首页> 外文会议>National Symposium on Mathematical Sciences >Simulated Tsunami Run-up Amplification Factors around Penang Island for Preliminary Risk Assessment
【24h】

Simulated Tsunami Run-up Amplification Factors around Penang Island for Preliminary Risk Assessment

机译:槟城岛上模拟海啸升降放大因子进行初步风险评估

获取原文

摘要

The mega-tsunami Andaman that struck Malaysia on 26 December 2004 affected 200 kilometers of northwest Peninsular Malaysia coastline from Perlis to Selangor. It is anticipated by the tsunami scientific community that the next mega-tsunami is due to occur any time soon. This rare catastrophic event has awakened the attention of Malaysian government to take appropriate risk reduction measures, including timely and orderly evacuation. To effectively evacuate ordinary citizens to a safe ground or a nearest designated emergency shelter, a well prepared evacuation route is essential with the estimated tsunami run-up heights and inundation distances on land clearly indicated on the evacuation map. The run-up heights and inundation distances are simulated by an in-house model 2-D TUNA-RP based upon credible scientific tsunami source scenarios derived from tectonic activity around the region. To provide a useful tool for estimating the run-up heights along the entire coast of Penang Island, we computed tsunami amplification factors based upon 2-D TUNA-RP model simulations in this paper. The inundation map and run-up amplification factors in six domains along the entire coastline of Penang Island are provided. The comparison between measured tsunami wave heights for the 2004 Andaman tsunami and TUNA-RP model simulated values demonstrates good agreement.
机译:特大海啸安达曼上26袭击马来西亚2004年12月西北影响马来西亚半岛的海岸线从玻璃市雪兰莪200公里。它是由海啸科学界的下一兆海啸是由于即将发生的任何时间的预期。这种罕见的灾难性事件唤醒了马来西亚政府注意采取适当的降低风险的措施,包括及时和有序撤离。为了有效地撤离普通市民到安全的地方或就近指定的紧急避难所,一个充分的准备撤离路线与疏散地图上清楚地表明,估计海啸助跑高度和土地淹没距离至关重要。助跑高度和淹没距离通过基于来自周边地区的地质构造活动产生可靠的科学海啸源场景的内部模型2-d金枪鱼RP模拟。为沿槟岛的整个海岸估计助跑高度提供一个有用的工具,我们计算基于本文2-d金枪鱼-RP模型模拟海啸放大因子。提供淹没图和助跑放大系数沿槟岛的整条海岸线六个领域。对于2004年安达曼海啸和金枪鱼RP模型模拟价值计量海啸波高度之间的比较说明一致。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号