WO2014107820A1 - 燃油/燃气汽车用电动空调系统 - Google Patents

燃油/燃气汽车用电动空调系统 Download PDF

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Publication number
WO2014107820A1
WO2014107820A1 PCT/CN2013/000114 CN2013000114W WO2014107820A1 WO 2014107820 A1 WO2014107820 A1 WO 2014107820A1 CN 2013000114 W CN2013000114 W CN 2013000114W WO 2014107820 A1 WO2014107820 A1 WO 2014107820A1
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Prior art keywords
compressor
conditioning system
generator
fuel
electric
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PCT/CN2013/000114
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English (en)
French (fr)
Inventor
陈冬长
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Chen Dongchang
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Publication of WO2014107820A1 publication Critical patent/WO2014107820A1/zh

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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B60VEHICLES IN GENERAL
    • B60HARRANGEMENTS OF HEATING, COOLING, VENTILATING OR OTHER AIR-TREATING DEVICES SPECIALLY ADAPTED FOR PASSENGER OR GOODS SPACES OF VEHICLES
    • B60H1/00Heating, cooling or ventilating [HVAC] devices
    • B60H1/32Cooling devices
    • B60H1/3204Cooling devices using compression
    • B60H1/3222Cooling devices using compression characterised by the compressor driving arrangements, e.g. clutches, transmissions or multiple drives
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B60VEHICLES IN GENERAL
    • B60HARRANGEMENTS OF HEATING, COOLING, VENTILATING OR OTHER AIR-TREATING DEVICES SPECIALLY ADAPTED FOR PASSENGER OR GOODS SPACES OF VEHICLES
    • B60H1/00Heating, cooling or ventilating [HVAC] devices
    • B60H1/32Cooling devices
    • B60H2001/3286Constructional features
    • B60H2001/3292Compressor drive is electric only

