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基于潛熱效應的活立木凍融檢測傳感器設計與實驗
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國家重點研發(fā)計劃項目(2017YFD0600901)、內(nèi)蒙古自治區(qū)科技計劃項目(201802085)和中央高?;究蒲袠I(yè)務費專項資金項目(2019YC15)


Design of Freeze-thaw Detection Sensor for Standing Forest Stock Based on Latent Heat
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    摘要:

    針對植物凍融過程中植物水分生理信息(植物水冰含量)難以實時,、在線、連續(xù)監(jiān)測及凍融難以準確判斷的問題,,設計了一種基于潛熱效應的活立木凍融檢測傳感器,。通過檢測植物凍融過程中潛熱釋放引起的溫度變化對莖干是否凍融進行有效判斷,在準確檢測凍融點的基礎上,,根據(jù)莖干體積含水率變化計算凍融過程中的莖干體積含冰量及徑向凍融深度,,同時設計環(huán)式彈片探頭消除固定式探頭對莖干壓迫形成的凹槽。標定結(jié)果表明,,傳感器測量結(jié)果與真值擬合決定系數(shù)超過0.99,。靜動態(tài)特性分析表明,傳感器體積含水率和溫度測量范圍分別為0~68.67%,、-30~80℃,,動態(tài)響應時間小于2s。室內(nèi)凍融模擬實驗及室外長期凍融監(jiān)測表明,,傳感器能夠有效檢測植物凍融過程中莖干水分生理參數(shù)的變化,,可以作為植物凍融的有效監(jiān)測手段。

    Abstract:

    Aiming to solve the problem that plant water physiological information (plant water and ice content) during freeze-thaw process is difficult to be monitored on-line and continuously in real time and judged accurately by freeze-thaw process. A monitoring sensor for freeze-thaw of living standing trees was designed based on latent heat effect, which detected the temperature caused by latent heat release during plant freeze-thaw process. Based on the accurate detection of freeze-thaw point, the ice content and radial freeze-thaw depth of stem volume during freeze-thaw process were calculated according to the change of moisture content of stem volume. At the same time, a circular projectile probe was designed to eliminate the pressure of fixed probe on stem to form a groove. Calibration results showed that the determination coefficient of fitting between the measured results and the true values of the sensor was more than 0.99. Static and dynamic characteristics showed that the measurement range of moisture and temperature of the sensor was from 0 to 68.67% and -30℃ to 80℃, respectively, and the dynamic response time was less than 2 s. The results of indoor freezethaw simulation experiment and outdoor long-term freeze-thaw monitoring showed that the sensor can effectively detect the changes of water physiological information during plant freeze-thaw process. It provided a device with independent intellectual property rights, realtime continuous monitoring, low cost and easy installation for agricultural and forestry production and plant freeze-thaw assessment.

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田昊,高超,趙玥,鄭焱,趙燕東.基于潛熱效應的活立木凍融檢測傳感器設計與實驗[J].農(nóng)業(yè)機械學報,2020,51(3):223-231. TIAN Hao, GAO Chao, ZHAO Yue, ZHENG Yan, ZHAO Yandong. Design of Freeze-thaw Detection Sensor for Standing Forest Stock Based on Latent Heat[J]. Transactions of the Chinese Society for Agricultural Machinery,2020,51(3):223-231.

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  • 收稿日期:2019-07-22
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  • 在線發(fā)布日期: 2020-03-10
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