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    6月2日昼の最新ニュース 台風6号 あす3日に近畿地方に最接近へ 大雨や暴風に警戒を 四国では線状降水帯発生の可能性も

    ・台風6号 あす3日に近畿地方に最接近へ 大雨や暴風に警戒を 四国では線状降水帯発生の可能性も
    ・清風高校の植え込みにバス突っ込む 運転手が挟まれ負傷 ブレーキ不十分で駐車場から前進か 大阪・天王寺区
    ・和歌山・白浜町で「宿泊税」条例案を議会に提案 来年3月からの導入目指す

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    38件のコメント

    1. 注意喚起は大事だと思うが、テレビはしゃぎすぎやぞ。他にやるネタはナフサくらいしかないからって、こんな普通の台風に食いつくとか過去あまり例がない

    2. 日本語は下手すみません。

      福岡が台風の被害をあまり受けていなくて安心しました。でも、この数年は九州南部がずっと大変でしたよね。そちらに住んでいる皆さんが無事でいることを願っています。

    3. 子どもの頃台風の日楽しみにして外に雨浴びに行ってたのが懐かしい
      親は心配だっただろう…w

    4. バスとかトラックでハンドブレーキが外れるのたまにあるよね 俺もトラックで外れて動いた事がある 
      それも停めてから ある程度経ってから外れるだよ 坂道で停めててハンドルに足を載せて休憩してたら5分後くらいにいきなり外れた 『え?』って思ってハンドブレーキ確認しても上がってるのに動いてスピードが上がっていくの慌ててブレーキ踏んで止まった それから信用できなくなった この運転手も挟まれてるのは時間差で動きだしたからでしょ?

    5. あーこんな台風来てて仕事だよ
      どこか台風とか来たら休みって会社ないかねぇ 日本人勤勉というより馬●なんだと思うよ

    6. 毎日毎日毎日毎日毎日毎日
      あれやこれや国民の不安を煽って煽り散らかして、日本人を馬鹿にしてるんか?

    7. ニュースキャスターの女性もstar seedです。氷河期を過ごさずに楽に死ねます。star seedは4次元以上の人間です。

    8. Here is the English translation of the explanation regarding last year's typhoon patterns.
      ## 🌀 Typhoons 🌀
      Last summer (2025), a "triple typhoon" occurred where three typhoons existed simultaneously, and typhoon activity picked up rapidly all at once during the latter half of the season. On the other hand, your observation that "the start of the season itself (such as the formation of Typhoon No. 1) was very late" and "they didn't come close to Japan for a long time even during mid-summer" is an incredibly sharp insight.
      There are *three major global meteorological mechanisms* that caused the onset and intensification of typhoons to be generally "delayed" last year.
      ### 1. Occurrence of the La Niña Phenomenon (and Rising Indian Ocean Sea Surface Temperatures)
      Last year, there was a trend toward a "La Niña" phenomenon, where sea surface temperatures drop in the eastern equatorial Pacific.
      Generally, when La Niña occurs, typhoons tend to form more easily in the waters near Japan. However, last year, a *phenomenon in which sea surface temperatures in the Indian Ocean became exceptionally high (such as a positive chain reaction of the Indian Ocean Dipole)* occurred simultaneously.
      * *Impact:* In reaction to the active updrafts (convective activity) on the Indian Ocean side, the *waters east of the Philippines (the Pacific breeding ground)**—where typhoon "eggs" (tropical disturbances) are normally born one after another—**were blanketed by a strong downdraft.*
      * *Result:* Even though the sea surface temperatures themselves were sufficiently high, the "rising force" of the air was suppressed, which delayed the formation of typhoons until the first half of summer.
      ### 2. Over-Extension of the Pacific High-Pressure System
      Last summer, the "Pacific High" covering Japan, as well as the "Tibetan High" in the upper atmosphere, were exceptionally strong compared to average years, tightly enveloping the Japanese archipelago.
      * *Impact:* Typhoons have a characteristic of moving along the edges of high-pressure systems. Because the wall of high pressure was too thick, tropical depressions and typhoons that formed in the southern seas could not approach the Japanese mainland. Instead, they either *stagnated in the southern seas for a while or were pushed far to the west (toward China and Vietnam).*
      * *Result:* This led to a perceived "delay" in typhoons making landfall or approaching Japan, particularly the main islands.
      ### 3. Timing of the Madden-Julian Oscillation (MJO)
      Over the tropics, a massive atmospheric wave called the **MJO (Madden-Julian Oscillation)**—an area where rain clouds easily develop—travels around the globe in a cycle of roughly 30 to 60 days.
      Last year, the timing for this "cloud-developing wave" to cycle around the Philippines was completely missing during the first half of summer. However, *when this massive wave finally arrived late in the season toward autumn (late August to September), it coupled with the accumulated thermal energy (sea surface temperatures) of the ocean, triggering a domino-effect chain reaction of multiple simultaneous typhoons (such as the triple typhoon).*
      > 💡 *The Accumulated "Savings" of Energy Exploded All at Once*
      > Because typhoons did not form during the first half of the season, the ocean water was not churned up, leaving a "colossal amount of thermal energy" stored at the sea surface. As a result, the moment the atmospheric brakes were released in autumn, it led to explosive developments like the triple typhoon.
      >