Definitions

  • the invention relates to the technical field of automobiles, and particularly relates to an electric air conditioning system for a fuel/gas automobile.
  • variable displacement compressor controls the temperature of the refrigerant by controlling the amount of refrigerant flowing through the internal displacement of the compressor. Even with a variable displacement compressor, the previous two problems were not solved.
  • An object of the present invention is to overcome the above-mentioned deficiencies of the prior art and to provide an electric air conditioning system for a fuel/gas automobile that solves the above problems.
  • an electric air conditioning system for a fuel/gas automobile comprising an evaporator assembly, a condenser assembly, a compressor, a throttle element and an electrical control assembly, wherein the compressor is electrically compressed
  • the electric compressor is electrically connected to a generator, a battery, and a compressor driver, and the generator is driven by a belt drive by an output shaft of the automobile engine.
  • the electric compressor and the compressor driver are integrated in a casing, and the surface of the casing is provided with a working fluid inlet and a working fluid outlet connected to the electric compressor.
  • the compressor driver is provided with a standard mode drive circuit and a night mode drive circuit.
  • a wireless remote control circuit is provided in the compressor driver, and a remote controller is provided correspondingly.
  • a protection circuit is also provided in the compressor driver.
  • the generator may be a direct current generator or an alternator; the generator may be a generator that has a larger output power than the original standard generator, replaces the original standard generator of the original vehicle, or may be a newly added new one. generator.
  • the battery may be a original vehicle expansion battery, or a new battery may be added.
  • the electric compressor may be a direct current electric compressor or an alternating current electric compressor.
  • Low-voltage protection connected to the compressor driver in the working fluid pipeline of the air-conditioning system Monitor.
  • the invention utilizes an electric compressor to replace the existing pulley type compressor driven by a pulley directly through an automobile engine, so that the whole air conditioning system operates, and the beneficial effect is manifested in that the fuel/gas engine does not directly drive the compressor but passes the generator.
  • the kinetic energy is converted into electric energy, and then the electric energy is used to drive the compressor. Due to the storability of the electric energy, the electric compressor can still operate even when the parking engine is stopped, so that the entire air conditioning system can still be used while the vehicle is in the parking state.
  • the operation of the electric compressor is not affected by the engine speed of the car, can maintain a stable cooling effect; on the other hand, the operation of the electric compressor will not affect the car engine, can avoid The vehicle's power is affected when the air conditioning system is in operation.
  • the invention completely solves the three problems of the traditional fuel/gas automobile air conditioning system, and has high operating efficiency and convenient arrangement, and is suitable for various fuel/gas type vehicles, and is especially suitable for the existing truck and engineering vehicle air conditioning system. Modifications are conducive to the advancement of automotive air conditioning technology.
  • Figure 1 is a schematic view of the structure of the present invention
  • Fig. 2 and Fig. 3 are schematic views showing the arrangement of the electric compressor and the compressor driver in the present invention.
  • the electric air conditioning system for a fuel/gas automobile includes general components in an existing air conditioning system, such as an evaporator assembly, a condenser assembly, a compressor, a throttle element, an electrical control component, and a working fluid pipeline and a duct, etc.
  • the evaporator assembly includes an evaporator 9 and an evaporating blower 10
  • the condenser assembly includes a condenser 6 and a condensing blower 7, and the throttle element 8 is expanded or Capillary
  • the improvement of the present invention is that: the compressor is an electric compressor 5, and the electric compressor 5 is electrically connected to a generator 1, a battery 2, and a compressor driver 4, and the generator 1 It is driven by the belt drive of the output shaft of the car engine.
  • the electric compressor 5 is used to replace the existing pulley compressor that is directly driven by the automobile engine by the pulley.
  • the generator 1 is installed at the installation of the existing pulley compressor, and the existing pulley compressor is eliminated.
  • the generator 1 is operated to generate electricity under the driving of the automobile engine, and the generated electric energy is transmitted to the storage battery 2, and the battery driver 2 supplies power to the compressor driver 4 and the electric compressor 5, thereby causing the electric compressor 5 to operate.
  • the generator 1 may be a DC generator or an AC generator-motor; the generator may be a generator that has a larger output power than the original vehicle standard generator and replaces the original vehicle standard generator. It can be a new generator that is directly added. The preferred solution is to replace a generator with a large output power, which can save installation space.
  • the battery 2 can be a original vehicle expansion battery, or a new battery can be added. A preferred solution is to expand the battery to save space.
  • the electric compressor 5 may be a direct current electric compressor or an alternating current electric compressor.
  • the electric compressor 5 and the compressor driver 4 are integrated in a casing 3, and a surface of the casing 3 is provided with a working fluid inlet 31 communicating with the electric compressor. And the working fluid outlet 32, of course, the casing 3 is also provided with conventional electronic components (not shown) such as relays and fuses connected to the compressor driver 4.
  • electric The compressor 5 and the compressor driver 4 are integrated in a casing 3, which makes the assembly and connection of the entire air conditioning system easier, and can be connected to the battery 2 through wires, so that the installation can be not limited to a narrow space at the engine of the front of the car, which can be installed in the body of the car, such as the space under the rear seat of the car;
  • the compressor driver 4 is provided with a standard mode drive circuit and a night mode drive circuit.
  • the standard mode drive circuit means that the compressor driver controls the electric compressor to operate according to the standard speed;
  • the night mode drive circuit refers to the compressor driver controls the electric compressor to operate at a low speed, so that the system operates with low power consumption, less noise, and longer Battery usage time.
  • the compressor driver 4 is provided with a wireless remote control circuit 11 corresponding to the remote controller 14 for remotely controlling the air conditioning system; the wireless remote control method can more conveniently accept the adjustment command of the person in the vehicle, and conveniently adjust the cooling capacity, and Free control of energy consumption; and some of the command functions integrated on the remote control can simplify the design of the semi-internal control panel, which makes the control panel simpler and more convenient to use, and also improves the dustproof and waterproof protection of electronic components.
  • a protection circuit is also provided in the compressor driver 4.
  • the protection circuit is a problem in order to ensure that the use of the air conditioner does not cause the vehicle voltage to be too low and the startup is poor when the engine is started.
  • the protection circuit may be overcurrent protection or voltage detection protection in the protection form. For example, you can set the battery low voltage protection function and set the adjustable gear position, at least 2 or more. For example, a specific 24VDC voltage system can set the low-voltage protection value to 22VD (:, 23VDC, 24VDC, etc., the user can set the appropriate gear position according to the actual condition of the vehicle through the remote control, so that the air-conditioning system has the longest running time. It also ensures that the car can start reliably.
  • a low-voltage protection monitor 15 connected to the compressor driver 3 is also disposed in the working fluid pipeline to monitor the working fluid pressure in the pipeline. When a refrigerant leak occurs, the compressor driver 3 will shut down to ensure system safety.
  • the invention utilizes the electric compressor to replace the existing pulley compressor directly driven by the automobile engine by the pulley, so that the whole air conditioning system operates, and the beneficial effects are as follows:
  • the fuel/gas engine does not directly drive the electric compressor 5, and
  • the generator 1 converts its kinetic energy into electrical energy, and then the electric energy drives the electric compressor. Because of the storability of the electric energy, even when the parking engine stops working, the electric compressor can still operate, so that the entire air conditioning system is It can still be used in the parking state; Moreover, the operation of the electric compressor is not affected by the engine speed and can maintain a stable cooling effect; on the other hand, the operation of the electric compressor will not affect the car engine, and can avoid The vehicle's power is affected when the air conditioning system is in operation.
  • the invention completely solves the three problems of the traditional fuel/gas automobile air conditioning system, and has high operating efficiency and convenient arrangement, and is suitable for various fuel/gas type vehicles, and is especially suitable for the existing truck and engineering vehicle air conditioning system. Modifications are conducive to the advancement of automotive air conditioning technology.

