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    • 51. 发明申请
    • Method of controlling temperature/humidity or temperature and device for controlling temperature/humidity or temperature
    • 控制温度/湿度或温度的方法以及用于控制温度/湿度或温度的装置
    • US20040112973A1
    • 2004-06-17
    • US10343689
    • 2003-06-23
    • Masato Tanaka
    • F25D017/04F25B049/00
    • G05D22/02F24F11/30F24F2110/20G05D23/1912G05D27/02
    • A temperature control output branch unit D_MV_Temp outputs a manipulated variable to a heating actuator Act1 when the manipulated variable output MVT of a temperature controller PID_Temp is in a heating mode, and outputs it to a cooling actuator Act2 when the output MVT is in a cooling mode. A humidity control output branch unit D_MV_Hum outputs a manipulated variable to a humidifying actuator Act3 when the manipulated variable output MVH of a humidity controller PID_Hum is in a humidifying mode, and outputs it to the actuator Act2 when the output MVH is in a dehumidifying mode. A cooling output maximum value operation unit C_MAX gives whichever is larger of respective manipulated variable outputs from the branch units D_MV_Temp and D_MV_Hum to the actuator Act2.
    • 当温度控制器PID_Temp的操作量输出MVT处于加热模式时,温度控制输出分支单元D_MV_Temp将操作变量输出到加热执行器Act1,并且当输出MVT处于冷却模式时将其输出到冷却致动器Act2 。 当湿度控制器PID_Hum的操作量输出MVH处于加湿模式时,湿度控制输出分支单元D_MV_Hum将加工变量输出到加湿执行器Act3,并且当输出MVH处于除湿模式时,将其输出到致动器Act2。 冷却输出最大值运算单元C_MAX给出从分支单元D_MV_Temp和D_MV_Hum到致动器Act2的相应的可操作变量输出中较大者。
    • 53. 发明申请
    • Humidity controller
    • 湿度控制器
    • US20040108388A1
    • 2004-06-10
    • US10314604
    • 2002-12-09
    • Honeywell International Inc.
    • Paul C. Wacker
    • F25D017/04F25B049/00
    • F24F11/0008F24F3/153F24F11/30F24F11/74F24F2003/1446F24F2011/0002F24F2110/10F24F2110/12F24F2110/20F24F2110/22F24F2110/70G05D22/02
    • A humidity controller for an air handling unit of a space, room or zone. The controller may be a dehumidification system integrated with a constant volume air handling unit. The system may have separate actuator control of a mixed air damper and other actuator control for both an outdoor air intake damper and an indoor air exhaust damper. Humidity and temperature sensors may be placed outdoors and indoors in the space having air to be dehumidified, temperature controlled and/or mixed with outdoor air. An economizer controller is connected to the sensors and actuators for controlling various properties of the air in the space. The air may be dehumidified by slowing down the movement of air across the cooling coil of the air handling unit. Also, a temperature controller may be connected to a space temperature sensor, cooling coil or its associated air conditioner system, air supply fan, and heating coil or heat exchanger, for maintaining the temperature of the air in the space. The economizer and temperature controllers may be combined. Separate actuators may be used for the outdoor air damper and the exhaust air damper to control the differential pressure between the outdoor environment and the indoor space. Other sensors may be utilized in conjunction with a controller to control and/or maintain certain parameters of the air of the indoor space.
    • 用于空间,房间或区域的空气处理单元的湿度控制器。 控制器可以是与恒定体积的空气处理单元集成的除湿系统。 该系统可以具有用于室外进气阻尼器和室内排气阻尼器的混合空气阻尼器和其他致动器控制的单独的致动器控制。 湿度和温度传感器可以放置在具有要除湿空气,温度控制和/或与室外空气混合的空间的室内和室内。 节能器控制器连接到传感器和致动器,用于控制空间中空气的各种性质。 空气可以通过减慢空气流过空气处理单元的冷却盘管的运动而被除湿。 此外,温度控制器可以连接到空间温度传感器,冷却盘管或其相关联的空调系统,供气风扇和加热线圈或热交换器,以保持空间中的空气的温度。 节能器和温度控制器可以组合。 单独的致动器可以用于室外空气阻尼器和排气风门以控制室外环境和室内空间之间的压差。 其他传感器可以与控制器一起使用以控制和/或维持室内空间的空气的某些参数。
    • 54. 发明申请
    • Refrigerator
    • 冰箱
    • US20040107726A1
    • 2004-06-10
    • US10725011
    • 2003-12-02
    • LG Electronics Inc.
