The Eastern Australian Floods of February 2022 and Its Relationship with Climate Change

Q4 Energy
J. Callaghan
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引用次数: 2

Abstract

During February 2022 major riverine flooding occurred in an area which has the fastest population growth in Australia. This extended from the Mary River in Southeast Queensland (SEQ) to the Clarence River in Northeast NSW (NENSW). Two centres within this area were devastated by floods unprecedented in living memory. One was the Brisbane Metropolitan area where all-time record daily rainfall in the suburbs flooded creeks. This creek flooding was much worse than that caused by the Brisbane River itself where Wivenhoe Dam played a role in preventing more disastrous flooding. The other was in the Northern New South Wales city of Lismore where rainfall in the Wilsons River catchment exceeded all known rainfall rates there. The structure of the weather system generating the rainfall responsible for these two floods is studied along with the climatology of such events. One event which occurred during 1954 stands out and is examined in detail. A climate shift in 1976 resulted in two decades of relatively benign weather in the region and tourism flourished there due to mild summers and warm winters. The area experienced a huge growth in population with fading memories of past disastrous weather events and huge residential development occurred in flood plain areas. During the twenty-first century these extreme events have returned although so far not as frequent as earlier decades but still result in some residents experiencing multiple flooding events. The 1954 event occurred during an extended period of devastating flood events not experienced in recent decades. With the huge increase in population in this area since the 1970s such a series of events like those in the 1950s would stretch the resources of disaster managers given the problems, they faced in 2022.
2022年2月东澳大利亚洪水及其与气候变化的关系
2022年2月,澳大利亚人口增长最快的地区发生了严重的河流洪水。这从昆士兰州东南部的玛丽河(SEQ)延伸到新南威尔士州东北部的克拉伦斯河(NENSW)。该地区的两个中心被人们记忆中前所未有的洪水摧毁。一个是布里斯班大都会区,郊区的日降雨量创历史新高,淹没了小溪。这次小溪洪水比布里斯班河本身造成的洪水严重得多,在布里斯班河上,韦文霍大坝起到了防止更多灾难性洪水的作用。另一个是在新南威尔士州北部的利斯莫尔市,威尔逊河流域的降雨量超过了那里所有已知的降雨量。研究了造成这两次洪水的降雨的天气系统结构以及这些事件的气候学。1954年发生的一件事引人注目,并被详细研究。1976年的气候变化导致该地区20年来天气相对温和,夏季温和,冬季温暖,旅游业蓬勃发展。该地区经历了人口的巨大增长,对过去灾难性天气事件的记忆逐渐淡去,洪水平原地区出现了大规模的住宅开发。在21世纪,这些极端事件再次出现,尽管到目前为止不像前几十年那样频繁,但仍然导致一些居民经历多次洪水事件。1954年的洪水发生在近几十年来从未经历过的长时间毁灭性洪水期间。自20世纪70年代以来,随着该地区人口的大幅增长,鉴于他们在2022年面临的问题,像20世纪50年代那样的一系列事件将使灾害管理人员的资源变得紧张。
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Journal of Nuclear Energy Science and Power Generation Technology
Journal of Nuclear Energy Science and Power Generation Technology Energy-Energy Engineering and Power Technology
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