Visual Communication for Landscape Architecture demonstrates not only how and where a range of visual communication skills are needed to inform a design process, but also why they are essential in order to make presentations both informative and memorable. It illustrates how representational techniques can be sensitively applied in different contexts appropriate to a diverse range of design challenges, and encourages experimentation with contemporary techniques, both 2D and 3D. Developing a professional but creative design portfolio is explored in relation to creating e-portfolios and websites. A total of 12 contemporary case studies enable readers to contextualize the methods and techniques explored in each chapter through exploring real-life examples of winning projects by successful landscape architecture practices, making this title an inspirational resource for both budding – and practising – landscape architects.
The primary focus of stormwater and urban runoff research during the past twenty-five years has been on the physical description and the chemical quality assessment of runoff events and the design and implementation of the best management practices to control these events. There is a definite need for more effective integration of receiving system issues in the management and regulation of stormwater runoff. This book successfully brings together a diverse group of environmental specialists to address the issues surrounding the assessment, management, and control of stormwater, and more specifically urban runoff, from a receiving system perspective. The book's emphasis on the receiving system is timely, coming during a period when the U.S. Environmental Protection Agency is placing increasing emphasis on wet weather conditions through a new permit program for stormwater runoff and a policy on combined sewer overflows. Stormwater Runoff and Receiving Systems covers biocriteria, assessment of receiving water integrity, and integrated watershed analysis-all aspects of current water quality management programs for both industrial and municipal areas. More than thirty chapters are divided into six sections, offering in-depth discussions on various issues relating to stormwater, urban runoff, and receiving systems; impacts; uncertainty and risk; study design; impact mitigation; and issues analysis. Anyone who deals with regulatory programs requiring stormwater effect assessment including more than sampling and analysis of chemical water quality parameters in effluents will find this reference particularly useful.
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