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Internationally coordinated multi-mission planning is now critical to sustain the space-based rainfall observations needed for managing floods globally

机译:现在,国际协调的多任务计划对于维持全球洪水管理所需的天基降雨观测至关重要

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At present 4 of 10 dedicated rainfall observing satellite systems have exceeded their design life, some by more than a decade. Here, we show operational implications for flood management of a 'collapse' of space-based rainfall observing infrastructure as well as the high-value opportunities for a globally coordinated portfolio of satellite missions and data services. Results show that the current portfolio of rainfall missions fails to meet operational data needs for flood management, even when assuming a perfectly coordinated data product from all current rainfall-focused missions (i.e., the full portfolio). In the full portfolio, satellite-based rainfall data deficits vary across the globe and may preclude climate adaptation in locations vulnerable to increasing flood risks. Moreover, removing satellites that are currently beyond their design life (i.e., the reduced portfolio) dramatically increases data deficits globally and could cause entire high intensity flood events to be unobserved. Recovery from the reduced portfolio is possible with internationally coordinated replenishment of as few as 2 of the 4 satellite systems beyond their design life, yielding rainfall data coverages that outperform the current full portfolio (i.e., an optimized portfolio of eight satellites can outperform ten satellites). This work demonstrates the potential for internationally coordinated satellite replenishment and data services to substantially enhance the cost-effectiveness, sustainability and operational value of space-based rainfall observations in managing evolving flood risks.
机译:目前,十个专用的降雨观测卫星系统中有四个已经超过了设计寿命,有些超过了十年。在这里,我们展示了天基降雨观测基础设施“崩溃”对洪水管理的运营意义,以及全球协调的卫星任务和数据服务组合的高价值机会。结果表明,即使假设当前所有以降雨为中心的任务(即全部任务)的数据产品完全协调,当前的降雨任务组合也无法满足洪水管理的业务数据需求。在全部产品组合中,基于卫星的降雨数据不足在全球范围内有所不同,并且可能会在容易遭受洪水风险增加的地区阻止气候适应。此外,移除当前超出其设计寿命的卫星(即减少的产品组合)会极大地增加全球的数据不足,并可能导致无法观测到整个高强度洪水事件。在国际协调的补充下,有可能从减少的产品组合中恢复,直到在设计寿命结束后对4个卫星系统中的2个进行补充,从而产生的降雨数据覆盖范围超过了目前的全部产品组合(即,优化的8个卫星组合可以超过10个卫星) 。这项工作证明了国际协调的卫星补充和数据服务在管理不断演变的洪灾风险中大大提高天基降雨观测的成本效益,可持续性和业务价值的潜力。

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