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    • 3. 发明授权
    • Method and apparatus for remote siphon drainage type rainfall measurement with self-compensation function
    • 远程虹吸引流式降雨测量方法及装置具有自我补偿功能
    • US09588253B2
    • 2017-03-07
    • US13457559
    • 2012-04-27
    • Qing LiWei WangXiong LiHongyang LiGang Li
    • Qing LiWei WangXiong LiHongyang LiGang Li
    • G01W1/14
    • G01W1/14
    • A siphon drainage type rainfall remote measurement device with self-compensation function is provided. The bottom existence of a rain collection barrel (2) is connected via a flexible tube (14) to the bottom of a rainfall measuring tube (13) to which a siphon (5) is attached. The tube (13) and a measurement instrument (6) are installed on a holding frame (9). The instrument (6) is connected to a pressure sensor (12) and an accumulator (11) at the bottom of the tube (13). The whole device is fixed in an outer barrel (1). According to the pressure of the bottom of the tube (13), the sensor (12) measures the height of the water level in the tube (13) which is directly proportional to the rainfall. The sensor (12) signal processed by the instrument (6) is transformed into the rainfall, processed by a compensation algorithm and sent by GSM or GPRS.
    • 提供了具有自补偿功能的虹吸排水式降雨量测量装置。 雨收集桶(2)的底部存在通过柔性管(14)连接到连接有虹吸管(5)的降雨测量管(13)的底部。 管(13)和测量仪器(6)安装在保持框架(9)上。 仪器(6)连接到管(13)底部的压力传感器(12)和蓄压器(11)。 整个装置固定在外筒(1)中。 根据管(13)底部的压力,传感器(12)测量管(13)中与降雨成正比的水位高度。 由仪器(6)处理的传感器(12)信号转换为降雨,由补偿算法处理,由GSM或GPRS发送。
    • 4. 发明申请
    • METHOD AND APPARATUS FOR REMOTE SIPHON DRAINAGE TYPE RAINFALL MEASUREMENT WITH SELF-COMPENSATION FUNCTION
    • 用于自补偿功能的远程SIPHON排水型雨量测量方法与装置
    • US20120253675A1
    • 2012-10-04
    • US13457559
    • 2012-04-27
    • Qing LiWei WangXiong LiHongyang LiGang Li
    • Qing LiWei WangXiong LiHongyang LiGang Li
    • G01W1/14G06F19/00
    • G01W1/14
    • A siphon drainage type rainfall remote measurement device with self-compensation function is provided. The bottom existence of a rain collection barrel (2) is connected via a flexible tube (14) to the bottom of a rainfall measuring tube (13) to which a siphon (5) is attached. The tube (13) and a measurement instrument (6) are installed on a holding frame (9). The instrument (6) is connected to a pressure sensor (12) and an accumulator (11) at the bottom of the tube (13). The whole device is fixed in an outer barrel (1). According to the pressure of the bottom of the tube (13), the sensor (12) measures the height of the water level in the tube (13) which is directly proportional to the rainfall. The sensor (12) signal processed by the instrument (6) is transformed into the rainfall, processed by a compensation algorithm and sent by GSM or GPRS.
    • 提供了具有自补偿功能的虹吸排水式降雨量测量装置。 雨收集桶(2)的底部存在通过柔性管(14)连接到连接有虹吸管(5)的降雨测量管(13)的底部。 管(13)和测量仪器(6)安装在保持框架(9)上。 仪器(6)连接到管(13)底部的压力传感器(12)和蓄压器(11)。 整个装置固定在外筒(1)中。 根据管(13)底部的压力,传感器(12)测量管(13)中与降雨成正比的水位高度。 由仪器(6)处理的传感器(12)信号转换为降雨,由补偿算法处理,由GSM或GPRS发送。
    • 10. 发明授权
    • Waste disposer
    • US11590544B2
    • 2023-02-28
    • US16993100
    • 2020-08-13
    • Wei Wang
    • Wei Wang
    • B09B3/40B02C18/14B02C23/20C02F11/12F26B1/00F26B3/347C02F11/131
    • A waste disposer comprising a primary dehydrating chamber, a grinding device, a secondary dehydrating chamber, and a storage chamber. The primary dehydrating chamber is adapted to allow waste to be heated therein to partly dehydrate the waste. The primary dehydrating chamber has: a first waste inlet for receiving the waste, a first vapor outlet for exhausting vapor from the waste, a drainage outlet for draining free liquid from the waste, and a first waste outlet for outputting the partly dehydrated waste. The grinding device is adapted to receive the waste from the first waste outlet and grind the waste to reduce the size thereof. The secondary dehydrating chamber is adapted to allow the ground waste to be heated therein to further dehydrate the waste. The secondary dehydrating chamber has a second waste inlet for receiving the ground waste, a second vapor outlet for exhausting vapor from the waste, and a second waste outlet for outputting the further dehydrated waste. The storage chamber is adapted to receive the waste from the second waste outlet and store the waste in the storage chamber.