




技术领域technical field
本发明涉及空调循环系统领域,特别涉及一种远洋渔船船用空调循环系统。The invention relates to the field of air-conditioning circulation systems, in particular to an air-conditioning circulation system for ocean-going fishing vessels.
背景技术Background technique
远洋渔船,是指从事大洋性捕捞生产的船舶,该类渔船一般配有冷藏加工设备、直升机。Ocean-going fishing vessels refer to vessels engaged in ocean-going fishing, which are generally equipped with refrigerated processing equipment and helicopters.
空调即空气调节器,是指用人工手段对建筑、构筑物内环境空气的温度、湿度、洁净度、流速等参数进行调节和控制的设备,大部分利用冷媒在压缩机的作用下,发生蒸发或凝结,从而引发周遭空气的蒸发或凝结,以达到改变温、湿度的目的,空调的结构包括压缩机,冷凝器,蒸发器,四通阀,单向阀毛细管组件等,现有的远洋渔船船用空调循环系统在进行工作时,不能对船体房间的温度进行实时监控,不能对湿气和温度进行自适应调节,且在空调循环系统出现问题时,不能准备找出系统中出现故障的部件,且远洋渔船房间过多,也不能准确找出循环系统出现故障的房间,加大了维修的困难程度。Air conditioners are air conditioners, which refer to equipment that manually adjusts and controls the temperature, humidity, cleanliness, flow rate and other parameters of the ambient air in buildings and structures. Most of them use refrigerants under the action of compressors to evaporate or Condensation, which causes the evaporation or condensation of the surrounding air to achieve the purpose of changing the temperature and humidity. The structure of the air conditioner includes a compressor, a condenser, an evaporator, a four-way valve, a one-way valve capillary assembly, etc., and the existing ocean-going fishing boats When the air-conditioning circulation system is working, it cannot monitor the temperature of the hull room in real time, and cannot adjust the humidity and temperature adaptively, and when there is a problem with the air-conditioning circulation system, it cannot be prepared to find out the faulty components in the system, and Ocean-going fishing boats have too many rooms, and it is impossible to accurately find out the room where the circulation system fails, which increases the difficulty of maintenance.
因此,提出一种远洋渔船船用空调循环系统来解决上述问题很有必要。Therefore, it is necessary to propose a marine air-conditioning circulation system for ocean-going fishing vessels to solve the above problems.
发明内容Contents of the invention
本发明的主要目的在于提供一种远洋渔船船用空调循环系统,可以有效解决背景技术中的问题。The main purpose of the present invention is to provide a marine air-conditioning circulation system for ocean-going fishing vessels, which can effectively solve the problems in the background technology.
为实现上述目的,本发明采取的技术方案为:In order to achieve the above object, the technical scheme that the present invention takes is:
一种远洋渔船船用空调循环系统,包括主控单元,所述主控单元电连接有船体空调控制单元,所述船体空调控制单元电连接有监测模块,所述监测模块电连接有水泵传感器,所述监测模块电连接有警告单元,所述监测模块电连接有故障排查单元,所述故障排查单元电连接有接收模块,所述主控单元电连接有湿度调节单元,所述主控单元电连接有温控单元,所述温控单元电连接有设置模块,所述监测模块电连接有压缩机传感器、冷凝器传感器、换热器传感器、蒸发器传感器、风扇传感器和空调电力监测模块,所述空调电力监测模块电连接有电源服务器,所述温控单元电连接有第一反馈模块,所述第一反馈模块电连接有温度传感器一、温度传感器二和温度传感器N,所述温控单元电连接有温度上调控制模块、温度设置接入模块和温度下调控制模块,所述温度下调控制模块电连接有温度控制反馈模块,所述温度控制反馈模块电连接有信号接收器,所述湿度调节单元电连接有第二反馈模块,所述第二反馈模块电连接有湿度传感器一、湿度传感器二和湿度传感器N,所述湿度调节单元电连接有加湿模块、湿度设置接入模块和除湿模块,所述设置模块电连接有温度设置模块和湿度设置模块,所述温度设置模块电连接有第一反馈模块,所述第一反馈模块电连接有温度自调节模块,所述湿度设置模块电连接有第二反馈模块,所述第二反馈模块电连接有湿度自调节模块。An ocean-going fishing vessel marine air-conditioning circulation system, comprising a main control unit, the main control unit is electrically connected to a hull air-conditioning control unit, the hull air-conditioning control unit is electrically connected to a monitoring module, and the monitoring module is electrically connected to a water pump sensor. The monitoring module is electrically connected to a warning unit, the monitoring module is electrically connected to a troubleshooting unit, the troubleshooting unit is electrically connected to a receiving module, the main control unit is electrically connected to a humidity adjustment unit, and the main control unit is electrically connected to There is a temperature control unit, and the temperature control unit is electrically connected to a setting module, and the monitoring module is electrically connected to a compressor sensor, a condenser sensor, a heat exchanger sensor, an evaporator sensor, a fan sensor, and an air conditioner power monitoring module. The air-conditioning power monitoring module is electrically connected to a power server, the temperature control unit is electrically connected to a first feedback module, and the first feedback module is electrically connected to temperature sensor 1, temperature sensor 2, and temperature sensor N. The temperature control unit is electrically connected to It is connected with a temperature up-regulation control module, a temperature setting access module and a temperature down-regulation control module. The temperature down-regulation control module is electrically connected with a temperature control feedback module, and the temperature control feedback module is electrically connected with a signal receiver. The humidity adjustment unit A second feedback module is electrically connected, and the second feedback module is electrically connected to a humidity sensor 1, a humidity sensor 2, and a humidity sensor N, and the humidity adjustment unit is electrically connected to a humidification module, a humidity setting access module, and a dehumidification module. The setting module is electrically connected to a temperature setting module and a humidity setting module, the temperature setting module is electrically connected to a first feedback module, the first feedback module is electrically connected to a temperature self-regulating module, and the humidity setting module is electrically connected to a second Two feedback modules, the second feedback module is electrically connected with a humidity self-regulating module.
