TerraMaris: The Maritime Continent - Driver of the Global Climate System
TerraMaris:海洋大陆 - 全球气候系统的驱动力
基本信息
- 批准号:NE/R016712/1
- 负责人:
- 金额:$ 64.24万
- 依托单位:
- 依托单位国家:英国
- 项目类别:Research Grant
- 财政年份:2018
- 资助国家:英国
- 起止时间:2018 至 无数据
- 项目状态:未结题
- 来源:
- 关键词:
项目摘要
The Maritime Continent (MC) is the archipelago of tropical islands that lies between the Indian and Pacific Oceans, with a population of over 400 million. It comprises large (Sumatra, Java, Borneo, and New Guinea) and many smaller islands, with high mountains. High solar input warms the surrounding seas, which supply an abundance of moisture to the atmosphere, turning the whole region into an atmospheric "boiler box". Deep convective clouds rise up over the islands every day, leading to average rainfall rates in excess of 10 mm per day, approximately three times the rainfall rate over the UK. As well as supplying local agriculture, rain that falls over the MC has a far-reaching, global effect on weather and climate. Tremendous heat energy is released by condensation into the atmosphere in these convective clouds. This heat source drives giant, overturning circulations in the atmosphere: the Hadley and Walker cells, which feed into the jet streams and lead to weather and climate changes far downstream, even over the UK. For example, the origins of the infamous cold winter of 1962/63 and the recent very cold March of 2013 have been traced to atmospheric convection over the MC. For these reasons, the MC has been described as the engine room of the global climate system.Due to the complex nature of the distribution of the islands, and fundamental inadequacies in current models of the atmosphere (mainly related to their representation of convection), both climate predictions and weather forecasts show serious errors over the MC, particularly in their simulation of rainfall. Up until now, these errors have been extremely difficult to address, as there has been a lack of suitable observations over this region. Computing power, and the atmospheric modelling expertise to harness the advances in computing resources, has been inadequate to run computer models with sufficient detail to resolve the convective processes and their interactions, which are the building blocks of atmospheric circulation, for long enough to allow interactions with larger scales.However, we now stand on the cusp of transforming our understanding of atmospheric processes over the MC. Computer power and modelling expertise have progressed to the point where we have the capability to run simulations of the atmosphere at sufficient resolution to accurately capture the complex distribution of islands, and to accurately model the convective processes themselves. In response to this, the international Years of the Maritime Continent (YMC) field experiment (2017-2020) will make the measurements of the atmosphere and ocean at the very small scales that are needed to evaluate and understand the outputs of these new model simulations. Through TerraMaris the UK will take a leading role in YMC, by making observations of convective processes over the MC using the UK meteorological research aircraft, atmospheric radars, balloon and land-based measurements on the islands, and observing the surrounding seas using autonomous underwater and surface vehicles. This unprecedented suite of coordinated observations will complement measurements being taken by our international partners. The UK and the TerraMaris research team has led the way in developing high-resolution atmospheric modelling over recent years. We will apply the skills and knowledge learned to understand the complex mechanisms behind the multiple scales of convection and atmospheric circulations that have made the weather over the MC such a tough problem to crack. This knowledge will enable ground-breaking advances in atmospheric modelling, to improve weather forecasts and climate prediction over the MC region, with direct benefit to the substantial regional population. The downstream effects will see these benefits extend to the far corners of the globe, improving global and regional medium-range weather prediction, and climate projections.
