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Re: Better handling?

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Recumbent bicycles
Published
1 March 2005
Last activity
11 March 2005
Original author
Freewheeling
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  1. Ken:

    "Handling" is probably too general a term. If you mean something like
    maneuverability, including hopping obstacles, there's no contest. Hands
    free ridability? Again, very few recumbents can compete. It's also hard to
    argue with Josh Brandt's observation that a recumbent could not maneuver on
    a technical downhill with the facility of a DF, although it'll be faster in
    the "non-technical" sections. The acid test of "handling" is probably
    riding rollers, and as someone who has been on rollers with both a recumbent
    and an upright I can tell you that it's a lot easier on an upright. The
    only area where recumbents may have a handling advantage is on long sweeping
    turns at speed. Perhaps it's because of the lower center of gravity and
    longer wheelbase.

    "Ken Marcet" <[email hidden]> wrote in message
    news:[email hidden]...

    Quoted message said:

    Is it my imagination or do recumbents tend to handle better than your
    standard upright road cycle or mtb? After riding my custom recycled
    recumbent swb with a headtube angle of about 81 degrees more than several
    times now I have noticed that is seems to handle better than my other
    bikes.
    Is this generally true or is it due to my high headtube angle? This is my
    first recumbent that I own for myself, I had the chance to ride a lwb once
    and thought it seemed to handle well too.

    Ken

    --
    More of my mind dribblings: http://mind-dribble.blogspot.com/

  2. Freewheeling said:

    "Handling" is probably too general a term. If you mean something like
    maneuverability, including hopping obstacles, there's no contest. Hands
    free ridability? Again, very few recumbents can compete. It's also hard to
    argue with Josh Brandt's observation that a recumbent could not maneuver on
    a technical downhill with the facility of a DF, although it'll be faster in
    the "non-technical" sections. The acid test of "handling" is probably
    riding rollers, and as someone who has been on rollers with both a recumbent
    and an upright I can tell you that it's a lot easier on an upright. The
    only area where recumbents may have a handling advantage is on long sweeping
    turns at speed. Perhaps it's because of the lower center of gravity and
    longer wheelbase.

    A lower center of gravity and longer wheelbase will cause the bike to
    fall into the turns faster. Think of the example of balancing your
    favorite long-handled garden tool with the heavy part high vs. the
    heavy part low. With the heavy part high the tool is much easier to
    balance. So it goes with bicycles. This works to a low, long
    recumbent's advantage on twisty, technical downhills, making it
    easier to change direction on tight S-curves, and makes it somewhat
    more difficult to maintain straight travel on the broad and wide or
    near the stall speed, about 2 mph on something like a Pursuit or
    Gold Rush. I suspect that riding rollers is more difficult on a
    long, low recumbent because of its relative instability to an upright
    bike. A number of years ago Bill Patterson posted to the HPV list a
    good explanation of the combination of wheelbase, weight
    distribution, COG (center of gravity) height, forward velocity, and
    trail that summarized what I've observed first-hand.

    Jobst Brandt and I ride the same local roads, and I am fairly certain
    I have passed at least 20 times as many "slower upright cyclists"
    descending as he has passed "slower recumbent cyclists" descending.
    This doesn't say much about which kind of bike is faster, and I
    suspect that at the limit it's a wash, depending more on the operator
    than anything else. Technical descending is largely a mental
    exercise limited by one's familiarity with the road, one's comfort
    level when leaning the bike near the slip-out angle, and one's
    willingness to descend at a speed such that one's stopping distance
    exceeds one's vision distance in the corners.

    --
    Bill Bushnell
    http://pobox.com/~bushnell/

  3. "Bill Bushnell" <[email hidden]> wrote in message
    news:[email hidden]...

    Quoted message said:
    Freewheeling said:

    "Handling" is probably too general a term. If you mean something like
    maneuverability, including hopping obstacles, there's no contest. Hands
    free ridability? Again, very few recumbents can compete. It's also hard
    to
    argue with Josh Brandt's observation that a recumbent could not maneuver
    on
    a technical downhill with the facility of a DF, although it'll be faster
    in
    the "non-technical" sections. The acid test of "handling" is probably
    riding rollers, and as someone who has been on rollers with both a
    recumbent
    and an upright I can tell you that it's a lot easier on an upright. The
    only area where recumbents may have a handling advantage is on long
    sweeping
    turns at speed. Perhaps it's because of the lower center of gravity and
    longer wheelbase.