优选的,所述船体空调控制单元的输出端与船体房间一、船体房间二和船体房间N的输入端电连接。Preferably, the output terminal of the hull air-conditioning control unit is electrically connected to the input terminals of the first hull room, the second hull room and the hull room N.
优选的,所述船体空调控制单元的输出端与监测模块的输入端电连接,所述监测模块的输出端与水泵传感器的输入端电连接,所述监测模块的输出端与警告单元的输入端电连接,所述监测模块的输出端与故障排查单元的输入端电连接,所述故障排查单元的输出端与接收模块的输入端电连接。Preferably, the output end of the hull air-conditioning control unit is electrically connected to the input end of the monitoring module, the output end of the monitoring module is electrically connected to the input end of the water pump sensor, and the output end of the monitoring module is electrically connected to the input end of the warning unit. Electrically connected, the output end of the monitoring module is electrically connected to the input end of the troubleshooting unit, and the output end of the troubleshooting unit is electrically connected to the input end of the receiving module.
优选的,所述监测模块包括压缩机传感器、冷凝器传感器、换热器传感器、蒸发器传感器、风扇传感器和空调电力监测模块,所述空调电力监测模块的输出端与电源服务器的输入端电连接。Preferably, the monitoring module includes a compressor sensor, a condenser sensor, a heat exchanger sensor, an evaporator sensor, a fan sensor, and an air-conditioning power monitoring module, and the output end of the air-conditioning power monitoring module is electrically connected to the input end of the power server .
优选的,所述湿度调节单元和温控单元的输出端与设置模块的输入端电连接。Preferably, the output ends of the humidity adjustment unit and the temperature control unit are electrically connected to the input ends of the setting module.
优选的,所述温控单元的输入端与第一反馈模块的输出端电连接,所述第一反馈模块的输入端与温度传感器一、温度传感器二和温度传感器N的输入端电连接,所述温控单元的输出端与温度上调控制模块、温度设置接入模块和温度下调控制模块的输入端电连接,所述温度上调控制模块和温度下调控制模块的输出端与温度控制反馈模块的输入端电连接,所述温度控制反馈模块的输出端与信号接收器的输入端电连接。Preferably, the input end of the temperature control unit is electrically connected to the output end of the first feedback module, and the input end of the first feedback module is electrically connected to the input ends of temperature sensor 1, temperature sensor 2, and temperature sensor N, so that The output end of the temperature control unit is electrically connected to the input end of the temperature up control module, the temperature setting access module and the temperature down control module, and the output end of the temperature up control module and the temperature down control module is connected to the input of the temperature control feedback module The terminals are electrically connected, and the output terminal of the temperature control feedback module is electrically connected to the input terminal of the signal receiver.
优选的,所述湿度调节单元的输入端与第二反馈模块的输出端电连接,所述第二反馈模块的输出端与湿度传感器一、湿度传感器二和湿度传感器N的输入端电连接,所述湿度调节单元的输出端与加湿模块、湿度设置接入模块和除湿模块的输入端电连接,所述加湿模块和除湿模块的输出端与信号接收器的输入端电连接。Preferably, the input end of the humidity adjustment unit is electrically connected to the output end of the second feedback module, and the output end of the second feedback module is electrically connected to the input ends of humidity sensor 1, humidity sensor 2, and humidity sensor N, so that The output end of the humidity adjustment unit is electrically connected to the input end of the humidification module, the humidity setting access module and the dehumidification module, and the output ends of the humidification module and the dehumidification module are electrically connected to the input end of the signal receiver.
