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    低俗怪谈

    Climate Gambit: Chinese team develops ‘super brain’ to guide flood precautions using weather, hydraulic and terrain data_我的网站

    鸿门宴

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    Students from Xi'an University of Technology test a virtual reality-enabled emergency evacuation simulation system tailored for flood disasters on January 12, 2024. Photos: Courtesy of Xi'an University of Technology
        Students from Xi'an University of Technology test a virtual reality-enabled emergency evacuation simulation system tailored for flood disasters on January 12, 2024. Photos: Courtesy of Xi'an University of TechnologyEditor's Note:
    Extreme weather is increasingly a global challenge, and the key to addressing climate risks lies in earlier prediction, more precise action and smarter preparedness, with emerging technologies playing a vital role. The Global Times launches the "Climate Gambit" series, exploring how research teams are leveraging cutting-edge technologies, including artificial intelligence, high-performance computing and smart observation systems, to anticipate weather changes, enhance disaster early-warning and strengthen resilience against climate risks.
    Inside a state key laboratory at Xi'an University of Technology, Northwest China's Shaanxi Province, there is a miniature but complete "water world" which simulated water channels, inland lakes and main rivers to recreate real flood scenarios and test their newly developed GPU Accelerated Surface Water Flow and Transport Model (GAST).
    Known as a "super brain" for flood control, GAST can complete flood simulations involving more than 3 million computational units within 30 seconds, helping transform flood management from a reaction to emergency into active precautions since "flooding impacts can be predicted even before rainfall arrives."
    At a time when extreme rainfall and summer flooding have become increasingly frequent, questions such as when the flooding will arrive, which roads may be submerged and when residents should evacuate have become increasingly important.
    In an exclusive interview with the Global Times, Hou Jingming, a professor at Xi'an University of Technology and the leader of the research team, explained how the GAST model seeks to answer these questions by accurately predicting flood development and identifying vulnerable areas before disasters occur, and how the model helps authorities take preventive measures to reduce casualties and economic losses.
    AI empowering 'flood drill'  
    The water tank system in the lab was designed to create a controllable, repeatable and observable environment to simulate complex hydrological processes, including river flooding, urban water level changes, lake regulation, drainage pump operations and coordinated flood-control measures.
    By adjusting variations such as upstream water inflow, rainfall intensity, downstream water levels and drainage conditions, scientists can recreate different flood scenarios. Meanwhile, water levels, flow speeds and other data are collected in real time and displayed on a digital twin platform.
    "If a rainstorm and corresponding floods are an exam, GAST is like a 'drill,'" Hou said. "It can simulate how floods develop, where water will flow, which areas may be inundated and when river levels may rise, ensuring authorities are well but not overly prepared."
    To answer the public's concern about "whether my neighborhood will be flooded when heavy rain arrives," the team developed new algorithms for urban surface water flow, including improvements in terrain slope and friction calculations.
    These breakthroughs have improved simulation accuracy in complex urban environments. Compared with extensive monitoring data, GAST can keep simulation errors of key hydrodynamic factors within 15 percent. This means the model can provide not only general flood trends, but also quantitative information such as water depth, flow speed and inundation areas.
    Combined with AI technologies, it can identify complex relationships between rainfall, water conditions, flood depth, flow velocity and affected areas, cutting simulations from hours in traditional methods to minutes or even seconds.
    The faster calculation capability means that once meteorological authorities update forecasts, the model can quickly estimate flood risks in different parts of a city. 
    "The earlier rainfall warnings are issued, the earlier we can identify potential flooding hotspots and high-risk areas," Hou said. "This saves valuable time for evacuation, traffic management and emergency deployment."
    For smarter disaster response