Abstract

一种燃油/燃气汽车用电动空调系统,其包括蒸发器组件、冷凝器组件、压缩机、节流元件(8)以及电气控制组件,压缩机为电动压缩机(5),该电动压缩机与一发电机(1)、蓄电池(2)以及压缩机驱动器(4)电连接,且发电机由汽车发动机的输出轴通过皮带传动方式驱动。利用电动压缩机代替现有的以皮带轮直接通过汽车发动机驱动的皮带轮式压缩机,使整个空调系统运行,有益效果表现在:燃油/燃气发动机不直接驱动压缩机,而是通过发电机将其动能转换成电能,再由电能驱动压缩机,由于电能的可储存性,因此即使在发动机停止工作时,电动压缩机依然能运行,从而使整个空调系统在停车状态下依然可以使用,节省燃油/燃气。

Description

燃油 /燃气汽车用电动空调系统 技术领域:
本发明涉及汽车技术领域,特指一种燃油 /燃气汽车用电动空调系 统。
背景技术:
传统燃油 /燃气驱动的汽车空调系统及其能源供应系统,均由:通 过发动机经由皮带拖动的皮带轮式压缩机、 节流管、 蒸发器及风机、 冷凝器及风机、 温度传感器、 风道以及电气控制器等组成。 其特点为 压縮机运转需由燃油 /燃气发动机通过皮带带动,或者是通过液压系统 的液压马达带动(如工程车), 冷凝器风机一般是直连于发动机, 制冷 效果直接由发动机转速决定。 这也是传统汽车空调最大的问题-
1、 在停车时, 必须启动发动机才可以开启空调, 此时发动机能源 使用率非常低, 几乎白白耗油, 并且造成极大的废气排放;
2、 在怠速 /低速运转时, 空调制冷效果不佳, 压縮机载荷重, 且回 油不良, 由于发动机转速的不稳定, 必须使用大排量压缩机来 满足低转速时的制冷要求;
3、 对定排量压縮机而言, 在高速运转时, 空调制冷效果强于需求, 需频繁断开压缩机的离合器来保持车内温度不至于过低; 对上述问题 3, 对已采用变排量的压缩机, 则是通过压缩机内部变排 量来控制冷媒的流通量从而控制车内温度。 即便是采用变排量的压缩机, 也没有解决之前的两个问题。
发明内容- 本发明的目的在于克服现有技术的上述不足之处,提供一种燃油 / 燃气汽车用电动空调系统, 解决上述问题。
本发明实现其目的采用的技术方案是: 燃油 /燃气汽车用电动空 调系统, 包括蒸发器组件、 冷凝器组件、 压缩机、 节流元件以及电气 控制组件, 其中, 所述的压缩机为电动压缩机, 该电动压缩机与一发 电机、 蓄电池以及压缩机驱动器电连接, 且所述发电机系由汽车发动 机的输出轴通过皮带传动方式驱动。
所述的电动压缩机以及压缩机驱动器集成在一箱体内, 且该箱体 表面设有与所述电动压縮机连通的工质入口和工质出口。
所述压缩机驱动器设有标准模式驱 ¾]电路和夜间模式驱动电路。' 所述压缩机驱动器中设有无线遥控电路, 对应配有遥控器。
所述压缩机驱动器中还设有保护电路。
所述的发电机可以为直流发电机, 也可以为交流发电机; 该发电 机可以为比原车标准发电机输出功率大、 替换原车标准发电机的发电 机, 也可以是直接增加的新发电机。
所述的蓄电池可以为原车扩容蓄电池, 或者也可以为增设一个新 蓄电池。
所述的电动压缩机可以为直流电动压缩机, 也可以为交流电动压 縮机。
于空调系统的工质管路中还设有与压缩机驱动器连接的低压保护 监测器。
本发明利用电动压缩机代替现有的以皮带轮直接通过汽车发动机 驱动的皮带轮式压缩机, 使整个空调系统运行, 其有益效果表现在- 燃油 /燃气发动机不直接驱动压缩机,而是通过发电机将其动能转换成 电能, 再由电能去驱动压缩机, 由于电能的可储存性, 因此即使在停 车发动机停止工作时, 电动压缩机依然能运行, 从而使整个空调系统 在停车状态下依然可以使用, 节省燃油 /燃气; 而且, 电动压縮机的运 转不会受到汽车发动机转速的影响, 可以保持稳定的制冷效果; 另一 方面, 电动压缩机的运转也不会影响到汽车发动机, 能避免在空调系 统运行状态时汽车动力受到影响。
本发明完全解决了传统燃油 /燃气汽车空调系统最大的 3个问题, 并且本身运行效率高, 布置方便, 适用于各种燃油 /燃气式车型, 尤其 适用于对现有卡车、 工程车空调系统的改装, 有利于推进车用空调技 术的进步。
附图说明:
图 1是本发明的结构示意图;
图 2、 图 3是本发明中电动压缩机与压缩机驱动器等集成后的布 置结构示意图。
具体实施方式:
下面结合具体实施例和附图对本发明进一步说明。