优选的,所述设置模块包括温度设置模块和湿度设置模块,所述温度设置模块的输出端与第一反馈模块的输入端电连接,所述第一反馈模块的输出端与温度自调节模块的输入端电连接,所述湿度设置模块的输出端与第二反馈模块的输入端电连接,所述第二反馈模块的输出端与湿度自调节模块的输入端电连接。Preferably, the setting module includes a temperature setting module and a humidity setting module, the output end of the temperature setting module is electrically connected to the input end of the first feedback module, and the output end of the first feedback module is connected to the temperature self-regulating module. The input end is electrically connected, the output end of the humidity setting module is electrically connected to the input end of the second feedback module, and the output end of the second feedback module is electrically connected to the input end of the humidity self-regulating module.
有益效果Beneficial effect
与现有技术相比,本发明提供了一种远洋渔船船用空调循环系统,具备以下有益效果:Compared with the prior art, the present invention provides a marine air-conditioning circulation system for ocean-going fishing vessels, which has the following beneficial effects:
1、该远洋渔船船用空调循环系统,通过设置的船体空调控制单元,能对船体房间的空调进行开启或关闭,通过设置的监测模块,能对船体空调的循环系统进行监测,能通过压缩机传感器、冷凝器传感器、换热器传感器、蒸发器传感器、风扇传感器和空调电力监测模块,对空调循环系统内的压缩机、冷凝器、换热器、蒸发器、风扇和电力进行监测,通过设置的空调电力监测模块,能对空调电力中的电流脉冲、电磁场和电源进行监测,若任何一处出现故障,则会通过设置的警告单元,对船体进行警告,同时通过设置的故障排查单元,可对出现故障的船体进行排查,以此能更快寻找到故障的地点。1. The marine air-conditioning circulation system of the ocean-going fishing vessel can turn on or off the air-conditioning in the hull room through the set hull air-conditioning control unit, and can monitor the circulation system of the hull air-conditioning through the set monitoring module. , condenser sensor, heat exchanger sensor, evaporator sensor, fan sensor and air-conditioning power monitoring module, to monitor the compressor, condenser, heat exchanger, evaporator, fan and power in the air-conditioning cycle system, through the set The air-conditioning power monitoring module can monitor the current pulse, electromagnetic field and power supply in the air-conditioning power. If any fault occurs, it will warn the hull through the set warning unit. The faulty hull is checked, so that the location of the fault can be found faster.
2、该远洋渔船船用空调循环系统,通过设置的设置模块,能对温度和湿度进行设置,以此船体的温度和湿度能根据温度和湿度传感器进行反馈,使得温度自调节模块和湿度调节单元能对船体的温度和湿度进行自行调节。2. The air-conditioning circulation system for ocean-going fishing boats can set the temperature and humidity through the setting module, so that the temperature and humidity of the hull can be fed back according to the temperature and humidity sensors, so that the temperature self-regulation module and the humidity adjustment unit can be Self-regulate the temperature and humidity of the hull.
3、该远洋渔船船用空调循环系统,通过设置的温控单元,能对空调的温度进行调节,通过设置的第一反馈模块,能通过若干个放置在船体处的温度传感器,进行温度的反馈,温度设置接入模块能根据温度自调节模块进行自调节,若使用者需要对温度进行调节时,则温度控制反馈模块会收到使用者温度调节的反馈,并通过信号接收器进行温度的控制。3. The air-conditioning circulation system for ocean-going fishing vessels can adjust the temperature of the air conditioner through the installed temperature control unit, and through the installed first feedback module, it can perform temperature feedback through several temperature sensors placed on the hull. The temperature setting access module can self-regulate according to the temperature self-regulation module. If the user needs to adjust the temperature, the temperature control feedback module will receive the feedback of the user's temperature adjustment and control the temperature through the signal receiver.
4、该远洋渔船船用空调循环系统,通过设置的第二反馈模块,能通过若干个湿度传感器进行对湿度的查看,通过设置的湿度设置接入模块,能接入湿度自调节模块对湿度的自调节,若使用者需要对湿度进行控制和调节时,通过设置的信号接收器,可对系统进行加湿或除湿的控制。4. The marine air-conditioning circulation system of ocean-going fishing boats can check the humidity through several humidity sensors through the set second feedback module, and can access the humidity self-regulating module to adjust the humidity automatically through the set humidity setting access module. Adjustment, if the user needs to control and adjust the humidity, the system can be controlled for humidification or dehumidification through the set signal receiver.
5、该远洋渔船船用空调循环系统,通过设置的水泵传感器,接入监测模块内部的传感器后,能根据传感器所发送的数据,对水泵的转速进行自调节,能大大减少调节水泵所耗费的电量。5. The marine air-conditioning circulation system of ocean-going fishing boats can self-adjust the speed of the water pump according to the data sent by the sensor after the water pump sensor is connected to the sensor inside the monitoring module, which can greatly reduce the power consumption of adjusting the water pump .
