{"id":167,"date":"2014-10-13T01:36:52","date_gmt":"2014-10-13T01:36:52","guid":{"rendered":"https:\/\/www.ukm.my\/seri\/?page_id=167"},"modified":"2015-06-02T15:17:57","modified_gmt":"2015-06-02T07:17:57","slug":"solar-thermal","status":"publish","type":"page","link":"https:\/\/www.ukm.my\/seri\/solar-thermal\/","title":{"rendered":"Solar Thermal"},"content":{"rendered":"<header>\n<h2 class=\"title\"><span style=\"color: #00ccff;\"><strong>1.\u00a0Solar Assisted Drying Systems<\/strong><\/span><\/h2>\n<p>The technical development of solar drying systems can proceed in two directions. Firstly, simple, low power, short life, and comparatively low efficiency-drying system. Secondly, high efficiency, high power, long life expensive drying system. The latter is characterized not only by an integrated <span id=\"851af24e-d821-4360-be69-188d888c99e4\" class=\"GINGER_SOFTWARE_mark\"><span id=\"64aac348-a27a-478d-9e90-60068cfc279a\" class=\"GINGER_SOFTWARE_mark\"><span id=\"9960b071-891c-4e05-8ef6-bbb6f4d9c2f6\" class=\"GINGER_SOFTWARE_mark\"><span id=\"0e7001ba-06a9-4738-98b7-5ac55bed18d3\" class=\"GINGER_SOFTWARE_mark\"><span id=\"be86204f-3468-4d8f-ae36-1064ef469d61\" class=\"GINGER_SOFTWARE_mark\"><span id=\"4f972d03-2a90-422c-b6e0-540822d5258d\" class=\"GINGER_SOFTWARE_mark\">structure but<\/span><\/span><\/span><\/span><\/span><\/span> also integrating in an energy system involving process other than drying such as hot water when the drying system is not in use. In addition, air based solar collectors are not the only available systems. Water based collectors can also be used. A water to air heat exchanger can be used. The hot air that will be used to dry the product can be forced to flow <span id=\"5c7d9798-1614-4088-b3f4-2bc69195304f\" class=\"GINGER_SOFTWARE_mark\"><span id=\"0d9f342a-cfa9-49a2-9ceb-c5c83ea23566\" class=\"GINGER_SOFTWARE_mark\"><span id=\"60864a9d-2bc7-4ded-a064-31f3516cf0ca\" class=\"GINGER_SOFTWARE_mark\"><span id=\"c9b28d7d-bd09-459e-9cf0-61d8cd34b319\" class=\"GINGER_SOFTWARE_mark\"><span id=\"86225ebd-a40b-45ca-9192-70da10785229\" class=\"GINGER_SOFTWARE_mark\"><span id=\"5587d101-aa07-470c-9be2-b0d218565592\" class=\"GINGER_SOFTWARE_mark\">in<\/span><\/span><\/span><\/span><\/span><\/span> the water to air heat exchanger. In addition, the hot water tanks <span id=\"e4e8bfeb-a5ff-4e00-807b-0fd090c18027\" class=\"GINGER_SOFTWARE_mark\"><span id=\"0f15191b-d8e3-4300-9808-a1d1566138be\" class=\"GINGER_SOFTWARE_mark\"><span id=\"f539c501-ca19-4c5a-b056-259d1c0d27f4\" class=\"GINGER_SOFTWARE_mark\"><span id=\"0264b74c-8c05-480f-abdf-e660e52c8d56\" class=\"GINGER_SOFTWARE_mark\"><span id=\"52be0371-f6f6-4e35-a9d5-6362a03e867d\" class=\"GINGER_SOFTWARE_mark\"><span id=\"332ad6ad-e382-445e-a165-c1f100fc8111\" class=\"GINGER_SOFTWARE_mark\">of<\/span><\/span><\/span><\/span><\/span><\/span> the farm can be used as heat storage of the solar drying system. The solar assisted drying systems are (a) the solar assisted drying systems with the V- <span id=\"d7064a38-dc52-47d9-bf01-534f92d2abce\" class=\"GINGER_SOFTWARE_mark\">grove<\/span> collector; (b) solar assisted drying systems with the double pass collector and (c) solar assisted <span id=\"c4abd8ad-de22-4d56-98e5-1499927d71f2\" class=\"GINGER_SOFTWARE_mark\"><span id=\"7abc8c8f-b685-4293-ab35-878278a4809c\" class=\"GINGER_SOFTWARE_mark\"><span id=\"fab180ec-c9b7-4707-9c5c-5c2b0ab2b2c3\" class=\"GINGER_SOFTWARE_mark\"><span