海洋大陆(MC)是位于印度洋和太平洋之间的热带岛屿群岛,人口超过4亿。它包括大(苏门答腊,爪哇,婆罗洲和新几内亚)和许多较小的岛屿,高山。大量的太阳辐射使周围的海洋变暖,从而为大气提供了大量的水分,使整个地区变成了一个大气“锅炉箱”。深对流云每天都会在岛上升起,导致平均降雨量超过每天10毫米,大约是英国降雨量的三倍。除了供应当地农业,福尔斯在MC上的降雨对天气和气候有着深远的全球影响。大量的热能通过这些对流云的凝结释放到大气中。这种热源驱动着大气中巨大的、翻转的环流:哈德利环流和步行者环流,这些环流进入急流,导致下游很远的地方,甚至是英国的天气和气候变化。例如,1962/63年臭名昭著的寒冷冬季和2013年最近的非常寒冷的3月的起源可以追溯到MC的大气对流。由于岛屿分布的复杂性,以及目前大气模式的基本缺陷(主要是对流的表现),气候预测和天气预报都显示出对MC的严重误差,特别是在降雨模拟方面。到目前为止,这些错误一直很难解决,因为在这个地区缺乏合适的观测。计算能力和利用计算资源进步的大气建模专业知识,一直不足以运行足够详细的计算机模型来解决对流过程及其相互作用,这是大气环流的基石,足够长的时间来允许与更大尺度的相互作用。计算机能力和建模专业知识已经发展到我们有能力以足够的分辨率运行大气模拟,以准确捕捉岛屿的复杂分布,并准确模拟对流过程本身。针对这一点,国际海洋大陆年(YMC)现场实验(2017-2020)将在非常小的尺度上对大气和海洋进行测量,以评估和了解这些新模型模拟的输出。通过TerraMaris,英国将在YMC中发挥主导作用,通过使用英国气象研究飞机,大气雷达,气球和岛屿上的陆基测量对MC的对流过程进行观测,并使用自主水下和水面车辆观测周围海域。这套前所未有的协调观测将补充我们的国际合作伙伴正在进行的测量。近年来,英国和TerraMaris研究团队在开发高分辨率大气模型方面处于领先地位。我们将运用所学的技能和知识来理解对流和大气环流的多尺度背后的复杂机制,这些机制使MC的天气成为一个坚韧的问题。这些知识将使大气建模取得突破性进展,改善MC地区的天气预报和气候预测,直接造福于该地区的大量人口。其下游效应将使这些好处延伸到地球仪的遥远角落,改善全球和区域的中期天气预测和气候预测。
项目成果
期刊论文数量(1)
专著数量(0)
科研奖励数量(0)
会议论文数量(0)
专利数量(0)
Evaluation of multi-season convection permitting atmosphere - mixed layer ocean simulations of the Maritime Continent
海洋大陆多季节对流允许大气-混合层海洋模拟的评估
- DOI:10.5194/gmd-2023-165
- 发表时间:2023
- 期刊:
- 影响因子:0
- 作者:Howard E
- 通讯作者:Howard E
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Steven Woolnough其他文献
Steven Woolnough的其他文献
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{{ truncateString('Steven Woolnough', 18)}}的其他基金
The potential of seasonal-to-decadal-scale inter-regional linkages to advance climate predictions (InterDec)
季节到十年尺度的区域间联系推进气候预测的潜力 (InterDec)
- 批准号:
NE/P006787/1 - 财政年份:2016
- 资助金额:
$ 64.24万 - 项目类别:
Research Grant
Transitions Between Suppressed and Active Convection Coupled to Large-Scale Tropical Circulations
与大规模热带环流耦合的抑制对流和活跃对流之间的转变
- 批准号:
NE/K004034/1 - 财政年份:2013
- 资助金额:
$ 64.24万 - 项目类别:
Research Grant
Coupled Model Errors in the Tropical Atlantic in CMIP5 and their impact on the reliability of climate projections.
CMIP5 中热带大西洋的耦合模型误差及其对气候预测可靠性的影响。
- 批准号:
NE/J005126/1 - 财政年份:2011
- 资助金额:
$ 64.24万 - 项目类别:
Research Grant
Cloud System Resolving Modelling of the Tropical Atmosphere
热带大气云系统解析建模
- 批准号:
NE/E00525X/1 - 财政年份:2007
- 资助金额:
$ 64.24万 - 项目类别:
Research Grant
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Jakarta Heavy precipitation Experiment (JaHE): Coastal hydrological cycle climatology over the Indonesian maritime continent (IMC)
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TerraMaris:海洋大陆 - 全球气候系统的驱动力
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