{"id":979,"date":"2024-10-10T14:52:52","date_gmt":"2024-10-10T18:52:52","guid":{"rendered":"https:\/\/www.aquacure-jeffro-dev.linksdev.com\/?post_type=product-resource&#038;p=979"},"modified":"2024-10-10T14:52:52","modified_gmt":"2024-10-10T18:52:52","slug":"why-and-how-does-the-hyco-2dt-work","status":"publish","type":"product-resource","link":"https:\/\/aquacure-jeffro-dev.linksdev.com\/es\/product-resource\/why-and-how-does-the-hyco-2dt-work\/","title":{"rendered":"\u00bfPor qu\u00e9 y c\u00f3mo funciona HyCO 2DT?"},"content":{"rendered":"<p>Before you consider installing a HyCO 2DT system, I understand that you need to know WHY the HyCO 2DT increases combustion efficiency.<\/p>\n<p>It comes down to something called Thermal Efficiency. \u00a0Thermal Efficiency is the ratio of the potential energy in the diesel compared to the actual work the engine performs.<br \/>\nThe HyCO 2DT increases Thermal Efficiency.<\/p>\n<p>It is a scientifically proven fact is that you CAN get more power out of less fuel IF you increase Thermal Efficiency. \u00a0See my \u2018Double Mileage Guaranteed, Part 1\u2019 (and it\u2019s online Resources) to understand more about combustion efficiency. \u00a0DMG, part 1 is based on gasoline but the vapor principles are generally applicable to diesel, see below for diesel specific information; and see these links (as en example) to understand the high mileage diesel is not only possible BUT BEING WITHHELD from you!<br \/>\n300 MPG Volkswagon NOT ALLOWED in the USA (click) (click) (click) (click)<\/p>\n<p>Given: HydroCarbon fuels (like diesel) can only combust when in vapor form and mixed with oxygen.<\/p>\n<p>Given: Diesel has a high vaporization temperature and a low ignition temperature.<\/p>\n<p>Gasoline requires a spark because it has a low vaporization temperature (between 100\u00b0F and 400\u00b0F) but a high ignition temperature (600\u00b0F+).<br \/>\nDiesel vaporizes at 400+\u00b0F and (once mixed with air)\u00a0ignites as low as 200\u00b0F, so once diesel is vapor and mixed with air, compression temperatures are enough to ignite it.<\/p>\n<p>Given: When liquid diesel is sprayed into high temperature air, some of it \u2018boils\u2019 (vaporizes) and the vapors mix with air.<\/p>\n<p>Given: As soon as there is a rich enough vapor:air mixture to support combustion, due to its low ignition temperature, the initial diesel vapors explode (they don\u2019t need a \u2018spark\u2019).<\/p>\n<p>Given: This initial explosion creates the temperatures to completely vaporize the remaining diesel, which can then mix with air and explode.<br \/>\nThis \u2018secondary\u2019 explosion is mostly wasted, as it occurs after the optimum time to convert heat energy to mechanical energy.<\/p>\n<p>Given: The most efficient conversion of thermal energy to mechanical energy happens in the first 20\u00b0 after top dead center (ATDC).<\/p>\n<p>This is how diesel engines work. \u00a0It is how they\u2019ve worked since the late 1800s and it is still how they work today. \u00a0Adding a computer does NOT change the basic combustion characteristics of the diesel.<\/p>\n<p>There have been improvements in engine design, to help engines \u2018breathe\u2019 and handle higher compression ratios. \u00a0There have been improvements in injector design to help decrease fuel droplet size to increase fuel vaporization rate. \u00a0They have added electronics to peripherally increase fuel efficiency, by coordinating timing and fuel volume.<\/p>\n<p>Note: The dyno technician that tested our HyCO 2DT told us that CAT had spent hundreds of millions of dollars to increase their engine efficiency by 1%. \u00a0He was astounded that we walked in the door, with technology costing less than $5000, that increased any diesel engine\u2019s Thermal Efficiency by over 10%. \u00a0Dyno test of HyCO 2DT in Boise Idaho (click)<\/p>\n<p>The HyCO 2DT simply increases the percentage of fuel that is already vapor when the combustion event happens.<\/p>\n<p>The HyCO 2DT vapors are already homogeneously mixed in the air (but not enough fuel to actually explode), so when the engine\u2019s injector starts spraying fuel into the engine, there are already vapors ready to combust (they just need more vapor to be rich enough to explode).<br \/>\nThe result is a faster, smoother, more efficient combustion that happens at the right TIME to most efficiently convert thermal energy into mechanical energy.<\/p>\n<p>The important thing to know (and it is not taught to most mechanics) is that it is the first-vapor combustion that is most efficiently converted to mechanical energy to power the engine.<br \/>\nAny fuel that burns after 20\u00b0 ATDC is not efficiently powering the engine. \u00a0Yes, it is burning and will result in an exhaust that shows efficient combustion; but efficient combustion is NOT the same as Thermal Efficiency.<br \/>\nThe fuel can be burning efficiently, but if it doesn\u2019t burn at the right TIME, the heat of combustion will not be efficiently converted into engine power (mechanical energy).<\/p>\n<p>So, as we\u2019ve proven with dyno tests, you can create more power using less fuel, IF you combust the fuel completely and at the right TIME.<br \/>\nHaving fuel vapors already in the intake air charge assures that the combustion event will happen faster, smoother and more completely at the right TIME.<\/p>\n<p>The advantages of more Thermal Efficiency don\u2019t just stop at reduced fuel consumption. Exhaust temperatures will drop and pollution emissions will drop dramatically.<\/p>\n<p>Note: This \u2018pre-vapor\u2019 combustion efficiency enhancing effect has also been proven by adding propane or gasoline vapors to the diesel air intake.<\/p>\n<p>Note: There are other proven combustion enhancement technologies too, like water injection (can be done using HyCO 2DT technology) and Brown\u2019s Gas addition (gains of 50% with no loss in power have been demonstrated).<\/p>","protected":false},"featured_media":0,"template":"","meta":{"_acf_changed":false},"product-resource-group":[106],"restricted-resource-tag":[],"class_list":["post-979","product-resource","type-product-resource","status-publish","hentry","product-resource-group-hyco-2dt-resources"],"acf":[],"_links":{"self":[{"href":"https:\/\/aquacure-jeffro-dev.linksdev.com\/es\/wp-json\/wp\/v2\/product-resource\/979","targetHints":{"allow":["GET"]}}],"collection":[{"href":"https:\/\/aquacure-jeffro-dev.linksdev.com\/es\/wp-json\/wp\/v2\/product-resource"}],"about":[{"href":"https:\/\/aquacure-jeffro-dev.linksdev.com\/es\/wp-json\/wp\/v2\/types\/product-resource"}],"wp:attachment":[{"href":"https:\/\/aquacure-jeffro-dev.linksdev.com\/es\/wp-json\/wp\/v2\/media?parent=979"}],"wp:term":[{"taxonomy":"product-resource-group","embeddable":true,"href":"https:\/\/aquacure-jeffro-dev.linksdev.com\/es\/wp-json\/wp\/v2\/product-resource-group?post=979"},{"taxonomy":"restricted-resource-tag","embeddable":true,"href":"https:\/\/aquacure-jeffro-dev.linksdev.com\/es\/wp-json\/wp\/v2\/restricted-resource-tag?post=979"}],"curies":[{"name":"wp","href":"https:\/\/api.w.org\/{rel}","templated":true}]}}