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刘佰兰【EN】Wang Xin
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[发明]
【中文】一种功率模块温度检测控制方法、计算机可读存储介质及空调 【EN】Power module temperature detection control method, computer readable storage medium and air conditioner
申请号:
201911217038.3
公开号:CN111059696A 主分类号:F24F11/38
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:2019.12.03 公开日:2020.04.24
发明人:
【中文】覃琨
;
刘杰
;
王欣
;
鄢强强
;
刘佰兰
;
陈代兵
;
陈名才【EN】Qin Kun
;
Liu Jie
;
Wang Xin
;
Yan Qiangqiang
;
Liu Bailan
;
Chen Daibing
;
Chen Mingcai
摘要:【中文】本发明提供了一种功率模块温度检测控制方法、计算机可读存储介质及空调,在空调制热运行过程中,通过实时检测环境温度判断当前工作环境温度情况,进而检测功率模块温度,对功率模块温度数据计算分析判断是否存在故障。通过同步检测功率模块温度和环境温度,通过设定的判断程序判定功率模块温度检测故障,提高其检测的准确性,同时解决了空调误报功率模块温度检测故障的问题,保证了用户的使用体验。 【EN】The invention provides a power module temperature detection control method, a computer readable storage medium and an air conditioner. The temperature of the power module and the ambient temperature are synchronously detected, the temperature detection fault of the power module is judged through the set judgment program, the detection accuracy is improved, the problem that the temperature detection fault of the power module is reported by mistake by an air conditioner is solved, and the use experience of a user is ensured.
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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:
201911167396.8
公开号:CN111059725A 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:2019.11.25 公开日:2020.04.24
发明人:
【中文】王欣
;
廖禛
;
覃琨
;
陈代兵
;
陈名才
;
刘佰兰【EN】Wang Xin
;
Liao Die
;
Qin Kun
;
Chen Daibing
;
Chen Mingcai
;
Liu Bailan
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:在所述空调开机后,获取预先存储的用户设置过的导风板定格位置;根据所述用户设置过的导风板定格位置确定所述导风板当前的预期定格位置;控制所述空调的导风板定格至所述预期定格位置。本发明提供的方案能够实现空调开机后导风板直接定格至用户习惯位置,提高用户体验。 【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: after the air conditioner is started, acquiring a pre-stored air deflector freezing position set by a user; determining the current expected stop-motion position of the air deflector according to the stop-motion position of the air deflector set by the user; and controlling the air deflector of the air conditioner to freeze to the expected freezing position. The scheme provided by the invention can realize that the air deflector directly freezes to the position where the user is accustomed to after the air conditioner is started, and improve the user experience.
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3:
[发明]
【中文】一种基于吹填试验的珊瑚砂次压缩系数的测量方法 【EN】Method for measuring secondary compression coefficient of coral sand based on hydraulic reclamation test
申请号:
201911146287.8
公开号:CN110988300A 主分类号:G01N33/24
申请人:
【中文】北京城建集团有限责任公司
;
中航勘察设计研究院有限公司【EN】BEIJING URBAN CONSTRUCTION GROUP Co.,Ltd.
;
AVIC GEOTECHNICAL ENGINEERING INSTITUTE Co.,Ltd.
申请日:2019.11.19 公开日:2020.04.10
发明人:
【中文】王笃礼
;
肖国华
;
孙兰宁
;
黎良杰
;
李建光
;
邹桂高
;
蒋佰坤
;
刘欣
;
张绍栋
;
张凤林【EN】Wang Duli
;
Xiao Guohua
;
Sun Lanning
;
Li Liangjie
;
Li Jianguang
;
Zou Guigao
;
Jiang Baikun
;
Liu Xin
;
Zhang Shaodong
;
Zhang Fenglin
摘要:【中文】本发明是一种基于吹填试验的珊瑚砂次压缩系数的测量方法,该方法对于时间空间不均匀吹填珊瑚砂底层次压缩系数提供了一种测量计算方法,吹填海工程不同区域往往是不同时间吹填,不同厚度吹填,造成不同区域地层固结程度不同,后期沉降差异较大,采用理论难以较准确的计算出其最终沉降量,该计算方法充分利用场地历史条件、试验数据,最大限度的回归历史,模拟地层自固结沉降完成历史过程,对比新旧吹填、厚度不等处理后的地层沉降数据,充分分析地层历史差异性,当下数据差异性,得出历史与当下共性,进行对比分析,进而得出更加符合实际的次压缩系数。 【EN】The invention relates to a method for measuring secondary compressibility of coral sand based on a hydraulic fill test, which provides a measuring and calculating method for the secondary compressibility of coral sand at the bottom of hydraulic fill coral sand with nonuniform time and space, different areas of hydraulic fill sea engineering are always hydraulic filled at different times and hydraulic filled at different thicknesses, which causes different consolidation degrees of strata in different areas and larger later settlement difference, the final settlement amount of the hydraulic fill coral sand is difficult to calculate more accurately by adopting theory, the calculation method fully utilizes the site historical conditions and test data, maximally regresses the history, simulates the historical process of completing the self-consolidation settlement of the stratum, comparing the stratum settlement data after the treatments of new and old hydraulic reclamation and unequal thickness, fully analyzing the historical difference of the stratum, and comparing and analyzing the current data difference to obtain the history and the current commonality so as to obtain the secondary compression coefficient which is more in line with the reality.
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