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    • 1. 发明公开
    • 폐열회수형 환기장치용 공기 청정 제어 시스템
    • 用于热回收通风机的空气清洁控制系统
    • KR1020100078205A
    • 2010-07-08
    • KR1020080136393
    • 2008-12-30
    • 린나이코리아 주식회사
    • 이상문이황의권기출이영재채정민
    • F24F11/02F24F11/00
    • Y02P80/152F24F11/0001F24F11/30F24F2110/10F24F2110/12F24F2110/64F24F2110/66F24F2110/70
    • PURPOSE: An air cleaning system for a heat recovery ventilator is provided to perform an air cleaning function and a ventilating function and to minimize the heat loss of indoor air even if an outdoor temperature goes out of a typical temperature range in which the heat exchanger of the heat recovery ventilator can sufficiently prevent the heat loss of indoor air. CONSTITUTION: An air cleaning system for a heat recovery ventilator(100') comprises a first pollution sensor(310), a second pollution sensor(320), an outdoor temperature sensor(330), and a controller(340). The first pollution sensor senses the dust pollution level of indoor air. The second pollution sensor senses the carbon dioxide pollution level or the volatile organic compound pollution level of the indoor air. The temperature sensor senses outdoor temperatures. The controller performs cleaning and ventilating operation on indoor air by controlling the operation of the air exhaust fan(110), the outdoor air exhaust damper(112), the air supply fan(130) and the outdoor air supply fan(131) of the heat recovery ventilator based on whether the dust pollution level sensed by the first pollution sensor is over a pollution determination value, whether the carbon dioxide pollution level or the volatile organic compound pollution level sensed by the second pollution sensor is over a pollution determination value, or whether the outdoor temperature sensed by the outdoor temperature sensor goes out of a specific temperature range in which the heat exchanger(120') of the heat recovery ventilator can sufficiently prevent the heat loss of indoor air.
    • 目的:提供一种用于热回收通气机的空气净化系统,以执行空气净化功能和通风功能,并且尽可能减少室内空气的热损失,即使室外温度超出了典型温度范围,其中热交换器 热回收通风机可以充分防止室内空气的热损失。 构成:用于热回收通气机(100')的空气净化系统包括第一污染传感器(310),第二污染传感器(320),室外温度传感器(330)和控制器(340)。 第一污染传感器感测室内空气的粉尘污染等级。 第二污染传感器检测室内空气的二氧化碳污染水平或挥发性有机化合物污染水平。 温度传感器感应室外温度。 控制器通过控制排气风扇(110),室外排气风门(112),供气风扇(130)和室外空气供给风扇(131)的操作来对室内空气进行清洁和通风操作 基于第一污染传感器感测到的灰尘污染等级是否超过污染判定值,第二污染传感器检测到的二氧化碳污染水平或挥发性有机化合物污染水平是否超过污染判定值,或者 室外温度传感器感测到的室外温度是否超出了热回收通气机的热交换器(120')能够充分防止室内空气的热损失的特定温度范围。
    • 4. 发明授权
    • 보일러의 자동 시운전 제어방법
    • 锅炉自动测试控制方法
    • KR100968349B1
    • 2010-07-09
    • KR1020080134592
    • 2008-12-26
    • 린나이코리아 주식회사
    • 이재석이황의이정민방승훈채정민
    • F24H9/20F24D19/10
    • PURPOSE: A method for controlling an automatic trial run of a boiler is provided to enable a user to accurately confirm an abnormal state of a boiler by easily performing a trial run. CONSTITUTION: A method for controlling an automatic trial run of a boiler is as follows. After a boiler is installed, it is determined whether the boiler is in a completely frozen state or not(S2). If the boiler is not in a completely frozen state, it is determined whether the boiler is in a heating state or a hot water supplying state(S3). If the boiler is not in the heating state or the hot water supplying state, a trial run is performed(S5).
    • 目的:提供一种控制锅炉自动试运行的方法,使用户能够通过轻松执行试运行来准确地确认锅炉的异常状态。 构成:锅炉自动试运行控制方法如下。 在安装锅炉后,确定锅炉是否处于完全冻结状态(S2)。 如果锅炉不处于完全冷冻状态,则判断锅炉是处于加热状态还是处于供热状态(S3)。 如果锅炉不处于加热状态或热水供给状态,则进行试运行(S5)。
    • 5. 发明公开
    • 폐열회수형 환기장치의 심야 운전 제어 방법
    • 热回收通风机的中间操作控制方法
    • KR1020100078202A
    • 2010-07-08
    • KR1020080136390
    • 2008-12-30
    • 린나이코리아 주식회사
    • 이영재이상문이황의채정민권기출
    • F24F11/00F24F11/02
    • F24F11/0001F24F7/08F24F11/65F24F11/77F24F12/00F24F2130/20
    • PURPOSE: A midnight operation control method of a heat recovery ventilator is provided to minimize the noise and the power consumption of a heat recovery ventilator depending on the currently detected indoor light intensity in the state a user selected the midnight mode. CONSTITUTION: A midnight operation control method of a heat recovery ventilator is as follows. If a user turns on the heat recovery ventilator by operating a remote controller(S10'), the remote controller determines whether the user selected the midnight mode in order to minimize noise and to ventilate indoor air under to an optimal condition depending on indoor light intensity(S11'). If the midnight mode is selected, the remote controller determines whether the current indoor light intensity is below the predetermined reference light intensity(S12'). If yes, the remote controller controls each output of the air exhaust fan and the air supply fan of the heat recovery ventilator to a predetermined specific value(S13'). If the current indoor light intensity is over the predetermined reference light intensity, the remote controller stops the operation of the air supply fan and the air exhaust fan and cancels the selection of the midnight mode(S14').
