方常乐. 微电脑化海底地热流探测仪[J]. 信息与控制, 1985, 14(1): 16-21.
引用本文: 方常乐. 微电脑化海底地热流探测仪[J]. 信息与控制, 1985, 14(1): 16-21.
Fang Changle. A Microprocessor Instrument for Real-time Marine Heat Flow Measurement[J]. INFORMATION AND CONTROL, 1985, 14(1): 16-21.
Citation: Fang Changle. A Microprocessor Instrument for Real-time Marine Heat Flow Measurement[J]. INFORMATION AND CONTROL, 1985, 14(1): 16-21.

微电脑化海底地热流探测仪

A Microprocessor Instrument for Real-time Marine Heat Flow Measurement

  • 摘要: 在此新型海底热流仪中,有一台RCA微型计算机作为控制器.微处理机的使用使该仪器有许多新颖的特点和进行实时测量的功能.此机采用琴弓形设计,插入管管长7.5m,14个热敏电阻.模数转换器16位,总分辨率优于万分之五开氏度,测程大于20度.电平位移和零点漂移均自动消除.在少于三秒钟的时间内,该机对每个热敏电阻进行16次数据采样并计算测得值.数据通过微机的串行端和标准型的电话调制解调电路加于水声器,用声学遥感技术传输到船上,数字式数据和其他信息,被船上的遥感接收,解调后转入一台便携式电子计算机.海底仪器的一切工作状态信息和实测数据都实时地显示在计算机终端的荧光屏上,船上的科学家可以对海中的测量过程一目了然,船上计算机还对测得数据进行现场的热梯度和周围泥沙的热导率计算,在拉不拉多海的海上试验中,当水深大于4000m时,传输误差为万分之一左右.

     

    Abstract: An RCA microboard computer is used as the controller for a new instrument package for marine heat flow.The use of the microprocessor allows incorporation of several novel features that lead to the capability for real-time measurement of heat flow.The design is based on the violin-bow type configuration with 7.5m of penetration and fourteen thermistors.An overall resolution of better than ±0.5mK over a range of 20K is achieved by employing a 16 bit A/D converter with the processor making zero offset and drift measurements and applying them to the data.Sixteen such sequential calculations are performed for each thermistor every 3s to obtain a resultant value.The data are output through the serial part of the microcomputer and a standard telephone modem circuit to a hydrophone for acoustic telemetry to the ship.The digital data are received by the ship's transducers,demodulated and entered to a personal computer.The real-time display of the functioning of the sea-floorcapkage alloows the operator to monitor the progress and validity of each measurement.The shipboard micro then calculates the gradient and conductivity for the site.In sea trials in theLabrador Sea,in water depths >4000m an error rate of about 1:10,000 was noted for the acoustic link.

     

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