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【中文】何志炜【EN】He Zhiwei
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1:
[发明]
【中文】一种穿戴时可避免吸水变湿的勾接型内裤 【EN】Can avoid catching up type pants that absorbs water becomes wet when dressing
申请号:
202010011820.6
公开号:CN111067157A 主分类号:A41B9/00
申请人:
【中文】何志炜【EN】He Zhiwei
申请日:2020.01.07 公开日:2020.04.28
发明人:
【中文】何志炜【EN】He Zhiwei
摘要:【中文】本技术公开一种穿戴时可避免吸水变湿的勾接型内裤,包括有前幅和后幅,前幅两侧都成型有上下走向的分离槽口,分离槽口的两侧壁之间设置有扣钩组件,由扣钩组件实现勾接,本内裤可直接在人体的臀部进行穿戴,无需经过腿部,可避免洗澡后穿戴时内裤吸收到腿部水分而导致变湿的问题,提高内裤穿戴的健康。 【EN】The utility model discloses a can avoid absorbing water and become wet hook-up type pants when dressing, including preceding width of cloth and back width of cloth, preceding width of cloth both sides all shaping have the separation notch of trend from top to bottom, are provided with the clip subassembly between the both sides wall of separation notch, realize the hook-up by the clip subassembly, and this pants can directly be dressed at human buttock, need not through the shank, and pants absorb the problem that the shank moisture leads to becoming wet when dressing after can avoiding bathing, improve the health that pants dressed.
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2:
[发明]
【中文】一种空调控制方法、装置、存储介质及空调 【EN】Air conditioner control method and device, storage medium and air conditioner
申请号:
201911052464.6
公开号:CN110986287A 主分类号:F24F11/46
申请人:
【中文】珠海格力电器股份有限公司【EN】GREE ELECTRIC APPLIANCES, INC. OF ZHUHAI
申请日:2019.10.31 公开日:2020.04.10
发明人:
【中文】陈姣
;
何振健
;
林金煌
;
冯青龙
;
戴志炜【EN】Chen Jiao
;
He Zhenjian
;
Lin Jinhuang
;
Feng Qinglong
;
Dai Zhiwei
摘要:【中文】本发明提供一种空调控制方法、装置、存储介质及空调,所述方法包括:获取所述空调所在房间的冷负荷或热负荷需求和所述空调的名义制冷或制热量;根据所述冷负荷或热负荷需求和所述空调的名义制冷或制热量,确定所述空调的输出冷量或热量;获取所述空调所在房间的布局信息;根据所述空调的输出冷量或热量以及所述布局信息,确定所述空调的出风方式。本发明提供的方案能够使空调器针对不同的冷量或热量需求个性化运行,提高了空调器的适应性。 【EN】The invention provides an air conditioner control method, an air conditioner control device, a storage medium and an air conditioner, wherein the method comprises the following steps: acquiring the cold load or heat load demand of a room where the air conditioner is located and the nominal refrigerating or heating capacity of the air conditioner; determining the output cold quantity or heat quantity of the air conditioner according to the cold load or heat load demand and the nominal refrigeration or heating quantity of the air conditioner; acquiring layout information of a room where the air conditioner is located; and determining the air outlet mode of the air conditioner according to the output cold or heat of the air conditioner and the layout information. The scheme provided by the invention can enable the air conditioner to operate in an individualized way according to different cold or heat requirements, and the adaptability of the air conditioner is improved.