    • Sang-Bae KimSang-Ho ParkByeong-Gyu KangYoun-Chul Choi
    • F25B029/00F25D017/04F25D011/02
    • F25D25/025F25D17/045F25D17/065F25D21/06F25D23/12F25D31/005F25D2317/061F25D2317/0666F25D2317/0682F25D2400/06F25D2400/16F25D2700/12F25D2700/121
    • In a refrigerator including a variable temperature storage formed in the chilling chamber so as to have a certain space; a heating room formed on a side of the variable temperature storage; a heating means installed in the heating room in order to generate heat in power supply; a first local circulating path in which cool air in the freezing chamber flows into a rear path through the variable temperature storage; an adjusting means for adjusting a quantity of cool air flowing into/out of the variable temperature storage through the first local circulating path; a second local circulating path in which heated air in the heating room passes the variable temperature storage and flows into the heating room again; and a temperature sensor for sensing a temperature in the variable temperature storage, because various ranges of temperature can be maintained in the refrigerator, it is possible to perform optimum-temperature storing according to kinds of foods, and accordingly various foods can be stored more freshly for a longer time.
    • 一种冰箱,包括形成在所述冷藏室中的变温储存器,以具有一定的空间; 在可变温度存储器的一侧形成的加热室; 加热装置,其安装在加热室中,以在电源中产生热量; 第一局部循环路径,其中冷冻室中的冷空气通过可变温度存储器流入后路径; 调节装置,用于通过第一局部循环路径调节流入/流出可变温度存储器的冷空气量; 第二局部循环路径,其中加热室中的加热空气通过可变温度存储并再次流入加热室; 以及用于感测可变温度存储器中的温度的温度传感器,由于可以在冰箱中保持各种温度范围,因此可以根据食物的种类进行最佳温度存储,因此可以更新地存储各种食物 时间较长
    • 60. 发明申请
    • Air conditioning system
    • 空调系统
    • US20040031279A1
    • 2004-02-19
    • US10637262
    • 2003-08-08
    • Tomohiro KamiyaKoichi ItoKazushi ShikataMasafumi KawashimaYasuyuki Nishi
    • B60H001/00B60H001/26B60H001/32F25D017/04
    • F24F13/068B60H1/0055B60H1/247B60H1/3407F24F13/02
    • An air conditioning system includes an air conditioner for blowing conditioned air toward a compartment of a vehicle, and a dashboard having a design surface exposed to the compartment. An inner air passage extending nearly parallel to the design surface is formed in the dashboard, and a plurality of diffusion blowing openings are formed in the design surface. Thus, the condensed air is blown from the diffusion blowing openings into the compartment of the vehicle, while passing through the inner air passage. For example, cool air is blown from the diffusion blowing openings, so that the cool air can cool the dashboard while cooling the compartment of the vehicle. Moreover, because the cool air passes through the inner air passage extending nearly parallel to the design surface, the dashboard can be effectively cooled.
    • 空调系统包括用于向车辆隔室吹送调节空气的空调器和具有暴露于隔室的设计表面的仪表板。 在仪表板中形成大致平行于设计表面延伸的内部空气通道,并且在设计表面中形成多个扩散吹制开口。 因此,在通过内部空气通道的同时,冷凝的空气从扩散吹入口吹入车辆的隔室。 例如,从扩散吹出口吹出冷空气,使得冷空气可以冷却仪表板,同时冷却车辆的隔室。 此外,由于冷空气通过几乎平行于设计表面延伸的内部空气通道,所以可以有效地冷却仪表板。