
Engineering Innovations Vol. 13
Trans Tech Publications Ltd (Publisher)
Published on 3. April 2025
Book
Paperback/Softback
126 pages
978-3-0364-0728-9 (ISBN)
Description
This journal's volume includes articles based on research results that focus on solutions to actual issues of sustainable development of modern civil infrastructure, starting from energy management, development of urban drainage systems, and water treatment and supply finishing with seismic safe buildings design and environmental geology research. The presented articles will be interesting to a wide range of specialists whose professional activity is related to sustainable urban development.
More details
Language
English
Place of publication
Zurich
Switzerland
Target group
Professional and scholarly
Illustrations
Illustrations
Dimensions
Height: 240 mm
Width: 170 mm
Thickness: 6 mm
Weight
360 gr
ISBN-13
978-3-0364-0728-9 (9783036407289)
DOI
10.4028/b-k6xL3F
Copyright in bibliographic data and cover images is held by Nielsen Book Services Limited or by the publishers or by their respective licensors: all rights reserved.
Schweitzer Classification
Other editions
Additional editions

Jong Wan Hu | Ankit Tyagi | Mohd Zamri Mohd Yusop
Engineering Innovations Vol. 13
E-Book
02/2025
Trans Tech Publications Ltd
€0.00
Available for download
Content
Chapter 1: Energy Engineering
Simulation and Economic Analysis of a Mobilized Thermal Energy Storage System for Mediterranean Climate Buildings: Case Study
Optimizing Power Quality in Hybrid Renewable Energy Systems through Advanced Intelligent Control Techniques
Optimizing Grid-Interfaced Rooftop Solar Plant Installation for Sustainable Energy Generation
Chapter 2: Sustainable Approaches in the Development of Urban Drainage Systems
Exploring Environmental Sustainability Research Using Experimental Methods -Taking the Vegetated Swales Facility
The Concept of Optimizing the Environment and Moving towards Sustainable Development Goals with Green Infrastructure
Laboratory Evaluation of Load-Bearing Behavior and Drainage Ability of Pervious Concrete Pavement
Chapter 3: Water Treatment and Distribution
Assessing Rainwater Harvesting Potential in Seawater-Based Communities Using the Case Study of Poblacion Sitangkai, Philippines
Water Supply for Lawas Community: Investigating Demand and Enhancing Distribution Efficiency
Bacterial Strain Identification from Drinking Water in Water Treatment Systems
Chapter 4: Seismic Design of Buildings and Environmental Geology
Analysis of Soil Fertility and Heavy Metals Contamination on Post- Mining Laterite Nickel Southeast Sulawesi, Indonesia
Evaluation of the Seismic Performance of a High-Rise Building in Lima, Peru, Using the FEMA 440 and SEOAC Methodologies
Simulation and Economic Analysis of a Mobilized Thermal Energy Storage System for Mediterranean Climate Buildings: Case Study
Optimizing Power Quality in Hybrid Renewable Energy Systems through Advanced Intelligent Control Techniques
Optimizing Grid-Interfaced Rooftop Solar Plant Installation for Sustainable Energy Generation
Chapter 2: Sustainable Approaches in the Development of Urban Drainage Systems
Exploring Environmental Sustainability Research Using Experimental Methods -Taking the Vegetated Swales Facility
The Concept of Optimizing the Environment and Moving towards Sustainable Development Goals with Green Infrastructure
Laboratory Evaluation of Load-Bearing Behavior and Drainage Ability of Pervious Concrete Pavement
Chapter 3: Water Treatment and Distribution
Assessing Rainwater Harvesting Potential in Seawater-Based Communities Using the Case Study of Poblacion Sitangkai, Philippines
Water Supply for Lawas Community: Investigating Demand and Enhancing Distribution Efficiency
Bacterial Strain Identification from Drinking Water in Water Treatment Systems
Chapter 4: Seismic Design of Buildings and Environmental Geology
Analysis of Soil Fertility and Heavy Metals Contamination on Post- Mining Laterite Nickel Southeast Sulawesi, Indonesia
Evaluation of the Seismic Performance of a High-Rise Building in Lima, Peru, Using the FEMA 440 and SEOAC Methodologies