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    • 3. 发明申请
    • COMFORT LEVEL BASED ON IMPROVED HEATING, COOLING (EVAPORATION) & VENTILATION USING SOLAR THERMAL
    • 基于改进的加热,冷却(蒸发)和使用太阳热通风的舒适水平
    • WO2016170411A4
    • 2017-05-11
    • PCT/IB2016000488
    • 2016-04-19
    • MEHTA ALPESH
    • MEHTA ALPESH
    • H05B37/02F24D3/08F24D3/10F24D5/04F24D19/10F24F1/00F24F5/00
    • F24F1/0003F24D3/08F24D3/1058F24D5/04F24D19/1066F24D19/1075F24D2200/14F24F2005/0064Y02A30/272Y02B10/20Y02B10/24Y02E10/46
    • According to one exemplary embodiment; the improved Heating, cooling & Ventilation system for comfort level within the space, is based on Alternate Source of Energy (solar thermal) for any climatic condition. Space heating- & cooling is based using solar hot water; controlled, maintained and generates energy from biofuels by thermophilic Temperature, which makes runs plurality of eco-friendly compressor to chill the water. The System is fully automated with alternate manual mode, which maintains temperature, humidity (Relative Humidity %), airflow, velocity, noise, Insulation, light and quality level of Air (C02 sensor, Smoke Detector with GSM Mod em within the space). The above improvement in system will save about three fourth, of energy consumed by conventional system and half the energy consumed by the chillers. It save precious water as it is used for heating & cooling space, by-product as a comfort water utilized for bath and other household/reuse purpose.
    • 根据一个示例性实施例; 改进的加热,冷却和通风系统在空间内达到舒适水平,基于任何气候条件下的替代能源(太阳能热源)。 空间加热和冷却基于太阳能热水; 控制,维护并通过嗜热温度从生物燃料中产生能量,这使得运行多台环保压缩机来冷却水。 该系统采用交替手动模式完全自动化,可保持空气(CO 2传感器,带有GSM Mod em的烟雾探测器在该空间内)的温度,湿度(相对湿度%),气流,速度,噪音,绝缘,光线和质量水平。 上述系统的改进将节约传统系统消耗的能源的四分之一和冷却器消耗的能源的一半。 它可以节省宝贵的水,因为它用于供暖和制冷空间,副产品是用于沐浴和其他家用/再利用目的的舒适水。
    • 4. 发明申请
    • COMFORT LEVEL BASED ON IMPROVED HEATING, COOLING (EVAPORATION) & VENTILATION USING SOLAR THERMAL
    • 基于改进的加热,冷却(蒸发)和使用太阳能热通风的舒适度
    • WO2016170411A2
    • 2016-10-27
    • PCT/IB2016/000488
    • 2016-04-19
    • MEHTA, Alpesh
    • MEHTA, Alpesh
    • F24F1/0003F24D3/08F24D3/1058F24D5/04F24D19/1066F24D19/1075F24D2200/14F24F2005/0064Y02A30/272Y02B10/20Y02B10/24Y02E10/46
    • According to one exemplary embodiment; the improved Heating, cooling & Ventilation system for comfort level within the space, is based on Alternate Source of Energy (solar thermal) for any climatic condition. Space heating- & cooling is based using solar hot water; controlled, maintained and generates energy from biofuels by thermophilic Temperature, which makes runs plurality of eco-friendly compressor to chill the water. The System is fully automated with alternate manual mode, which maintains temperature, humidity (Relative Humidity %), airflow, velocity, noise, Insulation, light and quality level of Air (C02 sensor, Smoke Detector with GSM Mod em within the space). The above improvement in system will save about three fourth, of energy consumed by conventional system and half the energy consumed by the chillers. It save precious water as it is used for heating & cooling space, by-product as a comfort water utilized for bath and other household/reuse purpose.
