Wales, Michigan, located in St. Clair County, faces a moderate level of natural disaster risk due to its relatively high hazard exposure. The area's climate is characterized by moderate temperatures and high precipitation levels, making it susceptible to flooding and severe weather events. Additionally, Wales is situated in a region with relatively high earthquake risk, as it lies near fault lines and seismic activity zones.
The geological features in the area, such as the St. Clair River and nearby water bodies, contribute to the hazard risk, particularly in terms of flooding and water-related disasters. Wales is also in close proximity to the Great Lakes region, which can exacerbate the impact of natural disasters such as storms and lake-effect snow. Furthermore, the presence of mountain peaks and hilly terrain in the surrounding area can increase the risk of landslides and erosion events.
Overall, Wales, Michigan faces a complex combination of climate and geological factors that contribute to its hazard risk profile. The region's vulnerability to various natural disasters underscores the importance of proactive disaster preparedness and mitigation measures to enhance community resilience and reduce potential impacts on the population and infrastructure in the area.
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St. Clair County in Michigan has a relatively low overall natural disaster and climate risk rating, with a risk score of 71.14 and a risk value of 12,590,032.0562. Specific hazards for the area include frequent lightning events with a high annual frequency of 38.06, as well as hail events occurring 1.93 times per year. The area is also prone to winter weather events, with snowfall frequencies of 4.09, and wind events occurring 3.95 times per year.
The geographical features of St. Clair County contribute to its risk profile, with water bodies like Lake Huron and the St. Clair River increasing the likelihood of severe weather events. The county's proximity to the Great Lakes can amplify the impact of storms and flooding. Additionally, the county's flat terrain and limited elevations make it susceptible to high wind events, as evidenced by the area's high wind event frequency of 3.95.
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