BEGIN:VCALENDAR VERSION:2.0 PRODID:-//132.216.98.100//NONSGML kigkonsult.se iCalcreator 2.20.4// BEGIN:VEVENT UID:20260730T010731EDT-9636J1DN51@132.216.98.100 DTSTAMP:20260730T050731Z DESCRIPTION:Cranberry Liqueur Production (Design III)\nJustin Dougherty\, P aul Deram\, Laura Gilbert\, Guillaume\nLamoureux\nThe goal is to determine the feasibility of implementing a factory\nfor the production of cranberr y liqueur. Two production methods\n(fermentation and maceration) were anal yzed to determine the most\nadvantageous. Flow rates of the system are exa mined to meet the\nproduction needs. A floor plan of the factory is create d\, and a\ns......imulation of the production process is conducted.\n\nCom post Bioreactor (Design III)\nEyad Jamaleddine\, Cloé Rainville\nThe push toward greener industrial and residential activities is\nmaking composting a hot topic. Uniform conditions are necessary to\nensure the destruction of pathogens and a quality product\, so it is\nessential to maintain a hom ogeneous temperature throughout the\ncompost. To achieve this\, an in-vess el heat redistribution system\nwas constructed and tested. The system requ ires no external inputs\nof energy\, but exploits the principles of conduc tive and convective\nheat exchange. Temperature differentials within the c ompost bed\ncause water to flow through a closed coil of copper tubing\,\n redistributing the core heat throughout the compost. Heat is also\nconduct ed along the copper tubing. A controlled experiment was\nconducted to test the design. A statistical analysis of the\nexperimental results demonstra tes that the vessels fitted with the\nheat redistribution system exhibit l ower temperature gradients\nwithin the compost bed than in control vessels without the\nsystem.\n\nGoing Green: Building a Bio-Wall at Macdonald Cam pus (Design\nIII)\nJanette Kwan\, Emily 91Ë¿¹ÏÊÓÆµ\nThe 'Going Green' design p roject endeavors to make the Bioresource\nengineering department more liva ble and inviting. By installing a\nliving wall in the alcove\, the 'Going Green' system aims to enliven\nthe area with expected higher humidity\, mo re natural light levels\,\nand with the aesthetic pleasure of living plant s. By tying this\ninstallation into the department via educational display s and a\nwebpage\, 'Going Green' hopes to bring a fresh direction in build ing\ndesign to the campus\, while leading the way as one of the first\npro jects for this type of installation at 91Ë¿¹ÏÊÓÆµ. The design\nfeatures an int egrated planting\, irrigation\, lighting\, and computer\ncontrol system. C ome hear the detailed presentation to see if you\nmight want to get involv ed with this ongoing project.\n\nDetention Ponds for Agricultural Fields ( Design III)\nJonathan Martel-Gagnon\, Minh-Vy Le\nIn the last few years th ere has been increased attention paid to\nphenomena caused by the eutrophi cation of fresh water bodies. While\nthe government is actively trying to reduce the phosphorus loss\nfrom agricultural fields\, researchers also tr y to look at other\nmethods that could be used to address the problem. One of those\nmethods is the use of detention ponds in agricultural fields to \nreduce phosphorus pollution\, as well as to reduce the peak flow due\ndu ring precipitation. Far from being new\, detention ponds have\nmainly been used in municipal and construction sites as flood\ncontrol structures\, b ut also as sedimentation basins to reduce\nnon-point source pollution. How ever\, few guidelines exist on how to\nbuild this kind of pond for a small drainage area. This\npresentation will present guidelines and simulation tools that were\ncreated based on the literature found.\n\nSustainable Lig hting for Raymond (Design III)\nZhao Li\, Zara Rana\nOne of the greatest u ses of electricity is lighting\, which is used\neverywhere in\, for exampl e\, industrial\, commercial\, and residential\nbuildings. Electric lightin g can be costly and energy demanding.\nThere are many solutions to address this problem\, such as energy\nefficient light fixtures\, and such system s can be used reduce\noperating costs. Our design explores the possibility of sustainable\nlighting for the Raymond building located on our very own MacDonald\ncampus. Our design attempts to use natural daylight as a sourc e for\nsustainable lighting\, and we will be discussing the details of the \ndesign.\n DTSTART:20110405T140000Z DTEND:20110405T153000Z LOCATION:Raymond Building\, CA\, QC\, St Anne de Bellevue\, H9X 3V9\, 21111 Lakeshore Road SUMMARY:Bioresource Engineering Senior Design Seminars URL:/channels/event/bioresource-engineering-senior-des ign-seminars-173463 END:VEVENT END:VCALENDAR