id=\"46186727-753d-46db-9d01-afd8c18f9685\" class=\"GINGER_SOFTWARE_mark\"><span id=\"49a798ef-bd34-43e4-b182-653d6671adf5\" class=\"GINGER_SOFTWARE_mark\"><span id=\"e3bb55f9-d580-4ab3-853f-843453a6b900\" class=\"GINGER_SOFTWARE_mark\">dehumidification<\/span><\/span><\/span><\/span><\/span><\/span> system<span id=\"146605bc-2956-48a5-b4a1-550b337e51df\" class=\"GINGER_SOFTWARE_mark\"><span id=\"695b91e9-aad6-42d3-b98c-379b1abb19c1\" class=\"GINGER_SOFTWARE_mark\"><span id=\"f94e665d-0c54-42e4-a12e-1840d7a7efdd\" class=\"GINGER_SOFTWARE_mark\"><span id=\"22a55208-ffa0-43d6-83fd-57e7b22553c7\" class=\"GINGER_SOFTWARE_mark\"><span id=\"5c7f6e75-017f-4eb9-90c9-a6aebd6d86c0\" class=\"GINGER_SOFTWARE_mark\">.\u00a0<\/span><\/span><\/span><\/span><\/span>The first two systems are air based solar collector systems and the third is a water based system. The first system has been used for drying chilies and green tea. The second dryer has been used for oil palm fronds (an agricultural waste of the oil palm tree) and the third for medicinal herbs. In addition, a natural convective solar dryer has been tested and evaluated. The systems provide <span id=\"c04b2602-3996-4a7d-b928-9ce90bda9be5\" class=\"GINGER_SOFTWARE_mark\"><span id=\"2471a9d4-09ab-4234-8466-ff5788f3f7b9\" class=\"GINGER_SOFTWARE_mark\"><span id=\"c2a8bbee-cffb-4b16-9299-63fa992f15d7\" class=\"GINGER_SOFTWARE_mark\"><span id=\"7ec2c0df-4245-4557-b9b3-7c5c3d508a17\" class=\"GINGER_SOFTWARE_mark\"><span id=\"6b9c3095-bdec-482a-81ce-8b2d4fb271e5\" class=\"GINGER_SOFTWARE_mark\"><span id=\"266790d0-524f-4252-8204-f0ad57a36aa3\" class=\"GINGER_SOFTWARE_mark\">low cost drying system<\/span><\/span><\/span><\/span><\/span><\/span> for agricultural and marine products.<\/p>\n<p><a href=\"https:\/\/www.ukm.my\/seri\/wp-content\/uploads\/2014\/10\/doublePassCollector.gif\"><img fetchpriority=\"high\" decoding=\"async\" class=\"alignnone  wp-image-673\" src=\"https:\/\/www.ukm.my\/seri\/wp-content\/uploads\/2014\/10\/doublePassCollector.gif\" alt=\"doublePassCollector\" width=\"296\" height=\"223\" \/><\/a>\u00a0\u00a0<a href=\"https:\/\/www.ukm.my\/seri\/wp-content\/uploads\/2014\/10\/V-groveCollector.gif\"><img decoding=\"async\" class=\"alignnone  wp-image-674\" src=\"https:\/\/www.ukm.my\/seri\/wp-content\/uploads\/2014\/10\/V-groveCollector.gif\" alt=\"V-groveCollector\" width=\"312\" height=\"223\" \/><\/a><\/p>\n<p><a href=\"https:\/\/www.ukm.my\/seri\/wp-content\/uploads\/2014\/10\/dehumidification.gif\"><img decoding=\"async\" class=\"alignnone  wp-image-677\" src=\"https:\/\/www.ukm.my\/seri\/wp-content\/uploads\/2014\/10\/dehumidification.gif\" alt=\"dehumidification\" width=\"328\" height=\"240\" \/><\/a><a href=\"https:\/\/www.ukm.my\/seri\/wp-content\/uploads\/2014\/10\/solarDryer.gif\"><img loading=\"lazy\" decoding=\"async\" class=\"alignnone  wp-image-678\" src=\"https:\/\/www.ukm.my\/seri\/wp-content\/uploads\/2014\/10\/solarDryer.gif\" alt=\"solarDryer\" width=\"256\" height=\"238\" \/><\/a><\/p>\n<header>\n<h2 class=\"title\"><strong><span style=\"color: #00ccff;\">2.