附图说明Description of drawings
图1是本发明主控单元的系统图;Fig. 1 is a system diagram of the main control unit of the present invention;
图2是本发明监测模块的系统图;Fig. 2 is a system diagram of the monitoring module of the present invention;
图3是本发明温度上调控制模块的系统图;Fig. 3 is a system diagram of the temperature raising control module of the present invention;
图4是本发明加湿模块的系统图;Fig. 4 is a system diagram of the humidification module of the present invention;
图5是本发明设置模块的系统图。Fig. 5 is a system diagram of the setting module of the present invention.
具体实施方式Detailed ways
为使本发明实现的技术手段、创作特征、达成目的与功效易于明白了解,下面结合具体实施方式,进一步阐述本发明。In order to make the technical means, creative features, goals and effects achieved by the present invention easy to understand, the present invention will be further described below in conjunction with specific embodiments.
具体实施例一:Specific embodiment one:
如图1-5所示,一种远洋渔船船用空调循环系统,包括主控单元,主控单元电连接有船体空调控制单元,船体空调控制单元电连接有监测模块,监测模块电连接有水泵传感器,监测模块电连接有警告单元,监测模块电连接有故障排查单元,故障排查单元电连接有接收模块,主控单元电连接有湿度调节单元,主控单元电连接有温控单元,温控单元电连接有设置模块,监测模块电连接有压缩机传感器、冷凝器传感器、换热器传感器、蒸发器传感器、风扇传感器和空调电力监测模块,空调电力监测模块电连接有电源服务器,温控单元电连接有第一反馈模块,第一反馈模块电连接有温度传感器一、温度传感器二和温度传感器N,温控单元电连接有温度上调控制模块、温度设置接入模块和温度下调控制模块,温度下调控制模块电连接有温度控制反馈模块,温度控制反馈模块电连接有信号接收器,湿度调节单元电连接有第二反馈模块,第二反馈模块电连接有湿度传感器一、湿度传感器二和湿度传感器N,湿度调节单元电连接有加湿模块、湿度设置接入模块和除湿模块,设置模块电连接有温度设置模块和湿度设置模块,温度设置模块电连接有第一反馈模块,第一反馈模块电连接有温度自调节模块,湿度设置模块电连接有第二反馈模块,第二反馈模块电连接有湿度自调节模块,船体空调控制单元的输出端与船体房间一、船体房间二和船体房间N的输入端电连接,船体空调控制单元的输出端与监测模块的输入端电连接,监测模块的输出端与水泵传感器的输入端电连接,监测模块的输出端与警告单元的输入端电连接,监测模块的输出端与故障排查单元的输入端电连接,故障排查单元的输出端与接收模块的输入端电连接,监测模块包括压缩机传感器、冷凝器传感器、换热器传感器、蒸发器传感器、风扇传感器和空调电力监测模块,空调电力监测模块的输出端与电源服务器的输入端电连接,湿度调节单元和温控单元的输出端与设置模块的输入端电连接,温控单元的输入端与第一反馈模块的输出端电连接,第一反馈模块的输入端与温度传感器一、温度传感器二和温度传感器N的输入端电连接,温控单元的输出端与温度上调控制模块、温度设置接入模块和温度下调控制模块的输入端电连接,温度上调控制模块和温度下调控制模块的输出端与温度控制反馈模块的输入端电连接,温度控制反馈模块的输出端与信号接收器的输入端电连接,湿度调节单元的输入端与第二反馈模块的输出端电连接,第二反馈模块的输出端与湿度传感器一、湿度传感器二和湿度传感器N的输入端电连接,湿度调节单元的输出端与加湿模块、湿度设置接入模块和除湿模块的输入端电连接,加湿模块和除湿模块的输出端与信号接收器的输入端电连接,设置模块包括温度设置模块和湿度设置模块,温度设置模块的输出端与第一反馈模块的输入端电连接,第一反馈模块的输出端与温度自调节模块的输入端电连接,湿度设置模块的输出端与第二反馈模块的输入端电连接,第二反馈模块的输出端与湿度自调节模块的输入端电连接。As shown in Figure 1-5, a marine air-conditioning circulation system for ocean-going fishing vessels includes a main control unit, the main control unit is electrically connected to a hull air-conditioning control unit, the hull air-conditioning control unit is electrically connected to a monitoring module, and the monitoring module is electrically connected to a water pump sensor , the monitoring module is electrically connected to a warning unit, the monitoring module is electrically connected to a troubleshooting unit, the troubleshooting unit is electrically connected to a receiving module, the main control unit is electrically connected to a humidity adjustment unit, the main control unit is electrically connected to a temperature control unit, and the temperature control unit The monitoring module is electrically connected with a compressor sensor, a condenser sensor, a heat exchanger sensor, an evaporator sensor, a fan sensor, and an air-conditioning power monitoring module. The air-conditioning power monitoring module is electrically connected with a power server. A first feedback module is connected, and the first feedback module is electrically connected to temperature sensor 1, temperature sensor 2 and temperature sensor N, and the temperature control unit is electrically connected to a temperature up-regulation control module, a temperature setting access module and a temperature down-regulation control module, and the temperature down-regulation The control module is electrically connected to a temperature control feedback module, the temperature control feedback module is electrically connected to a signal receiver, the humidity adjustment unit is electrically connected to a second feedback module, and the second feedback module is electrically connected to humidity sensor 1, humidity sensor 2 and humidity sensor N , the humidity adjustment unit is electrically connected to a humidification module, a humidity setting access module and a dehumidification module, the setting module is electrically connected to a temperature setting module and a humidity setting module, the temperature setting module is electrically connected to a first feedback module, and the first feedback module is electrically connected to a The temperature self-regulating module, the humidity setting module is electrically connected to the second feedback module, the second feedback module is electrically connected to the humidity self-regulating module, the output end of the hull air-conditioning control unit is connected to the input ends of hull room 1, hull room 2 and hull room N Electrical connection, the output end of the hull air-conditioning control unit is electrically connected to the input end of the monitoring module, the output end of the monitoring module is electrically connected to the input end of the water pump sensor, the output end of the monitoring module is electrically connected to the input end of the warning unit, the monitoring module The output terminal is electrically connected to the input terminal of the troubleshooting unit, and