You better heed what this professor says. 
I always think along these lines when someone says "positive displacement". It's not one tube slap full of oil. It's many passages, scenarios, gravity fed areas, etc.A fourth thing that sometwo or three can never try: Positive displacement & the old showerhead...
Not one pressure / one flow throughout the engine, things get branched, can employ little balls and springs, experience temperature differences,.. The knee-jerk reaction of throwing in positive displacement should get treated. Time-to-lubrication is of interest, positive displacement less and less so along the way. Not one positive displacement unit on each point of lubrication, just one more conditioned reflex to revise.
The prof was further from disinformation than we are.
A fourth thing that sometwo or three can never try: Positive displacement & the old showerhead...
Not one pressure / one flow throughout the engine, things get branched, can employ little balls and springs, experience temperature differences,.. The knee-jerk reaction of throwing in positive displacement should get treated. Time-to-lubrication is of interest, positive displacement less and less so along the way. Not one positive displacement unit on each point of lubrication, just one more conditioned reflex to revise.
The prof was further from disinformation than we are.
I always think along these lines when someone says "positive displacement". It's not one tube slap full of oil. It's many passages, scenarios, gravity fed areas, etc.
You do realize that the whole purpose of a PD oil pump is to ensure proper oil volume supply to parts regardless of the oil viscosity - assuming the pump is not in pressure relief.A single output getting divided guarantees nothing regarding individual branches and points of lubrication, cooling, actuation. Like a look at the water meter in the cellar tells nothing about the individual jets of a showerhead or equal supply for all showers in da house.
Neither quick nor equal lubrication are given from the positive displacement aspect. Regulators (mostly) keep pressures at their own location capped without ensuring same pressure at orifices, bearings or actuators; different pressure drops along parallel branches cause unequal distribution between branches, orifices etc. Paths of least resistance.
blingo said:"... different pressure drops along parallel branches cause unequal distribution between branches, orifices etc. Paths of least resistance."
When more viscous oil takes thrice the time to arrive at some place this can be from combined effects, not open reliefs alone.
You do realize that with a PD pump, the outlet oil pressure will increase in order to put the same volume through the oiling system. That is probably the point that most people don't grasp, and therefore form misconceptions about engine oiling systems.I'm not "just focusing on that". Of course we need not talk about times, the Motorcraft professor didn't talk about times when trying to be graphic. Still viscosity is resistance to flow and while he probably need not be informed about PD by us, we need to grasp what positive displacement means and what it doesn't mean.
PD does not mean that flow through a gallery were unimpeded by viscosity. That's not in positive displacement, never was. Oil has choices instead of one pressure / one flow figure or fixed flow ratios throughout an engine. ...things get branched, can employ little balls and springs, experience temperature differences,.. The knee-jerk reaction of throwing in positive displacement should get treated. Time-to-lubrication is of interest, positive displacement less and less so along the way. Not one positive displacement unit on each point of lubrication, just one more conditioned reflex to revise.
Based on his comment about piston oil squirters, I'll have to disagree.The prof was further from disinformation than we are.
If the pumpability of the oil doesn't degrade due to viscosity - ie, the pump intake can ingest and flow the same oil volume regardless of the viscosity, and the oil pump is always fully primed - then the pump will flow the same volume vs RPM. When the discussion starts going down the super cold/super viscous start-up temperature focus, then it's a whole different story.
When the oil is so cold that the pumpability into the pump is compromised, then sure it would take longer to distribute throughout the oling system because the pumping performance of the PD is compromised. But that is not the opeatiing coditions I'm talking about, and not what I'm addressing in the posts above. If blingo is just focusing on that (as a strawman argument), it's way outside of the relm of the discussion at hand in the Motorcraft video in post #1.
With a positive displacement oiling system, if there is a small restricted oil gallery that feeds off a main supply gallery, then the oil volume going into the start of that small, long gallery is the same as the flow going out at the gallery's exit to the atmosphere. What goes in comes out ... that's the whole premise of a PD oiling system. It does not behave like a water system inside your house (which is not PD pump fed).Time-to-lubrication is of interest, positive displacement less and less so along the way. Not one positive displacement unit on each point of lubrication, just one more conditioned reflex to revise.
Yes, I know ... but wanted to clarify that a super cold operating condition is not the focus of the discussion. There seems to be a belief that a different viscosity is going to change the volume of oil to parts in the oiling system that is being supplied by a PD oil pump running at the same RPM. The only time that the oil volume is cut back is in a few rare circumstances - ie, when the oil is not 100% pumpable from the sump due to super cold temperatures, and when the pump is in pressure relief.I am not arguing with you.............
Just stating what could happen..... In a different circumstance... Like running a w rated oil at very, very cold conditions.
That's all...... I was just making that single point.
That's " Pure Ford Magic""Ford magic?" lol!