    A lower center of gravity and longer wheelbase will cause the bike to
    fall into the turns faster. Think of the example of balancing your
    favorite long-handled garden tool with the heavy part high vs. the
    heavy part low. With the heavy part high the tool is much easier to
    balance. So it goes with bicycles. This works to a low, long
    recumbent's advantage on twisty, technical downhills, making it
    easier to change direction on tight S-curves, and makes it somewhat
    more difficult to maintain straight travel on the broad and wide or
    near the stall speed, about 2 mph on something like a Pursuit or
    Gold Rush.

    No, I don't buy it. I'm not talking about riding a conventional centered
    position, but reweighting the way pros do on technical descents, which is
    simply impossible on a recumbent. Can't be done. Very few sportif riders
    do this of course, so your comments may have some validity in that sort of
    situation... but under typical road racing conditions against pros? No way.

    Quoted message said:

    I suspect that riding rollers is more difficult on a
    long, low recumbent because of its relative instability to an upright
    bike. A number of years ago Bill Patterson posted to the HPV list a
    good explanation of the combination of wheelbase, weight
    distribution, COG (center of gravity) height, forward velocity, and
    trail that summarized what I've observed first-hand.

    I was involved in that discussion. Take a piece of standard plywood with
    the long edge on the ground, and with some pegs close to the floor to stand
    on while you straddle it, and something iike handlebars attached to the top
    to hold onto. It's not difficult at all to imagine balancing such a divice,
    although you'd have to get the hang of it. Now try attaching a recliner to
    the top edge and see what happens to that balancing capability. Of course
    this is in a static situation... but it's the essential reason that DFs are
    "more maneuverable."

    There are other disadvantages for recumbents, one of which is often not
    being able to actually see the and monitor the position of the wheel
    relative to the edge of the rollers. I considered modifying the rollers so
    that the sound of wheel against roller would provide a sense of whether or
    not you are centered or nearing an edge. Still, it's possible to ride
    rollers on a recumbent. It took me close to a year to learn it, but I could
    ride for an hour at a time without touching a support. The main reason I no
    longer do it is that it causes my downstairs neighbor to go ballistic.
    Apartment living...

    Quoted message said:


    Jobst Brandt and I ride the same local roads, and I am fairly certain
    I have passed at least 20 times as many "slower upright cyclists"
    descending as he has passed "slower recumbent cyclists" descending.
    This doesn't say much about which kind of bike is faster, and I
    suspect that at the limit it's a wash, depending more on the operator
    than anything else. Technical descending is largely a mental
    exercise limited by one's familiarity with the road, one's comfort
    level when leaning the bike near the slip-out angle, and one's
    willingness to descend at a speed such that one's stopping distance
    exceeds one's vision distance in the corners.

    --
    Bill Bushnell
    http://pobox.com/~bushnell/

  4. Freewheeling said:

    No, I don't buy it. I'm not talking about riding a conventional
    centered position, but reweighting the way pros do on technical
    descents, which is simply impossible on a recumbent. Can't be
    done. Very few sportif riders do this of course, so your comments
    may have some validity in that sort of situation... but under
    typical road racing conditions against pros? No way.

    Models with upright seating positions (e.g. Easy Racers) allow one a
    fair degree of freedom to shift weight. I often lean forward when
    descending to put more weight over the front wheel or backward when
    ascending to maintain rear wheel traction. Doing this is necessary
    when one is riding on dirt roads or trails where traction is
    uncertain.

    Pros are pros for a variety of reasons, but outstanding technical
    descending skills is not high on the list. Road races are seldom won
    on a technical descent.

    Quoted message said:

    I was involved in that discussion. Take a piece of standard plywood with
    the long edge on the ground, and with some pegs close to the floor to stand
    on while you straddle it, and something iike handlebars attached to the top
    to hold onto. It's not difficult at all to imagine balancing such a divice,
    although you'd have to get the hang of it. Now try attaching a recliner to
    the top edge and see what happens to that balancing capability. Of course
    this is in a static situation... but it's the essential reason that DFs are
    "more maneuverable."

    I agree that DF's are easier to balance and to maneuver at low speed.

    At higher speeds, the time required to right oneself from a fall (an
    initiation of a steering input) becomes shorter as forward speed
    increases. At some forward speed this time becomes short enough that
    the operator does not find it difficult to maintain stability. On
    most DF bikes, this speed is close to zero. On most LWB recumbents
    this is near walking speed. At typical descending speeds this kind
    of instability is irrelevant.

    I stand by my earlier statement in this thread that technical
    descending speed is dependent mostly on the operator's knowledge of
    the road, skill on the chosen bike, and risk tolerance.

    --
    Bill Bushnell
    http://pobox.com/~bushnell/

  5. "Bill Bushnell" <[email hidden]> wrote in message
    news:[email hidden]...