如图 1所示, 本发明所述的燃油 /燃气汽车用电动空调系统, 包括 现有空调系统中的通用组件, 例如蒸发器组件、冷凝器组件、压縮机、 节流元件、 电气控制组件以及工质管路和风道等, 其中, 蒸发器组件 包括蒸发器 9和蒸发风机 10,冷凝器组件包括冷凝器 6和冷凝风机 7, 节流元件 8为膨胀阔或者毛细管; 本发明的改进之处在于: 所述的压 缩机为电动压縮机 5,该电动压縮机 5与一发电机 1、蓄电池 2以及压 缩机驱动器 4电连接, 且所述发电机 1系由汽车发动机的输出轴通过 皮带传动方式驱动。 即利用电动压缩机 5代替现有的以皮带轮直接通 过汽车发动机驱动的皮带轮式压缩机, 发电机 1安装在现有的皮带轮 式压縮机的安装处, 取消掉现有的皮带轮式压縮机, 发电机 1在汽车 发动机的驱动下工作发电, 发出的电能传输给蓄电池 2储存, 并由蓄 电池 2给压缩机驱动器 4和电动压缩机 5供电, 从而使电动压缩机 5 运行。
具体而言, 所述的发电机 1可以为直流发电机, 也可以为交流发— 电机; 该发电机可以为比原车标准发电机输出功率大、 替换原车标准 发电机的发电机, 也可以是直接增加的新发电机, 较佳的方案是替换 一个输出功率较大的发电机, 可以节约安装空间。 所述的蓄电池 2可 以为原车扩容蓄电池, 或者也可以为增设一个新蓄电池, 较佳的方案 是采用扩容蓄电池以节约空间。 所述的电动压缩机 5可以为直流电动 压縮机, 也可以为交流电动压缩机。
结合图 2、 图 3所示, 所述的电动压縮机 5以及压缩机驱动器 4 集成在一箱体 3内, 且该箱体 3表面设有与所述电动压缩机连通的工 质入口 31和工质出口 32, 当然箱体 3内还设有与压缩机驱动器 4连 接的继电器、保险丝等常规电子元件(图中未示出)。 本发明中, 电动 压缩机 5以及压縮机驱动器 4等集成在一个箱体 3里面, 使整个空调 系统的组装和连接更为简便, 同时可以做到通过电线与蓄电池 2远距 离连接, 因此其安装可以不局限在汽车车头发动机处的狭窄空间, 而 可以安装在汽车车身部位, 例如车后座下面的空间等等;
所述压缩机驱动器 4 设有标准模式驱动电路和夜间模式驱动电 路。 标准模式驱动电路是指压缩机驱动器控制电动压縮机按照标准转 速运行; 夜间模式驱动电路是指压缩机驱动器控制电动压缩机按照低 转速运行方式, 使系统运行功耗低, 噪音更小, 延长电池的使用时间。
所述压缩机驱动器 4中设有无线遥控电路 11,对应配有遥控器 14, 可远程控制空调系统; 采用无线遥控方式可以更方便地接受在车内人 员的调节指令, 方便调节冷量, 以及自由控制能耗; 而且遥控器上集 成的部分指令功能, 可以简化半内控制面板的设计, 这样可使控制面 板更简洁,使用更方便, 同时也提高了电子元件的防尘防水保护能力。
所述压缩机驱动器 4中还设有保护电路。 保护电路是为确保空调 的使用不会导致汽车电压过低而出现发动时启动不良的问题, 保护电 路在保护形式上可以是过流保护或者电压检测保护等。 例如可以设置 电池低压保护功能, 并设置可调整的档位, 至少设置 2档或以上。 比 如一个具体的 24VDC的电压系统,可设置低压保护值为 22VD (:、 23VDC, 24VDC 等档位, 用户可通过遥控器根据车辆的实际状况设置合适的档 位, 使空调系统的运行时间最长, 又能确保汽车能可靠启动。
当然, 除了电路控制方面的电压保护外, 在工质管路中还设有与 压缩机驱动器 3连接的低压保护监测器 15, 监测管路中的工质压力, 当发生冷媒泄漏时, 压缩机驱动器 3将停机以保证系统安全。
本发明利用电动压缩机代 5替现有的以皮带轮直接通过汽车发动 机驱动的皮带轮式压缩机,使整个空调系统运行,其有益效果表现在: 燃油 /燃气发动机不直接驱动电动压缩机 5, 而是通过发电机 1将其动 能转换成电能, 再由电能去驱动电动压缩机, 由于电能的可储存性, 因此即使在停车发动机停止工作时, 电动压缩机依然能运行, 从而使 整个空调系统在停车状态下依然可以使用; 而且, 电动压缩机的运转 不会受到汽车发动机转速的影响, 可以保持稳定的制冷效果; 另一方 面, 电动压缩机的运转也不会影响到汽车发动机, 能避免在空调系统 运行状态时汽车动力受到影响。
本发明完全解决了传统燃油 /燃气汽车空调系统最大的 3个问题, 并且本身运行效率高, 布置方便, 适用于各种燃油 /燃气式车型, 尤其 适用于对现有卡车、 工程车空调系统的改装, 有利于推进车用空调技 术的进步。
本领域技术人员不脱离本发明的实质和精神, 可以有多种变形方 案实现本发明, 以上所述仅为本发明较佳可行的实施例而己, 并非因 此局限本发明的权利范围, 凡运用本发明说明书及附图内容所作的等 效结构变化, 均包含于本发明的权利范围之内。

