侯加林, 党 园, 高 振, 翟 衡. 葡萄根和枝条抗寒性能测试仪的研制与试验[J]. 农业工程学报, 2012, 28(24): 41-46.
    引用本文: 侯加林, 党 园, 高 振, 翟 衡. 葡萄根和枝条抗寒性能测试仪的研制与试验[J]. 农业工程学报, 2012, 28(24): 41-46.
    Hou Jialin, Dang Yuan, Gao Zhen, Zhai Heng. Development and experiment of cold resistance tester for grape roots and branches[J]. Transactions of the Chinese Society of Agricultural Engineering (Transactions of the CSAE), 2012, 28(24): 41-46.
    Citation: Hou Jialin, Dang Yuan, Gao Zhen, Zhai Heng. Development and experiment of cold resistance tester for grape roots and branches[J]. Transactions of the Chinese Society of Agricultural Engineering (Transactions of the CSAE), 2012, 28(24): 41-46.

    葡萄根和枝条抗寒性能测试仪的研制与试验

    Development and experiment of cold resistance tester for grape roots and branches

    • 摘要: 为了能方便准确的测定葡萄的抗寒特性,该文研制了一种在实验室内测定葡萄根和枝条抗寒性能的测试仪。该仪器利用测试箱持续降温的方法为试验提供测试环境,以STM32单片机为核心组成嵌入式控制平台,由温度传感器和热电模块采集温度信号、电压信号等试验结果,同时在上位机系统上显示试验结果和存储数据。试验结果表明,在试验的6个葡萄品种中光荣河岸和威代尔根系的抗寒性较强,光荣河岸枝条的抗寒性最强,且该仪器的精度达到0.96%,工作性能稳定可靠,可满足葡萄根和枝条抗寒性检测的要求。该文为培育新的抗寒品种提供了依据。

       

      Abstract: With the rapid development of wine industry in China, wine brewing cultivation moves to the west and north on a large scale. The cold and droughty weather of northern winter frequently causes the frost even death of dormant grape plants. There exist obvious differences among different grape varieties, breeds and cold-resistance of organs. In particular, the cold-resistance of roots is the weakest. Therefore, choosing comparatively improved cold-resistant breeds becomes an important task of scientific workers. In order to accurately and conveniently measure the cold-resistance of grapes, it is necessary to develop a tester to measure the cold-resistance of grape roots and branches in the laboratory. The tester mainly consists of STM32 MCU, off-chip ADC, temperature transmitter, and thermoelectric module. It has the function of measuring the cold-resistance grape roots and in the laboratory with a precision of 0.96%.The tester controlled the temperature transmitter by MCU and measured the real-time temperature within the test box. Meanwhile, thermoelectric module is controlled to measure the heat release of tissue cells belonging to the roots and branches when they freeze and the measurement data are transmitted to the MCU through serial port. The LT50 is obtained through the way of processing these data. Finally, the experiment result and storage data are showed by the epistatic machine system. Within the test box which can imitate the change of natural temperature, an experimental study is conducted to measure the cold-resistance of various grape roots and branches by using this apparatus. The experiment result indicates that Gloire Riparia and Vidal roots which LT50s are below -6.0℃ have the stronger cold-resistance. The branch of Gloire Riparia has the strongest cold-resistance and its LT50 is between -28.1 and -30.7℃. This apparatus operates in a stable way which can meet the cold-resistance test requirement of grape roots and branches and also provide a basis for the cultivation of new cold-resistance breeds.

       

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