\u00a0Innovative Solar Hot Water Heater<\/span><\/strong><\/h2>\n<p>The design of the solar heater is of a single unit which include the absorber plate, water tank, heat exchanger, and <span id=\"4474cd3d-a791-4d82-a066-d7a0c36766db\" class=\"GINGER_SOFTWARE_mark\"><span id=\"28d04723-b550-4eab-877b-a83802f82dbe\" class=\"GINGER_SOFTWARE_mark\"><span id=\"ea28417c-6e32-4d59-b41b-d7950a1e2bb4\" class=\"GINGER_SOFTWARE_mark\">optional electric heater<\/span><\/span><\/span>. The system works with a primary <span id=\"f9bebbad-0448-4d84-8cf6-b55d55fa0aae\" class=\"GINGER_SOFTWARE_mark\"><span id=\"f9cfbd33-0963-4475-8dfb-6ca8d1c4006a\" class=\"GINGER_SOFTWARE_mark\"><span id=\"d1ba5740-b5a9-4e9a-ae0c-c8964c5e9287\" class=\"GINGER_SOFTWARE_mark\">pressureless<\/span><\/span><\/span> circuit and a secondary use water circuit. All parts of the body are made out of glass <span id=\"26efe61e-845d-4ff5-ba16-c9d3d1d28b30\" class=\"GINGER_SOFTWARE_mark\"><span id=\"35de1935-64f7-4c59-b6d7-c8fe08153be1\" class=\"GINGER_SOFTWARE_mark\"><span id=\"54be34e4-cae6-4ce5-97ab-ddfab32d75af\" class=\"GINGER_SOFTWARE_mark\"><span id=\"c36f481e-93ed-4051-a113-3a3c4316116b\" class=\"GINGER_SOFTWARE_mark\">fibre<\/span><\/span><\/span><\/span> reinforced polyester (GFRP), which is corrosion proof, and of very long lifetime. The design of the body is a sandwich construction with a core material made from polyurethane foam, which combines stiffness of the structure with light weight and a very good thermal insulation. The absorber plate is a separate part. It is to be inserted into the body without any additional fixing or sealing. The absorber plate will also be made from GFRP using a special resin-composition, which provides a very good thermal conductivity and <span id=\"c5dae835-34f1-41e4-98a1-43af33a5d7bc\" class=\"GINGER_SOFTWARE_mark\"><span id=\"1221e687-3687-421b-8c69-fa42b8d2e2c9\" class=\"GINGER_SOFTWARE_mark\"><span id=\"eab363f9-6d90-4adb-ac78-06cb231ca2bd\" class=\"GINGER_SOFTWARE_mark\">absorptivity<\/span><\/span><\/span>.<\/p>\n<p style=\"text-align: center;\"><a href=\"https:\/\/www.ukm.my\/seri\/wp-content\/uploads\/2014\/10\/storageSystem.gif\"><img loading=\"lazy\" decoding=\"async\" class=\"alignnone  wp-image-679\" src=\"https:\/\/www.ukm.my\/seri\/wp-content\/uploads\/2014\/10\/storageSystem.gif\" alt=\"storageSystem\" width=\"296\" height=\"217\" \/><\/a><\/p>\n<h2 style=\"text-align: left;\"><span style=\"color: #00ccff;\"><strong>3.\u00a0Solar Simulator<\/strong><\/span><\/h2>\n<p>The simulator consists of 45 halogen lamps, each with rated power of 300 W. The lamps are arranged in 10 rows <span id=\"17b0f027-94c5-40e7-978c-2e3cd2e65750\" class=\"GINGER_SOFTWARE_mark\"><span id=\"d55b8aaa-f4fd-43fb-a3a2-632ee85c329c\" class=\"GINGER_SOFTWARE_mark\"><span id=\"8b7d4bc7-ef36-4c3f-b69b-30767b6412c2\" class=\"GINGER_SOFTWARE_mark\">on<\/span><\/span><\/span> 1.7 m x 3.6 m with each row consists of 5 or 4 lamps with center-to-center distance is about 40 cm. Each lamp is equipped with dimmer in order to <span id=\"ea058fc5-aca8-43dd-be0e-b00d0d4df860\" class=\"GINGER_SOFTWARE_mark\"><span id=\"edc78665-9404-470b-9d6f-de81ad737dde\" class=\"GINGER_SOFTWARE_mark\"><span id=\"01c50b38-7ad2-4d86-a97b-a287e3b12b89\" class=\"GINGER_SOFTWARE_mark\">sets<\/span><\/span><\/span> the lamp\u2019s radiation. The source of electricity is supplied from public electricity line, which is installed in the laboratory. This figure shows arrangement an array of 45 lamps. The simulator may produced varieties of radiation values with small errors. The average radiation is 280 W\/m2 to 640 W\/m2 with errors about of 3.16 % to 4.05 %.