    • 目的:提供一种热回收通气机的午夜操作控制方法,以根据用户选择午夜模式的状态下的当前检测到的室内光强度来最小化热回收通气机的噪音和功耗。 构成:热回收通气机的午夜运行控制方法如下。 如果用户通过操作遥控器(S10')打开热回收呼吸机,则遥控器确定用户是否选择了午夜模式,以便最小化噪音,并根据室内光强度将室内空气通风至最佳状态 (S11' )。 如果选择了午夜模式,则遥控器确定当前室内光强度是否低于预定参考光强度(S12')。 如果是,则遥控器将排气风扇和热回收通气机的供气风扇的每个输出控制到预定的特定值(S13')。 如果当前的室内光强度超过规定的基准光强度,则遥控器停止送风风扇和排风扇的动作,取消对午夜模式的选择(S14')。
    • 6. 发明公开
    • 보일러의 자동 시운전 제어방법
    • 锅炉自动试验驱动控制方法
    • KR1020100076515A
    • 2010-07-06
    • KR1020080134592
    • 2008-12-26
    • 린나이코리아 주식회사
    • 이재석이황의이정민방승훈채정민
    • F24H9/20F24D19/10
    • F24H9/2007F24D19/1066F24D2220/04F24D2220/042F24D2220/048
    • 본 발명은 보일러의 자동 시운전 제어방법에 관한 것으로 특히, 공지된 보일러의 시운전 제어방법에 있어서, 보일러의 설치후 전원이 공급되면 완전 동결 상태인지를 판단하는 단계와; 완전 동결 상태가 아니면 전원 재공급 전 난방 및 온수 운전상태였는지를 순차적으로 판단하는 단계와; 상기에서 판단한 결과 전원 재공급 전 난방 및 온수 운전상태가 아니었으면 시운전을 실시하는 단계와; 상기에서 검출한 결과 전원 재공급 전 난방 또는 온수 운전상태였으면 조작장치(리모컨)가 정상적으로 연결된 상태인지를 판단하는 단계와; 상기에서 판단한 결과 조작장치의 이상동작 또는 파손으로 인해 없는 것(연결되지 않은 상태)으로 판단되면 시운전을 실시하되, 조작장치가 정상 접속 상태이면 일반 운전 모드로 돌입하는 단계;로 이루어진 것을 특징으로 한다.
      따라서, 시운전을 보다 용이하게 실시하여 보일러의 이상 여부를 신속하고 정확하게 확인할 수 있어 보일러의 시운전에 따른 신뢰도를 대폭 향상시킬 수 잇을 뿐만 아니라, 보일러의 이상 발생 시 보다 신속하게 보일러의 교체 및 수리를 할 수 있어 서비스에 대한 소비자의 요구를 대폭 충족시킬 수 있는 것이다.
      보일러, 시운전, 동결온도, 재 전원 공급, 조작장치(리모컨)
    • 8. 发明公开
    • 병렬 보일러의 난방운전 제어장치 및 그 방법
    • 平行锅炉加热操作控制装置及其控制方法
    • KR1020110051751A
    • 2011-05-18
    • KR1020090108491
    • 2009-11-11
    • 린나이코리아 주식회사
    • 방승훈이황의이정민이재석채정민
    • F24D19/10G05D23/19F24H9/20
    • F24D19/1015F24D2220/04F24H9/2007G05D23/1917
    • PURPOSE: A heating operation control apparatus and method for parallely-connected boilers are provided to extend the life span of the boilers by uniformly operating the boilers according to priority considering accumulated operating hours. CONSTITUTION: A heating operation control apparatus for parallely-connected boilers comprises a total operating hour calculation unit(16), a heating hour calculation unit(17), central processing units(11,21), and a controller(2). The total operating hour calculation unit accumulates and calculates the total operating hours according to the heating and hot-water operations of boilers. The heating hour calculation unit calculates the duration of heating operation of the boilers. The central processing units receive output signals from the total operating hour calculation unit and the heating hour calculation unit in real time and stores the output signals in an EEPROM(15). The controller uses the output signal data for determining priority of the boilers for heating and hot-water supply.
