quote:
Originally posted by gedcruise:
Complex systems that are well engineered and built are quite reliable. (...snip...)Functional improvements, like FI over carbs, are to be encouraged. Hybrids don't look like the future to me. If you want economy, keep the small lo-cal gas engine and ditch the heavy battery pack and electric motor.
Ged:
I'm sorry if this sounds harsh, but you're both self-contradictory, and incorrect on your facts.
First (in no particular order), it is false that "
The only energy advantage the current hybrids offer is regen braking. They also regenerate while decelerating and descending inclines. In addition, any time that the ICE is running "steady state" and the ECU determines that it's efficient to do so, the "extra" current being generated is saved in the traction battery. All light accelerations (I’d estimate 40% throttle or less) are gas-only, unboosted by the MGs, with significant charge going to the array. And every single time
you lift your foot off the gas, you’re needlessly throwing away energy that
I get to use over the next time I step on the “gas”. It’s even worse if you go for the brakes. And you totally overlook the smaller secondary benefits, such as how it’s starting to look like Prius front brake pads will typically last in excess of 150-200k miles (as they see so little use, most “braking” is actually regen). They also perform other neat tricks like shutting the gas engine off when it's not needed (such as at stoplights, or in light cruising). I've only owned mine for ~six weeks, and I'm already disturbed by how my wife's car actually
idles at a standstill. . .
Second, you confuse the "heavy battery pack" of the true electric vehicle with what you find in a hybrid. Since the true function of they hybrid's array is not "bulk" storage of electrical energy, as is the case in an EV, but rather, it's to "buffer" the energy you're presently wasting, the array can be relatively small and light. In a Prius-II, it's the size of a medium suitcase. Heavy motors??? The motor-generators (MGs) are integral with the "transmission", which is an ingenious planetary gear CVT (NOT the complex cone and belt thing you see in all other CVTs) that seamless blends the power inputs from the gas and electric sources. It has about 1/10th the moving parts of a modern automatic, and the whole thing weighs less than an AT for a comparable size car. So even with a battery present, the car still achieves 45-50 mpg real world (for me anyway). Whatever the weight penalties are, they're not hurting too bad.
Third, I want economy AND the utility of a mid-sized car. Why should I have to accept a tiny car with far less utility to get 45-50 mpg? As a result of its odd proportions and illusory shape, the Prius-II is routinely "mis-sized" by pontificators who've never been in one. In dimension and volume, this car is far closer to a Camry than it is a Corolla (roughly 90% of the interior volume of a Camry, for example). The cargo area holds 15.5 cubic feet, slightly more than the trunk of a Camry or Avalon. Despite the big old traction battery being stuffed down beneath there too.
Fourth, you contradict yourself by noting that, "
Complex systems that are well engineered and built are quite reliable. (...snip...) Functional improvements, like FI over carbs, are to be encouraged"; and then turning right around and pushing just those characteristics in a hybrid as
reasons to reject the hybrid car. The "Hybrid Synergy Drive" as the Toyota marketers like to call it, is arguably as much of a quantum functional leap over normal gas-only cars as FI was over the carb.
Finally, you turn again and get enthusiastic for “
BMW's idea to use exhaust gas heat to generate steam to provide some drive to the vehicle? The only energy advantage the current hybrids offer is regen braking. How about a system that would capture some of the waste heat energy all of the time? OK, well, Toyota right now, today, has a car you can buy for ~$23000 (if you can take a “stripper”) that is already partway there (the Prius-II recaptures waste heat by storing hot coolant each time you shut down, making the next start and warmup much shorter and more efficient). Where is that BMW system? How much will cars with it cost when it gets here? How much will the super high temp durable systems weigh? I’m throwing the “double standard” flag here. No thanks if it’s from Toyota, but a cool idea if on a BMW. Proof’s in the “puddin,” isn’t it? BMW is
talking about how it’s looking at such a system. Toyota can sell you a Prius, HSD Camry, HSD Highlander, RX-450, or GS-450
today.