Marine Ice Profiling: Future Directions

J. Marko, D. Fissel
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引用次数: 2

Abstract

Upward-looking sonars moored on the sea floor have contributed to our qualitative and quantitative understandings of ocean ice covers by enabling quasi-continuous measurements of ice draft along curvilinear tracks to accuracies as great as 0.05 m. The capabilities of ASL’s own IPS4 instrument to acquire and store such data has been demonstrated in well over 100 deployments in polar and sub-polar ice-infested regions. Data obtained from these deployments has providing ice property and characterization information for platform and operations design, planning, navigation support and for scientific ice and climate studies. Results obtained with recent use of the IPS4 and a sister instrument specialized to shallow water applications have motivated both the development of new deployment methodologies and suggested applications additional to simple ice draft measurements. Particular potential uses such as detecting unconsolidated ice content in lower portions of ice keels as well as the prevalence of loose and/or frazil ice under ice covers and in shallow water areas are discussed. Perceived future needs in both conventional draft profiling and in these and other new applications are used to guide developing requirements for a new generation of IPS instrumentation offering new performance capabilities and additional user-specific configurability. ASL’s vision of this instrumentation and progress toward prototype construction is described.
海洋冰剖面:未来方向
停泊在海底的向上声纳使沿曲线轨迹对冰流的准连续测量精度达到0.05米,从而有助于我们对海洋冰盖的定性和定量了解。ASL自己的IPS4仪器获取和存储这些数据的能力已经在极地和亚极地冰感染地区的100多个部署中得到了证明。数据来自这些部署提供冰属性和特征信息平台和操作设计、规划、导航支持和科学冰和气候研究。最近使用ip4和专门用于浅水应用的姊妹仪器获得的结果推动了新部署方法的发展,并建议了除简单冰吃水测量外的其他应用。讨论了特殊的潜在用途,如检测冰龙骨下部的未固结冰含量,以及冰盖下和浅水区的松散和/或脆弱冰的普遍存在。在传统草案分析以及这些和其他新应用中,可预见的未来需求用于指导新一代IPS仪器的开发需求,提供新的性能能力和额外的用户特定可配置性。描述了ASL对这种仪器的设想和原型构建的进展。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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