    • 根据一个示例性实施例; 改进的加热,冷却和通风系统在空间内舒适水平,是基于任何气候条件下的替代能源(太阳能热能)。 空间加热和冷却是基于太阳能热水; 控制,维护并通过嗜热温度从生物燃料产生能量,这使得多个环保型压缩机能够冷却水分。 该系统使用备用手动模式完全自动化,可以保持空气(CO 2传感器,空气中的GSM模块的烟雾探测器)的温度,湿度(相对湿度%),气流,速度,噪声,绝缘,光线和质量水平。 系统的上述改进将节省传统系统消耗的能量的约三分之一,以及制冷机消耗的能量的一半。 它可以节省贵重的水,因为它用于加热和冷却空间,副产品作为用于洗浴和其他家庭/再利用目的的舒适水。
    • 6. 发明申请
    • AN AUTOMATED ANAEROBIC DIGESTER
    • WO2021001716A1
    • 2021-01-07
    • PCT/IB2020/055832
    • 2020-06-20
    • MEHTA, Alpesh
    • MEHTA, Alpesh
    • C12M1/107C12M1/02C12M1/34C12M1/36
    • An automated: anaerobic digester using human excreta at thermophilic temperature through heavy PVC pipe assembly for producing bio-gas by bacterial decomposition of wet sludge human excreta. The natural decay process anaerobic decomposition is to speed up by using tuba tank (10) made from stainless steel and heavy thick wall PVC pipe/vessel (3) with motor (15) control stirrer (9) and spiral edited stainless steel heat exchanger (8) using convection. A. family type indoor anaerobic digester, the bacteria works best at thermophilic temperature, varying from 45° -70° C. The thermophilic responsible for digestion, the optimum thermophilic temperature is around 55° C, controlled by temperature controller. Heat Recovery hot water from heating, cooling and ventilation of heating equipment is used to maintain thermophilic temperature. Alternately energy used as are solar hot water or conventional gas, electrical energy as standby. The rats of gas production approximately doubles up for every 10°C and double between 35°C to 55°C.
    • 8. 发明申请
    • COMFORT LEVEL BASED ON IMPROVED HEATING, COOLING (EVAPORATION) & VENTILATION USING SOLAR THERMAL
    • 基于改进的加热,冷却(蒸发)和使用太阳能热通风的舒适度
    • WO2016170411A3
    • 2017-03-02
    • PCT/IB2016000488
    • 2016-04-19
    • MEHTA ALPESH
    • MEHTA ALPESH
    • H05B37/02F24D3/08F24D3/10F24D5/04F24D19/10F24F1/00F24F5/00
    • F24F1/0003F24D3/08F24D3/1058F24D5/04F24D19/1066F24D19/1075F24D2200/14F24F2005/0064Y02A30/272Y02B10/20Y02B10/24Y02E10/46
    • According to one exemplary embodiment; the improved Heating, cooling & Ventilation system for comfort level within the space, is based on Alternate Source of Energy (solar thermal) for any climatic condition. Space heating- & cooling is based using solar hot water; controlled, maintained and generates energy from biofuels by thermophilic Temperature, which makes runs plurality of eco-friendly compressor to chill the water. The System is fully automated with alternate manual mode, which maintains temperature, humidity (Relative Humidity %), airflow, velocity, noise, Insulation, light and quality level of Air (C02 sensor, Smoke Detector with GSM Mod em within the space). The above improvement in system will save about three fourth, of energy consumed by conventional system and half the energy consumed by the chillers. It save precious water as it is used for heating & cooling space, by-product as a comfort water utilized for bath and other household/reuse purpose.
    • 根据一个示例性实施例; 改进的加热,冷却和通风系统在空间内舒适水平,是基于任何气候条件下的替代能源(太阳能热能)。 空间加热和冷却是基于太阳能热水; 控制,维护并通过嗜热温度从生物燃料产生能量,这使得多个环保型压缩机能够冷却水分。 该系统使用备用手动模式完全自动化,可以保持空气(CO 2传感器,空气中的GSM模块的烟雾探测器)的温度,湿度(相对湿度%),气流,速度,噪声,绝缘,光线和质量水平。 系统的上述改进将节省传统系统消耗的能量的约三分之一,以及制冷机消耗的能量的一半。 它可以节省贵重的水,因为它用于加热和冷却空间,副产品作为用于洗浴和其他家庭/再利用目的的舒适水。