the output terminal of the troubleshooting unit is electrically connected to the input terminal of the receiving module. The monitoring module includes a compressor sensor, a condenser sensor, a heat exchanger sensor, an evaporator sensor, a fan sensor and The air-conditioning power monitoring module, the output end of the air-conditioning power monitoring module is electrically connected to the input end of the power server, the output end of the humidity adjustment unit and the temperature control unit are electrically connected to the input end of the setting module, and the input end of the temperature control unit is connected to the first feedback The output terminals of the modules are electrically connected, the input terminals of the first feedback module are electrically connected with the input terminals of temperature sensor 1, temperature sensor 2 and temperature sensor N, and the output terminals of the temperature control unit are connected with the temperature raising control module, the temperature setting access module and The input end of the temperature down control module is electrically connected, the output ends of the temperature up control module and the temperature down control module are electrically connected to the input end of the temperature control feedback module, the output end of the temperature control feedback module is electrically connected to the input end of the signal receiver, The input end of the humidity adjustment unit is electrically connected to the output end of the second feedback module, and the output end of the second feedback module is connected to the humidity sensor 1, humidity sensor 2 and humidity sensor N The input end of the humidity adjustment unit is electrically connected to the input end of the humidification module, the humidity setting access module and the input end of the dehumidification module, the output end of the humidification module and the dehumidification module are electrically connected to the input end of the signal receiver, and the setting module It includes a temperature setting module and a humidity setting module, the output end of the temperature setting module is electrically connected to the input end of the first feedback module, the output end of the first feedback module is electrically connected to the input end of the temperature self-regulating module, and the output end of the humidity setting module It is electrically connected to the input end of the second feedback module, and the output end of the second feedback module is electrically connected to the input end of the humidity self-regulating module.
具体实施例二:Specific embodiment two:
一种远洋渔船船用空调循环系统,包括主控单元,主控单元电连接有船体空调控制单元,船体空调控制单元电连接有监测模块,监测模块电连接有水泵传感器,监测模块电连接有警告单元,监测模块电连接有故障排查单元,故障排查单元电连接有接收模块,主控单元电连接有湿度调节单元,主控单元电连接有温控单元,温控单元电连接有设置模块,监测模块电连接有压缩机传感器、冷凝器传感器、换热器传感器、蒸发器传感器、风扇传感器和空调电力监测模块,空调电力监测模块电连接有电源服务器,温控单元电连接有第一反馈模块,第一反馈模块电连接有温度传感器一、温度传感器二和温度传感器N,温控单元电连接有温度上调控制模块、温度设置接入模块和温度下调控制模块,温度下调控制模块电连接有温度控制反馈模块,温度控制反馈模块电连接有信号接收器,湿度调节单元电连接有第二反馈模块,第二反馈模块电连接有湿度传感器一、湿度传感器二和湿度传感器N,湿度调节单元电连接有加湿模块、湿度设置接入模块和除湿模块,设置模块电连接有温度设置模块和湿度设置模块,温度设置模块电连接有第一反馈模块,第一反馈模块电连接有温度自调节模块,湿度设置模块电连接有第二反馈模块,第二反馈模块电连接有湿度自调节模块,船体空调控制单元的输出端与船体房间一、船体房间二和船体房间N的输入端电连接,其中船体房间的数量和远洋渔船内的房间数量一致,船体空调控制单元的输出端与监测模块的输入端电连接,监测模块的输出端与水泵传感器的输入端电连接,监测模块的输出端与警告单元的输入端电连接,监测模块的输出端与故障排查单元的输入端电连接,故障排查单元的输出端与接收模块的输入端电连接,监测模块包括压缩机传感器、冷凝器传感器、换热器传感器、蒸发器传感器、风扇传感器和空调电力监测模块,空调电力监测模块的输出端与电源服务器的输入端电连接,其中电源服务器包括电流脉冲传感器、霍尔传感器、电磁场检测模块和电源监测模块,湿度调节单元和温控单元的输出端与设置模块的输入端电连接,温控单元的输入端与第一反馈模块的输出端电连接,第一反馈模块的输入端与温度传感器一、温度传感器二和温度传感器N的输入端电连接,温控单元的输出端与温度上调控制模块、温度设置接入模块和温度下调控制模块的输入端电连接,温度上调控制模块和温度下调控制模块的输出端与温度控制反馈模块的输入端电连接,温度控制反馈模块的输出端与信号接收器的输入端电连接,其中温度传感器有若干个,温度传感器的数量和船体房间的数量一致,湿度调节单元的输入端与第二反馈模块的输出端电连接,第二反馈模块的输出端与湿度传感器一、湿度传感器二和湿度传感器N的输入端电连接,湿度调节单元的输出端与加湿模块、湿度设置接入模块和除湿模块的输入端电连接,加湿模块和除湿模块的输出端与信号接收器的输入端电连接,其中湿度传感器有若干个,湿度传感器的数量和船体房间的数量一致,设置模块包括温度设置模块和湿度设置模块,温度设置模块的输出端与第一反馈模块的输入端电连接,第一反馈模块的输出端与温度自调节模块的输入端电连接,湿度设置模块的输出端与第二反馈模块的输入端电连接,第二反馈模块的输出端与湿度自调节模块的输入端电连接。A marine air-conditioning circulation system for ocean-going fishing vessels, comprising a main control unit, the main control unit is electrically connected to a hull air-conditioning control unit, the hull air-conditioning control unit is electrically connected to a monitoring module, the monitoring module is electrically connected to a water pump sensor, and the monitoring module is electrically connected to a warning unit , the monitoring module is electrically connected to a troubleshooting unit, the troubleshooting unit is electrically connected to a receiving module, the main control unit is electrically connected to a humidity adjustment unit, the main control unit is electrically connected to a temperature control unit, the temperature control unit is electrically connected to a setting module, and a monitoring module The compressor sensor, condenser sensor, heat exchanger sensor, evaporator sensor, fan sensor and air-conditioning power monitoring module are electrically connected, the air-conditioning power monitoring module is electrically connected to the power server, and the temperature control unit is electrically