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3:
[发明]
【中文】一种自适应人体舒适度空调的控制方法及空调 【EN】Control method of air conditioner adaptive to human body comfort degree and air conditioner
申请号:
201911359543.1
公开号:CN111059729A 主分类号:F24F11/64
申请人:
【中文】珠海格力电器股份有限公司【EN】GREE ELECTRIC APPLIANCES, INC. OF ZHUHAI
申请日:2019.12.25 公开日:2020.04.24
发明人:
【中文】冯青龙
;
何振健
;
林金煌
;
陈姣
;
戴志炜【EN】Feng Qinglong
;
He Zhenjian
;
Lin Jinhuang
;
Chen Jiao
;
Dai Zhiwei
摘要:【中文】本发明涉及一种自适应人体舒适度空调的控制方法及空调,所述空调在房间内设置有两个并联设置的第一室内换热器和第二室内换热器,且第一室内换热器的并联支路上设有对应的第一电子膨胀阀,第二室内换热器的并联支路上设有对应的第二电子膨胀阀。当判断需要进行房间空气的温度和/或湿度的调节时,控制设置所述第一电子膨胀阀和第二电子膨胀阀的开度对所述并联支路的冷媒流量进行调节,直到房间温度、湿度均调节到满足人体舒适区预设参数范围或者用户设定参数范围。当空调制热运行时通过第一电子膨胀阀、第二电子膨胀阀的控制提高冷媒的蒸发温度,实现房间持续制热的时候可执行化霜和/或除霜的操作。 【EN】The invention relates to a control method of an air conditioner adaptive to human body comfort degree and the air conditioner. When the temperature and/or the humidity of the room air are/is judged to be required to be adjusted, the opening degrees of the first electronic expansion valve and the second electronic expansion valve are controlled and set to adjust the refrigerant flow of the parallel branch until the room temperature and the humidity are adjusted to meet the preset parameter range of the human body comfort area or the parameter range set by a user. When the air conditioner is in heating operation, the evaporation temperature of the refrigerant is increased through the control of the first electronic expansion valve and the second electronic expansion valve, and defrosting and/or defrosting operation can be performed when the room is continuously heated.
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4:
[发明]
【中文】一种空调系统及其控制方法 【EN】Air conditioning system and control method thereof
申请号:
202010034517.8
公开号:CN111207450A 主分类号:F24F1/0059
申请人:
【中文】珠海格力电器股份有限公司【EN】GREE ELECTRIC APPLIANCES, INC. OF ZHUHAI
申请日:2020.01.14 公开日:2020.05.29
发明人:
【中文】冯青龙
;
戴志炜
;
何振健
;
潘龙腾
;
陈红光
;
刘德茂【EN】Feng Qinglong
;
Dai Zhiwei
;
He Zhenjian
;
Pan Longteng
;
Chen Hongguang
;
Liu Demao
摘要:【中文】本发明涉及一种空调系统及其控制方法,该系统包括:室内蒸发器,包括上段蒸发器和下段蒸发器;多个温度检测装置,用于检测所述室内蒸发器的蒸发温度;控制装置,用于根据所述蒸发温度,控制空调系统的冷媒流量。本发明提供的技术方案,通过在室内蒸发器上设置多个温度检测装置,使得空调系统低温制冷运行时,可以有效检测到蒸发器各个部位的蒸发温度,从而使得根据所述蒸发温度控制空调系统的冷媒流量后,蒸发器不会局部结霜,保证了空调的制冷能力,同时也保证了空调系统控制的及时性、可靠性。 【EN】The present invention relates to an air conditioning system and a control method thereof, the system including: the indoor evaporator comprises an upper section evaporator and a lower section evaporator; a plurality of temperature detection means for detecting an evaporation temperature of the indoor evaporator; and the control device is used for controlling the refrigerant flow of the air conditioning system according to the evaporation temperature. According to the technical scheme provided by the invention, the plurality of temperature detection devices are arranged on the indoor evaporator, so that the evaporation temperature of each part of the evaporator can be effectively detected when the air-conditioning system is operated at low temperature for refrigeration, and the evaporator can not be locally frosted after the refrigerant flow of the air-conditioning system is controlled according to the evaporation temperature, the refrigeration capacity of the air conditioner is ensured, and the timeliness and the reliability of the control of the air-conditioning system are also ensured.
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5:
[发明]
【中文】综合环境试验设备 【EN】Comprehensive environment test equipment
申请号:
202010046045.8
公开号:CN111157438A 主分类号:G01N17/00
申请人:
【中文】广州五所环境仪器有限公司【EN】GUANGZHOU WUSUO ENVIRONMENTAL EQUIPMENT Co.,Ltd.