    • 目的:提供一种用于并联锅炉的加热操作控制装置和方法,通过根据考虑到累积运行小时的优先级统一操作锅炉来延长锅炉的使用寿命。 构成:并列连接锅炉的加热运转控制装置,包括总运行小时计算单元(16),加热时间计算单元(17),中央处理单元(11,21)和控制器(2)。 总运行时间计算单元根据锅炉的加热和热水运行累积和计算总运行时间。 加热时间计算单元计算锅炉的加热操作的持续时间。 中央处理单元实时接收总操作时间计算单元和加热时间计算单元的输出信号,并将输出信号存储在EEPROM(15)中。 控制器使用输出信号数据确定锅炉的供热和热水供应的优先级。
    • 9. 发明公开
    • 병렬 보일러의 온수운전 제어장치 및 그 방법
    • 平行锅炉操作控制装置及其控制方法
    • KR1020110051737A
    • 2011-05-18
    • KR1020090108471
    • 2009-11-11
    • 린나이코리아 주식회사
    • 방승훈이황의이정민이재석채정민
    • F24D19/10
    • F24D19/1009F24D19/1066F24D2220/042F24D2220/044Y02B30/24
    • PURPOSE: A device and a method for controlling the hot-water operation of parallely-connected boilers are provided to ensure smooth hot-water supply and extended life span of the boilers by operating the boilers according to priority considering the accumulated operating hours. CONSTITUTION: A device for controlling the hot-water operation of parallely-connected boilers comprises a total operating hour calculation unit(16), a heating hour calculation unit(17), central processing units(11,21), and a controller(2). The total operating hour calculation unit accumulates and calculates the total operating hours according to the heating and hot-water operations of boilers. The heating hour calculation unit calculates the duration of heating operation of the boilers. The central processing units receive output signals from the total operating hour calculation unit and the heating hour calculation unit in real time and stores the output signals in an EEPROM(15). The controller uses the output signal data for determining priority of the boilers for hot-water supply.
    • 目的:提供一种用于控制并联锅炉的热水运行的装置和方法,以便考虑到累积的运行时间,根据优先事项操作锅炉,确保平稳的热水供应和锅炉的使用寿命。 构成:用于控制并联锅炉的热水运转的装置包括总运行小时计算单元(16),加热时间计算单元(17),中央处理单元(11,21)和控制器(2) )。 总运行时间计算单元根据锅炉的加热和热水运行累积和计算总运行时间。 加热时间计算单元计算锅炉的加热操作的持续时间。 中央处理单元实时接收总操作时间计算单元和加热时间计算单元的输出信号,并将输出信号存储在EEPROM(15)中。 控制器使用输出信号数据确定锅炉的热水供应优先级。
    • 10. 发明公开
    • 폐열회수형 환기장치의 팬 및 필터 결함 감지 장치 및 방법
    • 在热回收通风机中承担风扇和过滤器缺陷的装置和方法
    • KR1020100078196A
    • 2010-07-08
    • KR1020080136381
    • 2008-12-30
    • 린나이코리아 주식회사
    • 채정민권기출이상문이영재이황의
    • F24F11/02F24F11/00
    • F24F11/30F24F11/32F24F11/39F24F12/006
    • PURPOSE: An apparatus and a method for detecting the defects of fans and filters in a heat recovery ventilator are provided to maximize ventilating efficiency by accurately detecting the defects of an air exhaust fan and an air supply fan and the replacement time of an air exhaust filter and an air supply filter. CONSTITUTION: An apparatus(300) for detecting the defects of fans and filters in a heat recovery ventilator comprises a fan rotation-number detector(310), a fan motor current detector(320), a controller(330), and an alarming unit(340). The fan rotation-number detector detects each rotation number of the air exhaust fan and the air supply fan of the heat recovery ventilator. The fan motor current detector detects the current of the fan motor driving the air exhaust fan and the air supply fan. The controller determines the normal range of the fan motor current which is measured based on the rotation number of a specific one of the air supply fan and the air exhaust fan and outputs an alarming signal by determining a filter defect or a fan defect by comparing, the current of the fan motor corresponding to the rotation number of a specific fan measured when the air exhaust fan and the air supply fan are driven, with the normal range. If the alarming signal is input, the alarming unit alarms the filter defect or the fan defect.
    • 目的:提供一种用于检测热回收通气机中风扇和过滤器缺陷的装置和方法,以通过精确检测排风扇和送风风扇的缺陷以及排气过滤器的更换时间来最大化通风效率 和空气供应过滤器。 一种用于检测热回收通风机中的风扇和过滤器的缺陷的装置(300),包括风扇转数检测器(310),风扇电动机电流检测器(320),控制器(330)和报警单元 (340)。 风扇转数检测器检测排气风扇和热回收通气机的供气风扇的每个转数。 风扇电机电流检测器检测驱动排风扇和供气风扇的风扇电机的电流。 控制器基于空气供给风扇和排气风扇的特定的一个的旋转数来确定风扇电动机电流的正常范围,并且通过比较确定过滤器缺陷或风扇缺陷来输出报警信号, 风扇电动机的电流对应于当排气风扇和供气风扇被驱动时测量的特定风扇的转数与正常范围相对应。 如果输入报警信号,报警单元报警过滤器故障或风扇故障。