connected to the first feedback module. A feedback module is electrically connected with temperature sensor 1, temperature sensor 2 and temperature sensor N, and the temperature control unit is electrically connected with a temperature up-regulation control module, a temperature setting access module and a temperature down-regulation control module, and the temperature down-regulation control module is electrically connected with a temperature control feedback module, the temperature control feedback module is electrically connected to a signal receiver, the humidity adjustment unit is electrically connected to a second feedback module, the second feedback module is electrically connected to humidity sensor 1, humidity sensor 2 and humidity sensor N, and the humidity adjustment unit is electrically connected to a humidification Module, humidity setting access module and dehumidification module, the setting module is electrically connected to a temperature setting module and a humidity setting module, the temperature setting module is electrically connected to a first feedback module, the first feedback module is electrically connected to a temperature self-regulating module, and a humidity setting module The second feedback module is electrically connected to a humidity self-regulating module, and the output end of the hull air-conditioning control unit is electrically connected to the input ends of hull room 1, hull room 2, and hull room N, wherein the number of hull rooms Consistent with the number of rooms in the ocean-going fishing boat, the output end of the hull air-conditioning control unit is electrically connected to the input end of the monitoring module, the output end of the monitoring module is electrically connected to the input end of the water pump sensor, and the output end of the monitoring module is electrically connected to the input end of the warning unit. Electrical connection, the output end of the monitoring module is electrically connected to the input end of the troubleshooting unit, the output end of the troubleshooting unit is electrically connected to the input end of the receiving module, and the monitoring module includes a compressor sensor, a condenser sensor, a heat exchanger sensor, an evaporation Sensor sensor, fan sensor and air-conditioning power monitoring module, the output end of the air-conditioning power monitoring module is electrically connected to the input end of the power server, wherein the power server includes a current pulse sensor, a Hall sensor, an electromagnetic field detection module and a power monitoring module, and a humidity adjustment unit The output end of the temperature control unit is electrically connected to the input end of the setting module, the input end of the temperature control unit is electrically connected to the output end of the first feedback module, and the input end of the first feedback module is connected to temperature sensor 1, temperature sensor 2 and temperature The input end of the sensor N is electrically connected, the output end of the temperature control unit is electrically connected to the input ends of the temperature up-regulation control module, the temperature setting access module and the temperature down-regulation control module, and the output ends of the temperature up-regulation control module and the temperature down-regulation control module are connected to the temperature The input end of the control feedback module is electrically connected, the output end of the temperature control feedback module is electrically connected to the input end of the signal receiver, and the temperature There are several temperature sensors, the number of temperature sensors is consistent with the number of hull rooms, the input end of the humidity adjustment unit is electrically connected to the output end of the second feedback module, and the output end of the second feedback module is connected to humidity sensor one, humidity sensor two and The input end of the humidity sensor N is electrically connected, the output end of the humidity adjustment unit is electrically connected to the input end of the humidification module, the humidity setting access module and the dehumidification module, and the output end of the humidification module and the dehumidification module is electrically connected to the input end of the signal receiver , wherein there are several humidity sensors, the number of humidity sensors is consistent with the number of hull rooms, the setting module includes a temperature setting module and a humidity setting module, the output end of the temperature setting module is electrically connected with the input end of the first feedback module, and the first feedback module The output end of the module is electrically connected to the input end of the temperature self-regulating module, the output end of the humidity setting module is electrically connected to the input end of the second feedback module, and the output end of the second feedback module is electrically connected to the input end of the humidity self-regulating module.