申请日:2020.01.16 公开日:2020.05.15
发明人:
【中文】周启杜
;
胡湘洪
;
谢勇期
;
谢晨浩
;
江志炜
;
何朝辉【EN】Zhou Qidu
;
Hu Xianghong
;
Xie Yongqi
;
Xie Chenhao
;
Jiang Zhiwei
;
He Chaohui
摘要:【中文】本发明涉及一种综合环境试验设备,能够利用日照机构、盐雾机构、温湿调节机构和振动机构提供高温、高湿、高盐雾和高辐射环境。而基于日照光源不能在高温高湿环境下工作,因此在试验腔的顶壁设置安装通孔,将日照光源设置在试验腔外。而安装通孔的设置使得试验腔中在营造湿度或盐雾环境时无法与外界隔绝,导致试验准确性降低。基于此进一步设置密封保温件,在需要制造湿度或盐雾环境时,利用密封保温件将安装通孔进行密封。密封保温件设置在盐雾罩上,盐雾罩能够沿导向件滑动。当需要密封安装通孔时,盐雾罩移动到安装通孔下方,密封保温件将安装通孔密封。不需要密封时,密封保温件则与盐雾罩一起存储在暂存腔中,降低设备所占用的空间。 【EN】The invention relates to a comprehensive environment test device which can provide high-temperature, high-humidity, high-salt fog and high-radiation environments by utilizing a sunlight mechanism, a salt fog mechanism, a temperature and humidity adjusting mechanism and a vibration mechanism. And can not work under the high temperature and high humidity environment based on sunshine light source, consequently set up the installation through-hole at the roof of test chamber, set up the sunshine light source outside the test chamber. And the setting up of installation through-hole makes unable isolated with external when building humidity or salt fog environment in the test cavity, leads to experimental accuracy to reduce. And a sealing heat-insulating piece is further arranged on the base, and the mounting through hole is sealed by the sealing heat-insulating piece when the humidity or salt mist environment needs to be manufactured. The sealed heat preservation piece sets up on the salt fog cover, and the salt fog cover can slide along the guide. When the installation through hole needs to be sealed, the salt fog cover moves to the lower side of the installation through hole, and the installation through hole is sealed by the sealed heat-insulating piece. When sealing is not needed, the sealing heat-preservation part and the salt fog cover are stored in the temporary storage cavity together, and the space occupied by equipment is reduced.
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6:
[发明]
【中文】空调除霜控制方法、装置及空调 【EN】Air conditioner defrosting control method and device and air conditioner
申请号:
201911343091.8
公开号:CN111059700A 主分类号:F24F11/42
申请人:
【中文】珠海格力电器股份有限公司【EN】GREE ELECTRIC APPLIANCES, INC. OF ZHUHAI
申请日:2019.12.24 公开日:2020.04.24
发明人:
【中文】冯青龙
;
戴志炜
;
何振健
;
陈姣
;
邹云辉
;
陈锐东【EN】Feng Qinglong
;
Dai Zhiwei
;
He Zhenjian
;
Chen Jiao
;
Zou Yunhui
;
Chen Ruidong
摘要:【中文】本申请涉及空调除霜控制方法、装置及空调,属于空调除霜技术领域。本申请包括:当满足除霜条件时,切入运行不停机除霜模式,不停机除霜模式的运行包括:冷媒主回路继续运行制热循环,且除霜旁通支路被利用从冷媒主回路引入除霜冷媒进入室外换热器中,使室外换热器除霜;获取不停机除霜模式运行下的运行参数;根据运行参数判断不停机除霜模式运行是否发生异常;当判断出发生异常时,将空调除霜切入运行逆向除霜模式,逆向除霜模式的运行包括:冷媒主回路运行制冷循环,且除霜旁通支路不被利用。通过本申请,有助于保障空调运行的可靠性,以保障空调的正常制热运行。 【EN】The application relates to an air conditioner defrosting control method and device and an air conditioner, and belongs to the technical field of air conditioner defrosting. The application includes: when the defrosting condition is met, a non-stop defrosting mode is switched in and operated, and the operation of the non-stop defrosting mode comprises the following steps: the refrigerant main loop continues to run the heating cycle, and the defrosting bypass branch is utilized to introduce defrosting refrigerant from the refrigerant main loop into the outdoor heat exchanger so as to defrost the outdoor heat exchanger; acquiring operation parameters under the operation of the non-stop defrosting mode; judging whether the operation of the non-stop defrosting mode is abnormal or not according to the operation parameters; when judging that the abnormity occurs, switching the defrosting of the air conditioner into a reverse defrosting mode, wherein the reverse defrosting mode comprises the following operation steps: the refrigerant main loop operates a refrigeration cycle, and the defrosting bypass branch is not utilized. Through the air conditioner, the reliability of the operation of the air conditioner is guaranteed, and the normal heating operation of the air conditioner is guaranteed.