    Building an accurate flood prediction model also requires integrating large amounts of urban data other than weather forecasts, including urban terrain, drainage networks and infrastructure information.
    For example, a model developed for Xi'an incorporates geographic data and drainage system information collected from relevant authorities and field surveys. After receiving rainfall forecasts, the system can quickly calculate possible flooding scenarios, showing when and where waterlogging may occur and highlighting vulnerable roads and areas through visual maps.
    To demonstrate how the super brain works in case of possible flooding, the laboratory has set a virtual reality area where visitors can experience a simulated urban flooding evacuation in the Xiaozhai area of Xi'an. Wearing VR headsets, participants can see water levels gradually rising and follow emergency instructions to move toward higher ground.
    The entire technological package has already been applied in real-world flood prevention.
    A 3D live?scene display lab in Xi'an that oversees stormwater drainage performance in Hengshui, North China's Hebei Province Photos: Courtesy of Xi'an University of Technology
        A 3D live-scene display lab in Xi'an that oversees stormwater drainage performance in Hengshui, North China's Hebei Province Photos: Courtesy of Xi'an University of Technology
    During Typhoon Muifa in 2022, Haishu district in Ningbo, East China's Zhejiang Province, recorded a regional rainfall of 367 millimeters. Using GAST as its core technology, the local flood forecasting platform integrated weather forecasts, AI algorithms and real-time monitoring data to provide rolling three-hour flood risk predictions.
    Post-event assessments showed that predicted risks at most locations matched actual flooding conditions. The average relative error between predicted and observed maximum water depths was 13 percent.
    The GAST model was also integrated into a smart rain and flood management platform in Qinhan new city area in Xianyang of Shaanxi, and during a rainstorm warning in July 2022, the platform provided continuous monitoring and forecasts. Based on the results, local authorities shifted from routine inspections to targeted monitoring of flood-prone areas and optimized emergency drainage operations.
    The model is also being applied to mountain torrent prevention, as it can simulate rapidly changing flows in complex terrain and, combined with machine learning, complete forecasts within seconds. For reservoirs and rivers, it supports sudden and gradual dam-break simulations.
    In June 2026, the model was presented at a national symposium on flood risk mapping achievements. The technology has since been applied by water resources, emergency management and urban development authorities, expanding from Shaanxi to multiple provinces and regions across China.
    Looking ahead, the research team is developing a framework that further keeps up with the pace focusing on AI technologies. "Currently, the system operates based on weather forecast, therefore, AI will increase efficiency by using historical cases and real-time monitoring data to correct errors and update forecasts dynamically," Hou said.
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    原标题:美大豆供应前景异常吃紧!CBOT大豆创一年多来最大涨幅来源 | 财联社、oilcn油讯等美国农业部在周一(9月12日)发布的月度作物报告中下调了对美国大豆单产和产量的预测,令市场措手不及,并推高期货价格。最新供需预估月报显示,美国大豆产量前景异常悲观。这一消息推升美国大豆期货上涨5.4%,创下一年多来的最大涨幅。受报告利好提振,今日(9月13日)国内油脂油料期货开盘全线大涨。美国农业部意外大幅下调大豆产量预期美国农业部的报告显示,由于干旱天气影响大豆作物生长,农业部此次意外大幅下调 2022-23年美国大豆产量和期末库存的预期。农业部在9月月报中写道:2022/2023年度大豆单产预期为50.5蒲式耳/英亩,较8月月报预期的51.9蒲式耳/英亩大幅下调,也低于市场预期的51.5蒲式耳/英亩。美国农业部还将美国2022/2023年度大豆期末库存预期下调至2亿蒲式耳,大幅低于市场预期的2.47亿蒲式耳,也较8月月报预期的2.45亿蒲式耳大幅下调。

    B | 这一消息推动芝加哥11月大豆期货周一收涨5.4%,报每蒲式耳14.8825美元,为2021年6月底以来的最大涨幅,也是约11周以来的价格新高。

    C | “大豆今天抢了风头,”Teucrium Trading高级投资组合策略师杰克·汉利(Jake Hanley)表示,“目前的预期显示,大豆将连续第三个作物季节供不应求。”巴西也不乐观不仅美国的大豆产量前景不佳,大豆的最大生产国巴西的情况也不乐观。由于拉尼娜现象导致天气恶劣,而且这一恶劣天气可能会延续到明年,巴西部分地区的干旱预计将持续恶化,给当地大豆产量前景蒙上阴影。

    D | 美国StoneX首席大宗商品经济学家阿兰·苏德曼(Arlan Suderman)周一表示,巴西仍能重建全球大豆供应。但前提是天气正常。如果拉尼娜继续影响大豆产量的话,要怎么办?这是终端用户现在必须担心的问题。”芝商所12月玉米期货也收涨1.6%,至每蒲式耳6.96美元,创下6月中旬以来新高。美国农业部周一还发布了最新的每周作物状况报告,显示美国大豆和玉米的评级均略低于预期。美国农业部还将全球小麦产量预期上调了约400万吨,主要原因是俄罗斯和乌克兰的产量增加。这推动芝商所12月基准小麦价格继续走低。

    E | 报告利多,上涨动力略显不足中粮期货分析师认为:本次USDA供需报告明显利多,美豆价格在报告发布后由1415美分左右的位置上涨至1485美分。

    F | 美豆新作供应端的数据意外利多仍将在短期内拉高美豆价格,如果1500美分的位置被突破,价格可能继续上行。但美豆新作天气炒作已经完成,新作出口前景因南美大豆出口的竞争可能存在弱化的可能,价格因报告冲高之后的上涨动力略显不足。后期需要关注宏观美联储加息的情况,以及美豆新作出口的情况,巴西大豆的种植期也即将开始,种植面积的炒作也将逐渐提上日程,连续的拉尼娜天气是否会对新作南美大豆产生影响仍需等待。前海瑞奔稳定供应高性价比菜籽原油、菜粕、豆原油等,货源充足,符合国标,拥有国际第三方认证。更多合作方式与详情请关注VX(Ruiben168168),或致电0755-26901649。返回搜狐,查看更多责任编辑:

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