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The gripping, true-life story of one of the most destructive floods in U.S. history and its effect on one city and its citizens.
Instead of fishing for “channel cats” with his great-grandfather in southern Manitoba, thirteen-year-old Finn Armstrong winds up fight-ing the Red River Flood of 1997, the biggest flood since 1826.
Fargo, North Dakota, and Moorhead, Minnesota, have existed on opposite sides of the Red River of the North since 1871. Ever since, heavy moisture from melting snow has combined with spring rains to threaten both towns with a rapidly rising, twisting river. Minor flooding is almost an annual event, and on six occasions the two towns experienced major floods requiring evacuations of large numbers of residents. The history of these floods is covered in the photographs contained in this book, including many provided by residents, local flood-fighting crews, and state and federal agencies. These images tell the story of how the two communities deal with one of nature's most common dangers.
Heads above Water tells the stories of women and their families who survived the Grand Forks, North Dakota, flood of 1997, one of the worst natural disasters in U.S. history. This book describes the challenges women faced and explores the importance of class, race, gender, sexual orientation, and disability in their disaster recovery. The women found themselves face-to-face with social and familial upheaval, emotional and physical trauma, precarious economic and social status, and feelings of loss and violation. By exploring the experiences of these women, author Alice Fothergill contributes to broader sociological discussions about women's changing roles, the stigma of needing and receiving assistance, family relationships under stress, domestic violence, downward mobility, and the importance of "home" to one's identity and sense of self. Heads above Water offers poignant insight into women's everyday lives in an extraordinary time.
This book is the standard reference based on roughly 20 years of research on atmospheric rivers, emphasizing progress made on key research and applications questions and remaining knowledge gaps. The book presents the history of atmospheric-rivers research, the current state of scientific knowledge, tools, and policy-relevant (science-informed) problems that lend themselves to real-world application of the research—and how the topic fits into larger national and global contexts. This book is written by a global team of authors who have conducted and published the majority of critical research on atmospheric rivers over the past years. The book is intended to benefit practitioners in the fields of meteorology, hydrology and related disciplines, including students as well as senior researchers.
When in doubt, throw it out. Don't risk injury or infection. 2: Ask for help. Many people can do a lot of the cleanup and repairs discussed in this book. But if you have technical questions or do not feel comfortable doing something, get professional help. If there is a federal disaster declaration, a telephone "hotline" will often be publicized to provide information about public, private, and voluntary agency programs to help you recover from the flood. Government disaster programs are there to help you, the taxpayer. You're paying for them; check them out. 3: Floodproof. It is very likely that your home will be flooded again someday. Floodproofing means using materials and practices that will prevent or minimize flood damage in the future. Many floodproofing techniques are inexpensive or can be easily incorporated into your rebuilding program. You can save a lot of money by floodproofing as you repair and rebuild (see Step 8).
This book exposes practitioners and students to the theory and application of river and lake ice processes to gain a better understanding of these processes for modelling and forecasting. It focuses on the following processes of the surface water ice: freeze-up, ice cover thickening, ice cover breakup and ice jamming. The reader will receive a fundamental understanding of the physical processes of each component and how they are applied in monitoring and modelling ice covers during the winter season and forecasting ice floods. Exercises accompany each component to reinforce the theoretical principles learned. These exercises will also expose the reader to different tools to process data, such a space-borne remote sensing imagery for ice cover classification. A thread supporting numerical modelling of river ice and lake ice processes runs through the book.