<\/p>\n<p style=\"text-align: center;\">\u00a0<a href=\"https:\/\/www.ukm.my\/seri\/wp-content\/uploads\/2014\/10\/solarSimulator.gif\"><img loading=\"lazy\" decoding=\"async\" class=\"alignnone  wp-image-680\" src=\"https:\/\/www.ukm.my\/seri\/wp-content\/uploads\/2014\/10\/solarSimulator.gif\" alt=\"solarSimulator\" width=\"301\" height=\"217\" \/><\/a><\/p>\n<h2 style=\"text-align: left;\"><span style=\"color: #00ccff;\"><strong>4.\u00a0Solar Stirling Engine for Water Pumping<\/strong><\/span><\/h2>\n<p>In this project, the focus is set on developing an engine for water pumping facility. Water pumping is a ubiquitous human activity, where the water is pumped for drinking and for domestic, agricultural and <span id=\"220a49ce-e181-43b9-b466-e42a5e567ce9\" class=\"GINGER_SOFTWARE_mark\"><span id=\"60dc5b31-da1e-4095-b9f2-c0c29358933b\" class=\"GINGER_SOFTWARE_mark\"><span id=\"163cdf5d-51a3-42e8-a68a-e51b23880cac\" class=\"GINGER_SOFTWARE_mark\">industry<\/span><\/span><\/span> uses. While the cost of water is directly connected to the required energy for pumping, transmitting and storing water where the common source of energy is electricity, supplying water to remote places and isolated islands could lead to financial concerns to the authority. Since the conventional power grids are not available in such places, the use of motors and generators can solve the problem. However, such units require fuel and frequent maintenance, and with the rise in fuel cost, the pumping operation may not be economical in the long run. If such places received a great deal of solar radiation, an alternative solution is to use the solar energy as the energy source. By using solar-based equipment, the high initial cost of installation is balanced by <span id=\"38d13464-be8e-4a6d-ae77-faf78b692ce7\" class=\"GINGER_SOFTWARE_mark\"><span id=\"fb457cbf-e7ed-4d99-9009-45d7971d2282\" class=\"GINGER_SOFTWARE_mark\"><span id=\"697843a6-5fb0-42a1-b087-e4f9cc9e7649\" class=\"GINGER_SOFTWARE_mark\">the low<\/span><\/span><\/span> <span id=\"29540171-01c1-4382-82fa-3ae7302d43aa\" class=\"GINGER_SOFTWARE_mark\"><span id=\"cc4f976c-b951-4f10-939d-002a1c22a0d9\" class=\"GINGER_SOFTWARE_mark\"><span id=\"b7daf5be-a56d-412a-bd53-6f6582c03672\" class=\"GINGER_SOFTWARE_mark\">operation<\/span><\/span><\/span> and maintenance cost.<\/p>\n<p><a href=\"https:\/\/www.ukm.my\/seri\/wp-content\/uploads\/2014\/10\/solarStirlingEngine.jpg\"><img loading=\"lazy\" decoding=\"async\" class=\"alignnone  wp-image-681\" src=\"https:\/\/www.ukm.my\/seri\/wp-content\/uploads\/2014\/10\/solarStirlingEngine-300x197.jpg\" alt=\"solarStirlingEngine\" width=\"349\" height=\"229\" srcset=\"https:\/\/www.ukm.my\/seri\/wp-content\/uploads\/2014\/10\/solarStirlingEngine-300x197.jpg 300w, https:\/\/www.ukm.my\/seri\/wp-content\/uploads\/2014\/10\/solarStirlingEngine.jpg 434w\" sizes=\"(max-width: 349px) 100vw, 349px\" \/><\/a>\u00a0 \u00a0 \u00a0 \u00a0 \u00a0\u00a0<a href=\"https:\/\/www.ukm.my\/seri\/wp-content\/uploads\/2014\/10\/solarAirConditioningSystem.gif\"><img loading=\"lazy\" decoding=\"async\" class=\"alignnone  wp-image-682\" src=\"https:\/\/www.ukm.my\/seri\/wp-content\/uploads\/2014\/10\/solarAirConditioningSystem.gif\" alt=\"solarAirConditioningSystem\" width=\"184\" height=\"221\" \/><\/a><\/p>\n<p>&nbsp;<\/p>\n<h2><span style=\"color: #00ccff;\"><strong>5.