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7:
[发明]
【中文】单离心风机出风控制方法、装置及控制器和空调机组 【EN】Air outlet control method and device for single centrifugal fan, controller and air conditioning unit
申请号:
201911343208.2
公开号:CN111089405A 主分类号:F24F11/72
申请人:
【中文】珠海格力电器股份有限公司【EN】GREE ELECTRIC APPLIANCES, INC. OF ZHUHAI
申请日:2019.12.24 公开日:2020.05.01
发明人:
【中文】冯青龙
;
王千千
;
潘龙腾
;
何振健
;
陈红光
;
戴志炜
;
王林【EN】Feng Qinglong
;
Wang Qianqian
;
Pan Longteng
;
He Zhenjian
;
Chen Hongguang
;
Dai Zhiwei
;
Wang Lin
摘要:【中文】本申请实施例提供一种单离心风机出风控制方法、装置及控制器和空调机组,涉及空调领域,在接收单离心风机出风状态的切换指令后,出风状态包括出风方式;根据单离心风机的出风速度,确定用于调整挡风板开度所采用的挡风板变化速度;根据所确定的挡风板变化速度调整挡风板开度,以切换至目标出风方式,完成出风方式的切换。本申请能够有效缓解出风口改变时的气流突变,使出风气流平稳过渡,噪音平稳变化,改善用户体验感。 【EN】The embodiment of the application provides a method and a device for controlling air outlet of a single centrifugal fan, a controller and an air conditioning unit, and relates to the field of air conditioning; determining the wind shield change speed adopted for adjusting the opening degree of the wind shield according to the wind outlet speed of the single centrifugal fan; and adjusting the opening degree of the wind shield according to the determined wind shield change speed so as to switch to a target air outlet mode and finish the switching of the air outlet mode. The air current sudden change when the air outlet changes can be effectively alleviated to this application, makes the air-out air current smooth transition, and the noise steady change improves user experience and feels.
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8:
[发明]
【中文】空调的控制方法、装置、存储介质及空调 【EN】Control method and device of air conditioner, storage medium and air conditioner
申请号:
202010010635.5
公开号:CN111174374A 主分类号:F24F11/41
申请人:
【中文】珠海格力电器股份有限公司【EN】GREE ELECTRIC APPLIANCES, INC. OF ZHUHAI
申请日:2020.01.06 公开日:2020.05.19
发明人:
【中文】谭建明
;
陈姣
;
何振健
;
梁博
;
林金煌
;
冯青龙
;
戴志炜
;
梁玉林
;
彭裕辉
;
刘雷明
;
郑丹平【EN】Tan Jianming
;
Chen Jiao
;
He Zhenjian
;
Liang Bo
;
Lin Jinhuang
;
Feng Qinglong
;
Dai Zhiwei
;
Liang Yulin
;
Peng Yuhui
;
Liu Leiming
;
Zheng Danping
摘要:【中文】本发明公开了一种空调的控制方法、装置、存储介质及空调,该方法包括:确定空调所处环境的室内环境温度在当前次除霜前后的第一温降信息,并确定空调所处环境的围护结构温度在当前次除霜前后的第二温降信息;根据室内环境温度在当前次除霜前后的第一温降信息、以及围护结构温度在当前次除霜前后的第二温降信息,对空调下次除霜的除霜控制方式进行调整,以实现对空调的除霜控制方式的动态调整。本发明的方案,可以解决根据室外换热器温度、或者室外换热器温度与室外环境温度的差值判定是否进入除霜,存在除霜自适应性差的问题,达到提升除霜自适应性的效果。 【EN】The invention discloses a control method and a control device of an air conditioner, a storage medium and the air conditioner, wherein the method comprises the following steps: determining first temperature drop information of the indoor environment temperature of the environment where the air conditioner is located before and after the current defrosting, and determining second temperature drop information of the enclosure structure temperature of the environment where the air conditioner is located before and after the current defrosting; and adjusting the next defrosting control mode of the air conditioner according to the first temperature drop information of the indoor environment temperature before and after the current defrosting and the second temperature drop information of the temperature of the enclosure structure before and after the current defrosting so as to dynamically adjust the defrosting control mode of the air conditioner. The scheme of the invention can solve the problem that the defrosting self-adaptability is poor when whether defrosting is started or not is judged according to the temperature of the outdoor heat exchanger or the difference value between the temperature of the outdoor heat exchanger and the outdoor environment temperature, and achieves the effect of improving the defrosting self-adaptability.