Claims

权 利 要 求 书
1. 燃油 /燃气汽车用电动空调系统, 包括蒸发器组件、 冷凝器组件、 压缩机、 节流元件以及电气控制组件, 其特征在于: 所述的压缩 机为电动压缩机, 该电动压缩机与一发电机、 蓄电池以及压缩机 驱动器电连接, 且所述发电机系由汽车发动机的输出轴通过皮带 传动方式驱动。
2. 根据权利要求 1所述的燃油 /燃气汽车用电动空调系统, 其特征在 于: 所述的电动压縮机以及压縮机驱动器集成在一箱体内, 且该 箱体表面设有与所述电动压缩机连通的工质入口和工质出口。
3. 根据权利要求 1所述的燃油 /燃气汽车用电动空调系统, 其特征在 于: 所述压缩机驱动器设有标准模式驱动电路和夜间模式驱动电 路。 '
4. 根据权利要求 1或 3所述的燃油 /燃气汽车用电动空调系统, 其特 征在于: 所述压缩机驱动器中设有无线遥控电路, 对应配有遥控 器。
5. 根据权利要求 1或 3所述的燃油 /燃气汽车用电动空调系统, 其特 征在于: 所述压縮机驱动器中还设有保护电路。
6. 根据权利要求 1所述的燃油 /燃气汽车用电动空调系统, 其特征在 于: 所述的发电机可以为直流发电机, 也可以为交流发电机; 该 发电机可以为比原车标准发电机输出功率大、 替换原车标准发电 机的发电机, 也可以是直接增加的新发电机。
7. 根据权利要求 1所述的燃油 /燃气汽车用电动空调系统, 其特征在 于- 所述的蓄电池可以为原车扩容蓄电池, 或者也可以为增设一 个新蓄电池。
8. 根据权利要求 1所述的燃油 /燃气汽车用电动空调系统, 其特征在 于: 所述的电动压縮机可以为直流电动压縮机, 也可以为交流电 动压縮机。
9. 根据权利要求 1所述的燃油 /燃气汽车用电动空调系统, 其特征在 于: 于空调系统的工质管路中还设有与压縮机驱动器连接的低压 保护监测器。
PCT/CN2013/000114 2013-01-12 2013-02-04 燃油/燃气汽车用电动空调系统 WO2014107820A1 (zh)

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