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A comparison of LADCP and CTD performance on a slide-down-wire frame versus a standard CTD frame

机译:下滑线框架与标准CTD框架的LADCP和CTD性能比较

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An instrument frame to support ship-based, wire-lowered instruments has recently been developed at the Woods Hole Oceanographic Institution that is free to slide along the sea cable during deployment, thus decoupling the sensors from ship-roll-induced variations in lowering rate. A test cruise was performed aboard the R/V Cape Hatteras in July, 1998 to evaluate the performance of the General Oceanics, Inc. production prototype Slide-Down-Wire (SDW) frame. In operation, the SDW frame is effectively isolated from ship heave by paying out the cable from the winch at a speed exceeding the free-fall terminal velocity of the frame. At the end of the cast, the frame is arrested by an internal shock absorber mechanism when it reaches the cable termination. The cable is then hauled in with the frame held to the termination by drag, akin to a conventional frame hardwired to the cable. The authors report the performance of a Lowered Acoustic Doppler Current Profiler (LADCP) and a CTD mounted on the SDW frame in contrast with conventional lowerings of the same instrumentation. Performance of the prototype SDW frame is also discussed.
机译:最近在树林孔海洋机构开发了一种支持船舶电线降低仪器的仪器框架,在部署期间,自由地沿着海线滑动,从而将传感器与降低速率降低的船舶卷起的变化分离。 1998年7月在R / V Cape Hatteras上进行了测试巡航,以评估通用Oceanics,Inc。生产原型滑动线(SDW)框架的表现。在操作中,通过以超过框架的自由落体终端速度从绞车支付电缆,从船舶升降电缆有效地隔离SDW帧。在铸造的末端,当它到达电缆终端时,框架被内部减震器机制被捕。然后将电缆拖到通过拖动保持在终止的框架,类似于硬连线的传统帧。作者报告了降低的声学多普勒电流分析器(LADCP)的性能和安装在SDW框架上的CTD,与传统的相同仪器的常规降低相比。还讨论了原型SDW帧的性能。

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