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9:
[发明]
【中文】空调柜机及空调器 【EN】Cabinet air conditioner and air conditioner
申请号:
201911342821.2
公开号:CN111076307A 主分类号:F24F1/0093
申请人:
【中文】珠海格力电器股份有限公司【EN】GREE ELECTRIC APPLIANCES, INC. OF ZHUHAI
申请日:2019.12.24 公开日:2020.04.28
发明人:
【中文】陈红光
;
潘龙腾
;
何振健
;
陈诚
;
陈姣
;
冯青龙
;
戴志炜
;
王千千
;
吴晓岳【EN】Chen Hongguang
;
Pan Longteng
;
He Zhenjian
;
Chen Cheng
;
Chen Jiao
;
Feng Qinglong
;
Dai Zhiwei
;
Wang Qianqian
;
Wu Xiaoyue
摘要:【中文】本发明提供了一种空调柜机及空调器,涉及空调器技术领域,解决了现有技术中存在的空调开启制热时,冷媒来不及产生热量,吹出热风有延迟,用户等待时间较长,影响使用体验的技术问题。该空调柜机包括风道;所述风道的内部设置有可转动的加热装置;离心风机产生的气流能够通过所述加热装置并被加热,由所述空调柜机的出风口排出。本发明通过加热装置对冷风进行快速加热后,开启制热时出风口就能够吹出热风,用户使用空调制热时不再需要等待,快速吹出热风让用户的体验更好。 【EN】The invention provides a cabinet air conditioner and an air conditioner, relates to the technical field of air conditioners and solves the technical problems that when the air conditioner is started to heat, a refrigerant is too late to generate heat, hot air is delayed to be blown out, waiting time of a user is long, and use experience is influenced in the prior art. The cabinet air conditioner comprises an air duct; a rotatable heating device is arranged inside the air channel; the air flow generated by the centrifugal fan can pass through the heating device and be heated, and is discharged from the air outlet of the cabinet air conditioner. According to the invention, after the heating device is used for rapidly heating cold air, the air outlet can blow out hot air when the air conditioner is started for heating, so that a user does not need to wait when using the air conditioner for heating, and the user experience is better due to rapid blowing of the hot air.
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[发明]
【中文】一种适用于空调内机的风道自清洁装置以及空调内机 【EN】Air duct self-cleaning device suitable for air conditioner indoor unit and air conditioner indoor unit
申请号:
201911342844.3
公开号:CN111076392A 主分类号:F24F13/00
申请人:
【中文】珠海格力电器股份有限公司【EN】GREE ELECTRIC APPLIANCES, INC. OF ZHUHAI
申请日:2019.12.24 公开日:2020.04.28
发明人:
【中文】陈红光
;
潘龙腾
;
何振健
;
陈诚
;
陈姣
;
王千千
;
吴晓岳
;
冯青龙
;
戴志炜【EN】Chen Hongguang
;
Pan Longteng
;
He Zhenjian
;
Chen Cheng
;
Chen Jiao
;
Wang Qianqian
;
Wu Xiaoyue
;
Feng Qinglong
;
Dai Zhiwei
摘要:【中文】本发明提供一种适用于空调内机的风道自清洁装置以及空调内机,涉及空调技术领域,解决了现有技术中存在的空调产生的大量冷凝水未进行收集利用,容易造成浪费的技术问题。适用于空调内机的风道自清洁装置包括固定安装于空调内机中的清洗液收集单元、清洗单元和排出管路,所述清洗单元靠近风轮设置,所述清洗液收集单元与所述清洗单元连通,所述排出管路与所述清洗液收集单元连通,其中,清洗液收集单元能够收集换热器产生的冷凝水为所述清洗单元提供清洗液实现自清洁,本发明将空调制冷过程中产生的冷凝水作为清洗液进行风道自清洁,对冷凝水进行了利用,避免了大量冷凝水的浪费。 【EN】The invention provides an air duct self-cleaning device suitable for an air conditioner indoor unit and the air conditioner indoor unit, relates to the technical field of air conditioners and solves the technical problem that a large amount of condensed water generated by an air conditioner in the prior art is not collected and utilized and is easy to cause waste. The air duct self-cleaning device suitable for the air conditioner indoor unit comprises a cleaning liquid collecting unit, a cleaning unit and a discharge pipeline, wherein the cleaning unit is fixedly arranged in the air conditioner indoor unit and is arranged close to a wind wheel, the cleaning liquid collecting unit is communicated with the cleaning unit, and the discharge pipeline is communicated with the cleaning liquid collecting unit, wherein the cleaning liquid collecting unit can collect condensed water generated by a heat exchanger to provide cleaning liquid for the cleaning unit to realize self cleaning.
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