\u00a0Solar Air Conditioning System<\/strong><\/span><\/h2>\n<p><span id=\"3f0a410b-4c37-4283-9a4e-c6e8800c46ff\" class=\"GINGER_SOFTWARE_mark\"><span id=\"b552e7a6-002e-4ff9-9962-4ebd6fcbb8c1\" class=\"GINGER_SOFTWARE_mark\">Absorption air conditioning system<\/span><\/span> differs from vapor compression air conditioning only in the positive pressure gradient stage. In absorption air conditioning system, pressurization is accomplished by first dissolving the refrigerant in a liquid (the absorbent) in the absorber section, then pumping the solution to a high pressure with an ordinary liquid pump. The solar energy is used to heat up the solar collectors. The heat is supplied to the generator to boil off the water vapor (the refrigerant) from a solution of lithium bromide and water. The water vapor is cooled down in the condenser, and then passed to the evaporator where it is again evaporated at low pressure, thereby providing cooling to required space. Meanwhile, the strong solution leaves the generator to the absorber. In the absorber, the strong solution absorbs the water vapor leaving the evaporator. Cooling water from the cooling tower removes the heat by mixing and condensation. Usually an auxiliary energy source is provided, so that the hot water can be supplied to the generator during <span id=\"06783560-c0b6-4828-a031-6c95c8336b45\" class=\"GINGER_SOFTWARE_mark\"><span id=\"dd7afd05-2a7f-4965-9de2-34a7eecccc68\" class=\"GINGER_SOFTWARE_mark\">period<\/span><\/span> of insufficient solar energy.<\/p>\n<p>In the new design, a compact system with integrated solar collector, generator and condenser has been developed. The solution of <span id=\"2020c978-4d9d-4fe4-b2f4-6f2b4c2dff9b\" class=\"GINGER_SOFTWARE_mark\"><span id=\"5e1e76f0-28be-434d-933b-3b5b0dba2181\" class=\"GINGER_SOFTWARE_mark\">LiBr<\/span><\/span> and water forms a thin layer in the solar collector absorber plate. The water vapor is collected under the glass cover <span id=\"a026bb2c-8e7b-4415-916e-83e3b314ef2a\" class=\"GINGER_SOFTWARE_mark\"><span id=\"b272a678-6699-4760-8368-78f9202b18d7\" class=\"GINGER_SOFTWARE_mark\">of<\/span><\/span> the collector and then passes through the evaporator and provides cooling effect. The water from the tank will be sprayed on top of the glass cover and re-circulates. In the absorber, the strong solution absorbs the water vapor leaving the evaporator and the process continues. The COP of the system is 0.30.<\/p>\n<\/header>\n<\/header>\n","protected":false},"excerpt":{"rendered":"<p>1.\u00a0Solar Assisted Drying Systems The technical development of solar drying systems can proceed in two directions. Firstly, simple, low power, short life, and comparatively low<a class=\"ut-readmore\" href=\"https:\/\/www.ukm.my\/seri\/solar-thermal\/\"> &#8230;<\/a><\/p>\n","protected":false},"author":1,"featured_media":0,"parent":0,"menu_order":139,"comment_status":"open","ping_status":"open","template":"","meta":{"footnotes":""},"class_list":["post-167","page","type-page","status-publish","hentry"],"_links":{"self":[{"href":"https:\/\/www.ukm.my\/seri\/wp-json\/wp\/v2\/pages\/167","targetHints":{"allow":["GET"]}}],"collection":[{"href":"https:\/\/www.ukm.my\/seri\/wp-json\/wp\/v2\/pages"}],"about":[{"href":"https:\/\/www.ukm.my\/seri\/wp-json\/wp\/v2\/types\/page"}],"author":[{"embeddable":true,"href":"https:\/\/www.ukm.my\/seri\/wp-json\/wp\/v2\/users\/1"}],"replies":[{"embeddable":true,"href":"https:\/\/www.ukm.my\/seri\/wp-json\/wp\/v2\/comments?post=167"}],"version-history":[{"count":0,"href":"https:\/\/www.ukm.my\/seri\/wp-json\/wp\/v2\/pages\/167\/revisions"}],"wp:attachment":[{"href":"https:\/\/www.ukm.my\/seri\/wp-json\/wp\/v2\/media?parent=167"}],"curies":[{"name":"wp","href":"https:\/\/api.w.org\/{rel}","templated":true}]}}