通过设置的船体空调控制单元,能对船体房间的空调进行开启或关闭,通过设置的监测模块,能对船体空调的循环系统进行监测,能通过压缩机传感器、冷凝器传感器、换热器传感器、蒸发器传感器、风扇传感器和空调电力监测模块,对空调循环系统内的压缩机、冷凝器、换热器、蒸发器、风扇和电力进行监测,通过设置的空调电力监测模块,能对空调电力中的电流脉冲、电磁场和电源进行监测,若任何一处出现故障,则会通过设置的警告单元,对船体进行警告,同时通过设置的故障排查单元,可对出现故障的船体进行排查,以此能更快寻找到故障的地点,通过设置的设置模块,能对温度和湿度进行设置,以此船体的温度和湿度能根据温度和湿度传感器进行反馈,使得温度自调节模块和湿度调节单元能对船体的温度和湿度进行自行调节,通过设置的温控单元,能对空调的温度进行调节,通过设置的第一反馈模块,能通过若干个放置在船体处的温度传感器,进行温度的反馈,温度设置接入模块能根据温度自调节模块进行自调节,若使用者需要对温度进行调节时,则温度控制反馈模块会收到使用者温度调节的反馈,并通过信号接收器进行温度的控制,通过设置的第二反馈模块,能通过若干个湿度传感器进行对湿度的查看,通过设置的湿度设置接入模块,能接入湿度自调节模块对湿度的自调节,若使用者需要对湿度进行控制和调节时,通过设置的信号接收器,可对系统进行加湿或除湿的控制,通过设置的水泵传感器,接入监测模块内部的传感器后,能根据传感器所发送的数据,对水泵的转速进行自调节,能大大减少调节水泵所耗费的电量。Through the hull air-conditioning control unit, the air-conditioning in the hull room can be turned on or off; through the monitoring module, the circulation system of the hull air-conditioning can be monitored, and the compressor sensor, condenser sensor, heat exchanger sensor, The evaporator sensor, fan sensor and air-conditioning power monitoring module monitor the compressor, condenser, heat exchanger, evaporator, fan and power in the air-conditioning circulation system. The current pulse, electromagnetic field and power supply are monitored. If any fault occurs, the hull will be warned through the set warning unit. At the same time, the faulty hull can be checked through the set fault troubleshooting unit. Find the location of the fault faster. Through the setting module, the temperature and humidity can be set, so that the temperature and humidity of the hull can be fed back according to the temperature and humidity sensor, so that the temperature self-regulation module and the humidity adjustment unit can control the hull. The temperature and humidity of the ship can be adjusted by itself, and the temperature of the air conditioner can be adjusted through the set temperature control unit. Through the set first feedback module, the temperature feedback can be carried out through several temperature sensors placed on the hull, and the temperature setting The access module can self-regulate according to the temperature self-regulation module. If the user needs to adjust the temperature, the temperature control feedback module will receive the feedback of the user's temperature adjustment, and control the temperature through the signal receiver. By setting The second feedback module can check the humidity through several humidity sensors. Through the set humidity setting access module, it can be connected to the humidity self-regulation module to self-regulate the humidity. If the user needs to control and adjust the humidity At the same time, through the set signal receiver, the system can be controlled for humidification or dehumidification. After the set water pump sensor is connected to the sensor inside the monitoring module, the speed of the water pump can be self-adjusted according to the data sent by the sensor. It can greatly reduce the power consumption of adjusting the water pump.
