The Civil Engineers today continue to accelerate the progress in the world. A report published by the Institution of Civil Engineers takes a look into the areas where civil engineers can contribute to the most.
Areas influenced by Civil Engineering:
Civil Engineers help support life :Civil Engineers bring about the supply of fresh water to all parts of the world thereby increasing quality of life. An illustration: In Ethiopia, only 24% of the country’s 62.6 million people have safe water and only 15% have sanitation. Water-related diseases are common and life expectancy is only 43 years. Civil engineers designed the Hitosa gravity water scheme, a part of Ethiopia’s largest water-supply project. Civil engineers had the vision needed to design and put into practice such a huge scheme, working with 60,000 local people to provide safe water for their communities.
Civil Engineers protect us from natural disasters :Natural disasters are managed better when understanding of the environment is applied to real time situations. This is especially true in coastal areas that are threatened by being worn away by the sea or floods, and inland sites may be contaminated by previous industrial activities or threatened by subsidence (an area of land gradually sinking or caving in). Extreme heat and cold, winds, earthquakes and risk of flooding cause problems, but civil engineers are using their skills to make areas safer. ‘Superadobe’ is a beehive-like building developed for future communities on the Moon. It has been adapted to create affordable emergency housing for survivors of disasters like the Asian tsunami.
Civil Engineers help us get from point A to point B :Transport systems join our communities together. Road, rail, air and sea networks span the world. They help us trade, travel, exchange ideas and information, and gain employment, healthcare and education. Civil engineers understand the best ways to move around or across our environment, creating the networks that help take us where we want to go.
The Green Wheel is an excellent example of civil engineering’s contribution to transportation. Opened in 2002, it is an 80km network of footpaths and cycle ways around Peterborough, UK, that encourages ‘green travel’ and sustainable tourism. It includes a series of bridges to carry horses, people on foot and cycles over roads, railways and rivers. The bridges link nature reserves, picnic sites, sculpture trails and small parks, helping local people and visitors to get more enjoyment out of the area.
Civil Engineering with Modern Tools
Today, the civil engineer is equipped with several tools to make his task easy. One such example is Revit – a BIM software.
Revit comes with loads of unique features to help designers and architects design more sustainable, accurate designs with fewer errors and less waste, thus achieve higher profits and more satisfied clients. Some of the features that make Revit Architecture irresistible include:
Analysis: Revit is used to create and capture photo realistic design ideas and contextual environments. It lets the users to capture and analyze design concepts and enables them to take right decisions for sustainable design, clash detection, construction planning, and fabrication.
User friendliness: Users can sketch freely, and create 3D forms quickly, and manipulate forms interactively. The users can prepare their models for fabrication and construction with built in tools for conception and clarification of complex forms.
Manufacturing viability: Engineers and architects can perform daylighting and energy analysis, and gain insights into manufacturing viability and early construction material takeoffs.
Collaboration: It helps them collaborate with engineers, contractors, and owners. Using Revit, engineers and architects can optimize team collaboration, communicate more clearly and reliably the design intent to all stakeholders, including fabricators.
Interoperability: Engineers and architects can bring conceptual massing concepts from applications such as AutoCAD and Autodesk, Maya as well as Auto DesSys form.Z, McNeel Rhioceros, Google Sketchup, or other ACIS or NURBS based applications into Revit Architecture as mass objects, and begin schematic design.
Reference: www.ice.org.uk