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首页> 外文期刊>International Journal of Plant & Soil Science >Seedlings Emergence in Compacted Soil as Measured by a Pressure Transducer
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Seedlings Emergence in Compacted Soil as Measured by a Pressure Transducer

机译:用压力传感器测量压实土壤中的幼苗出苗

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Research was conducted to obtain an instrument for a more precise method of measuring seedlings emergence, also to indicate the amount of pressure exerted by seedlings before emerging to the surface, hence the design and fabrication of a data logger capable of measuring and logging the pressure exerted by seedlings of maize (hypogeal) and okra (epigeal) in emergence study on compacted Egbeda soil series (Ultisol). The PIC18F4550 Microchip microcontroller unit serves as the heart of the data-logging system, while seedling emergence pressure was determined using MPX5050DP pressure sensor (0-5000 milibar). The date and time were monitored with DS1307 RTC (Real Time Clock) timer, 24LC512 a 512 kbit EEPROM was used as the storage unit and LCD LM016L was used as the display unit. The circuit was designed with Proteus ISIS. The software that interfaced the design with computer was designed with Microsoft Visual Studio using Visual Basic.NET. The experiment was conducted at the departments of Physics, Civil Engineering and Soil Science and Land Resources Management of Obafemi Awolowo University, Ile-Ife, Nigeria, between August, 2013 and June, 2014. The emergence experiment was conducted with soil treatments consisting of four levels of soil compaction (0, 5, 15, and 25 blows of a standard proctor rammer of 2.5 kg; light BS 1377, equivalent to 0, 39, 116 and 193 kJm-3 respectively), at 0.12 g/g moisture content, and replicated three times in a completely randomized design. The results showed that soil strength had significant ( p = 0.05) effect on percent seedlings emergence and pressure exerted by seedlings, percent seedlings emergence was negatively correlated ( p ≤ 0.05) with pressure exerted by seedlings. Positive correlation ( p ≤ 0.05) was also observed between soil strength and pressure exerted by seedlings at emergence as measured by the pressure transducer. Therefore the pressure transducer provides an alternative method of measuring seedling emergence as against indirect method being used.
机译:进行了研究以获得一种用于测量幼苗出苗的更精确方法的仪器,还可以指示出苗到表面之前幼苗所施加的压力,因此可以设计和制造能够测量和记录施加压力的数据记录仪玉米(hypogeal)和秋葵(epigeal)的幼苗在压实的Egbeda土壤系列(Ultisol)的出苗研究中。 PIC18F4550 Microchip微控制器单元是数据记录系统的核心,同时使用MPX5050DP压力传感器(0-5000 milibar)确定幼苗出苗压力。使用DS1307 RTC(实时时钟)计时器监视日期和时间,使用24LC512和512 kbit EEPROM作为存储单元,使用LCD LM016L作为显示单元。该电路是使用Proteus ISIS设计的。使用Visual Basic.NET通过Microsoft Visual Studio设计了将设计与计算机连接的软件。该实验于2013年8月至2014年6月之间在尼日利亚伊法伊费尔的Obafemi Awolowo大学的物理,土木工程和土壤科学与土地资源管理系进行。该出苗实验采用土壤处理方法,其中包括四种的土壤压实水平(2.5公斤标准监夯夯的0、5、15和25击;轻度BS 1377分别等于0、39、116和193 kJm -3 )水分含量为0.12 g / g,并在完全随机的设计中重复三次。结果表明,土壤强度对幼苗出苗率和幼苗施加压力有显着影响(p = 0.05),幼苗出苗率与幼苗施加压力呈负相关(p≤0.05)。压力传感器测得的土壤强度与幼苗出苗时施加的压力之间也存在正相关(p≤0.05)。因此,与使用间接方法相比,压力传感器提供了一种测量幼苗出苗的替代方法。

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