglo). If the global heating capacity (HCglo) is superior to the heating capacity (HC1) of the thermal loop, the process determines a heating capacity (HC2) of the electrical heating device (2). This heating capacity (HC2) of the electrical heating device (2) added to the heating capacity (HC1) of the thermal loop (1) allows to obtain the global heating capacity (HCglo) required in function of the temperature selected by the passenger.
    • 本发明涉及一种空调系统的控制过程。 空调系统包括用作热泵的热回路(1)和电加热装置(2)。 该过程根据乘客选择的温度,鼓风机的速度和外部空气的温度来计算全局加热能力(HCglo)。 然后,该过程计算热回路(1)的加热能力(HC1),并将热回路的加热能力(HC1)与全局加热能力(HCglo)进行比较。 如果全局加热容量(HCglo)高于热回路的加热能力(HC1),则该过程确定电加热装置(2)的加热能力(HC2)。 添加到热回路(1)的加热能力(HC1)的电加热装置(2)的加热能力(HC2)允许获得乘客所选择的温度所需的总体加热能力(HCglo)。