需要说明的是,本发明为一种远洋渔船船用空调循环系统,使用时由船体空调控制单元对船体房间的空调进行启动和关闭,监测模块对空调循环系统内的压缩机、冷凝器、换热器、蒸发器、风扇和电力进行监测,由空调电力监测模块,对空调电力中的电流脉冲、电磁场和电源进行监测,若任何一处出现故障,则会接入警告单元,对船体进行警告,同时故障排查单元可对出现故障的船体进行排查,以此能更快寻找到故障的地点,设置模块可对温度和湿度进行设置,船体的温度和湿度能根据温度和湿度传感器进行反馈,使得温度自调节模块和湿度调节单元能对船体的温度和湿度进行自行调节,温控单元可对空调的温度进行调节,第一反馈模块通过若干个放置在船体处的温度传感器,进行温度的反馈,温度设置接入模块会根据温度自调节模块进行自调节,若使用者需要对温度进行调节时,温度控制反馈模块会收到使用者温度调节的反馈,并通过信号接收器进行温度的控制,第二反馈模块会通过若干个湿度传感器以方便使用者对湿度的查看,湿度设置接入模块接入湿度自调节模块后,可对湿度进行自调节,若使用者需要对湿度进行控制和调节时,信号接收器可对系统进行加湿或除湿的控制,水泵传感器接入监测模块内部的传感器后,能根据传感器所发送的数据,对水泵的转速进行自调节。It should be noted that the present invention is a marine air-conditioning cycle system for ocean-going fishing boats. When in use, the air-conditioning in the hull room is turned on and off by the hull air-conditioning control unit, and the monitoring module controls the compressors, condensers, heat exchangers, etc. The air conditioner, evaporator, fan and power are monitored. The air conditioner power monitoring module monitors the current pulse, electromagnetic field and power supply in the air conditioner power. If any fault occurs, it will be connected to the warning unit to warn the hull. At the same time, the troubleshooting unit can check the malfunctioning hull, so as to find the location of the malfunction faster. The setting module can set the temperature and humidity. The temperature and humidity of the hull can be fed back according to the temperature and humidity sensors, so that the temperature The self-regulating module and the humidity regulating unit can self-regulate the temperature and humidity of the hull. The temperature control unit can regulate the temperature of the air conditioner. The first feedback module performs temperature feedback through several temperature sensors placed on the hull. Set the access module to self-regulate according to the temperature self-regulation module. If the user needs to adjust the temperature, the temperature control feedback module will receive the feedback of the user's temperature adjustment and control the temperature through the signal receiver. The second The feedback module will use several humidity sensors to facilitate the user to check the humidity. After the humidity setting access module is connected to the humidity self-adjusting module, the humidity can be self-adjusted. If the user needs to control and adjust the humidity, the signal The receiver can control the humidification or dehumidification of the system. After the water pump sensor is connected to the sensor inside the monitoring module, it can self-adjust the speed of the water pump according to the data sent by the sensor.
以上显示和描述了本发明的基本原理和主要特征和本发明的优点。本行业的技术人员应该了解,本发明不受上述实施例的限制,上述实施例和说明书中描述的只是说明本发明的原理,在不脱离本发明精神和范围的前提下,本发明还会有各种变化和改进,这些变化和改进都落入要求保护的本发明范围内。本发明要求保护范围由所附的权利要求书及其等效物界定。The basic principles and main features of the present invention and the advantages of the present invention have been shown and described above. Those skilled in the industry should understand that the present invention is not limited by the above-mentioned embodiments, and what described in the above-mentioned embodiments and the description only illustrates the principles of the present invention, and the present invention will also have other functions without departing from the spirit and scope of the present invention. Variations and improvements all fall within the scope of the claimed invention. The protection scope of the present invention is defined by the appended claims and their equivalents.
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202211220383.4ACN115626274A (en) | 2022-10-08 | 2022-10-08 | Marine air conditioner circulation system of ocean fishing boat |
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202211220383.4ACN115626274A (en) | 2022-10-08 | 2022-10-08 | Marine air conditioner circulation system of ocean fishing boat |
| Publication Number | Publication Date |
|---|---|
| CN115626274Atrue CN115626274A (en) | 2023-01-20 |
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| CN202211220383.4APendingCN115626274A (en) | 2022-10-08 | 2022-10-08 | Marine air conditioner circulation system of ocean fishing boat |
| Country | Link |
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| CN (1) | CN115626274A (en) |
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| CN204642142U (en)* | 2015-05-27 | 2015-09-16 | 郭行健 | Cabin ventilated control system |
| CN106885350A (en)* | 2017-04-17 | 2017-06-23 | 嘉鸿(上海)信息科技咨询有限公司 | A kind of air conditioner energy conservation control system |
| CN110220268A (en)* | 2019-05-08 | 2019-09-10 | 邦奇智能科技(上海)股份有限公司 | A kind of Intelligent air conditioner control system |
| Publication number | Priority date | Publication date | Assignee | Title |
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| CN204642142U (en)* | 2015-05-27 | 2015-09-16 | 郭行健 | Cabin ventilated control system |
| CN106885350A (en)* | 2017-04-17 | 2017-06-23 | 嘉鸿(上海)信息科技咨询有限公司 | A kind of air conditioner energy conservation control system |
| CN110220268A (en)* | 2019-05-08 | 2019-09-10 | 邦奇智能科技(上海)股份有限公司 | A kind of Intelligent air conditioner control system |
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