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Item Removal microfiber from wastewater by Electro coagulation and biological method(2025-04-28) MOHAMMED NAWAZ TAHIR; P BABA SAFFAN; PRATHIBHA S; SAMRUDHI S MAHAJANThe efficiency of electrocoagulation (EC) in eliminating microfibers from water is examined in this work. Following EC treatment, the microfibre concentrations significantly decreased, according to the data. Through the discharge of metal ions from electrodes, the microfibre particles' charges are neutralized, leading them to group together into bigger flocs that are simple to remove from the water. With benefits including its ability to effectively treat water with low microfiber concentrations and its relative eco-friendliness when compared to conventional chemical treatments, EC provides a sustainable alternative for reducing microfiber contamination in water bodies.Item Analysis, Modeling and design of Automatic Uplift Bridge During flood(2025-04-28) Kiran N N; Gnana Teja A; Sunil ZulpiThe automatic height-adjusting bridge represents a significant advancement in engineering design. Commonly referred to as movable bridges or drawbridges, these structures employ sophisticated mechanisms to modulate their elevation. Typically, the operation of such bridges involves a combination of hydraulic jacks and, in certain instances, electronic systems that facilitate this height adjustment. The incorporation of these innovative bridges has transformed flood management techniques. During flood events, these structures possess the capability to modify their height dynamically, thereby mitigating damage and ensuring the continuous operation of transportation networks. Through the utilization of real-time data analysis, these bridges can elevate in response to rising water levels, thereby enhancing safety and resilience in flood-prone regions.Item Partial Replacement of Plastics Flaskes as fine aggregate for mortar Blocks(2025-04-23) Akhil Naik; Sampath; Pavan N K; Tilak CThe growing amount of plastic trash has led to research into different applications for plastics in a number of sectors, including construction. The possibility of partially substituting plastic flakes for fine aggregate in mortar blocks is examined in this study. The goal of the study is to determine how adding plastic flakes to mortar blocks affects their mechanical, environmental, and physical characteristics. The effect of varying amounts of plastic flakes (from 5% to 30% by weight of fine aggregate) on the mortar blocks' compressive strength, workability, and water absorption properties was examined.Item Comparitive Study of Conventional Concerete With Jhama Bricks Concrete(2025-04-24) Harshitha M B; Shirisha M; Sneha K M; Vinay S NConcrete is regarded as the most widely used building material worldwide. Water, sand, cement, and an aggregate of rock make up typical concrete compositions. The coarse aggregate in concrete is the main topic of this project. In conventional concrete, the coarse aggregate of rock will be swapped out for the other element. This will involve Jhama or burn brick. The availability of this material led to its selection. The brick production sector is the source of the burned brick. Many bricks are rejected in the brick-making process as well because they don't meet the necessary standards. The brick's warped shape, which results from the kiln's uneven temperature management, is one of these significant nonconformities. Additionally, these abandoned bricks may provide as a source of coarse material. When coarse aggregate was substituted, workability was found to decline. The compaction factor showed that the percentage of coarse aggregate replaced by Jhama class brick bats varied from 9% to 12%.Item Treatment of Microfiber from wastewater by Electrocogulation and Biological Method(2025-04-24) Snjeevkumar B E; Rohini B C; Shanth Kumar MBecause of their possible effects on the environment and human health, microfibers—a form of microplasc have emerged as a major concern in wastewater treatment. This study looked into how well biological and electrocoagulaon techniques removed microfibers from wastewater. The biological approach achieved a maximum removal effecveness of 90%, whereas the electrocoagulaon method had a maximum removal efficiency of 95%. The outcomes demonstrated that while both techniques were successful in eliminang microfibers from wastewater, the electrocoagulaon approach was superior. The study offers important informaon for creang efficient treatment methods that eliminate microfibers from wastewater.Item PARTIAL REPLACEMENT OF SUGARCANE BAGASSE ASH ASFINE AGGREGATE FOR MORTAR BLOCKS”(2025-04-02) Pranay P; Prashaanth; Suraj N; Uttam MUThe need for sustainable alternatives in concrete manufacturing has arisen as a resultof the growing demand for sand in building and its detrimental environmental effectsfrom overexploitation. The possibility of sugarcane bagasse, a plentiful agriculturalbyproduct, as a sustainable alternative to sand in stiff pavement mix designs isexamined in this study. The fibrous residue that remains after sugarcane juice isextracted is called sugarcane bagasse, and it is frequently thrown away as waste,which poses problems for environmental management. By using this waste material,the disposal problem is resolved and the amount of natural sand used in building isdecreased.Item ANALYSIS AND DESIGN OF G+3 COMMERCIAL BUILDING USING STAAD PRO AND RIVET 2024-2025(2025-03-01) KEERTHANA 1NH21CV026 KIRTHAN S HEGDE 1NH21CV029 LALREMMAVI I FANAI 1NH21CV030 MARIA SPOORTHY 1NH21CV035A construction project typically commences with the layout of the building or structure, followed by the design and analysis of the structure. This specific project entails the design, and analysis of a G+3 commercial building, leveraging renowned civil engineering software. To successfully complete this project, popular software such as AutoCAD, STAAD Pro, and Revit Architecture will be employed. AutoCAD will be used for creating and editing 2D and 3D models of the building, while STAAD Pro will be utilized for analyzing the structural integrity of the building. Revit Architecture will be employed for creating a detailed design of the building, including the structural system. By utilizing these software tools, this project aims to deliver a comprehensive and detailed plan for the construction of the G+3 commercial building.Item Patial Replacement of Coarse Aggregates by Plastic Aggregates(2025-03-01) Abhay N P; Srujan; Vikas K M; Suhas SPlastic usage has increased in recent years as a result of increased urbanization. The amount of plastic in the environment has increased dramatically. Managing this massive amount of plastic waste has proven to be a difficult task. The Accumulation has proven to be harmful to environment and human health.Item Design of The Decentralized Waste Water Treatment Systems (Dewats) For New Horizon College Of Engineering Campus As A Future Forecasting (2030)(2025-03-01) ANU RANGANATH S R; BHAVANA M REDDY; KANISHKA S NAYAK; SAHANA KDesigning Decentralized waste water treatment system (DEWATS) for New Horizon College of Engineering Campus by 2030 which solves the problems like sustainability, water scarcity, energy efficiency and Economical crisis. As the population increases in future as well as climate will also change. The DEWAT System will treat and recycle waste water on-site and promoting water reuse for irrigation, toilet flushing, cooling and recreational purpose. The system will include components such as settler tanks, anaerobic baffled reactor, anaerobic filter and planted gravel filter. NHCE’s DEWATS will showcase model of sustainable waste water management.