    Quoted message said:
    Freewheeling said:

    No, I don't buy it. I'm not talking about riding a conventional
    centered position, but reweighting the way pros do on technical
    descents, which is simply impossible on a recumbent. Can't be
    done. Very few sportif riders do this of course, so your comments
    may have some validity in that sort of situation... but under
    typical road racing conditions against pros? No way.

    Models with upright seating positions (e.g. Easy Racers) allow one a
    fair degree of freedom to shift weight. I often lean forward when
    descending to put more weight over the front wheel or backward when
    ascending to maintain rear wheel traction. Doing this is necessary
    when one is riding on dirt roads or trails where traction is
    uncertain.

    Pros are pros for a variety of reasons, but outstanding technical
    descending skills is not high on the list. Road races are seldom won
    on a technical descent.

    Quoted message said:

    I was involved in that discussion. Take a piece of standard plywood with
    the long edge on the ground, and with some pegs close to the floor to
    stand
    on while you straddle it, and something iike handlebars attached to the
    top
    to hold onto. It's not difficult at all to imagine balancing such a
    divice,
    although you'd have to get the hang of it. Now try attaching a recliner
    to
    the top edge and see what happens to that balancing capability. Of
    course
    this is in a static situation... but it's the essential reason that DFs
    are
    "more maneuverable."

    I agree that DF's are easier to balance and to maneuver at low speed.

    At higher speeds, the time required to right oneself from a fall (an
    initiation of a steering input) becomes shorter as forward speed
    increases. At some forward speed this time becomes short enough that
    the operator does not find it difficult to maintain stability. On
    most DF bikes, this speed is close to zero. On most LWB recumbents
    this is near walking speed. At typical descending speeds this kind
    of instability is irrelevant.

    I stand by my earlier statement in this thread that technical
    descending speed is dependent mostly on the operator's knowledge of
    the road, skill on the chosen bike, and risk tolerance.

    Bill:

    And I stand by my observation that those elements of balance and control
    relevant at low speeds are also relevant at higher speeds, though the
    feedback characteristics may be more subtle. I also think there are a lot
    of pro cyclists who would disagree with the implication that descending is
    relatively unimportant, though its clearly outweighed by other factors such
    as climbing ability. Of course technical differences between riders on
    descents are minimized because everyone basically rides the same bike and
    muscular power and endurance are both less critical.

    I'd also say that the idea that a modest increase in speed is all that's
    necessary to bring "handling" on rollers up to match that of a DF is just
    amusing, if you've ever actually tried it. Indeed, one factor that plays
    no role at all on DF bikes was nearly insurmountable on a recumbent. The
    regenerative feedback of the pedaling motion that tends to amplify and
    bounce both bike and rider off the rollers at certain frequencies (about 60
    rpm for me on the V-Rex) takes quite awhile to overcome, since modulation of
    a translated horizontal motion seems to be a great deal trickier than
    modulation of and compensating for the feedback of a vertical motion. (The
    horizontal motion translated into a vertical amplitude that was nearly
    impossible to control.) I eventually overcame the problem by practicing to
    acquire an exceptionally smooth pedalling stroke, and I also began using
    slightly shorter cranks. At some point I simply "broke through" the 60 rpm
    barrier, and above the critical frequency the feedback disappeared.

    But this was just one of a number of rather unexpected emergent
    difficulties, and basically I just concluded that we're probably designed to
    move better, and more effectively, in an upright position. It's not that
    one can't compensate, and ride a recumbent well, and fast. But all else
    being equal maneuverability of a DF is just significantly greater than a
    recumbent. And obviously the more reclined you are the more pronounced the
    difference.

    The primary advantage of recumbents is their lower aerodynamic drag. I'd
    also say that they're more comfortable for longer rides, which is probably
    true for the average rider. But this latter advantage seems to disappear at
    distances much greater than 100 miles. According to some members of this
    list who ride randonneur events on both recumbents and uprights, the
    recumbent is just as demanding, if not more so. (I can't verify this
    myself, so have to rely on their testimony. I'm insufficiently insane to
    ride in randonneur events.)

    Quoted message said:


    --
    Bill Bushnell
    http://pobox.com/~bushnell/

  6. Freewheeling said:

    I'd also say that the idea that a modest increase in speed is all that's
    necessary to bring "handling" on rollers up to match that of a DF is just
    amusing, if you've ever actually tried it. Indeed, one factor that plays
    no role at all on DF bikes was nearly insurmountable on a recumbent. The
    regenerative feedback of the pedaling motion that tends to amplify and
    bounce both bike and rider off the rollers at certain frequencies (about 60
    rpm for me on the V-Rex) takes quite awhile to overcome, since modulation of
    a translated horizontal motion seems to be a great deal trickier than
    modulation of and compensating for the feedback of a vertical motion. (The
    horizontal motion translated into a vertical amplitude that was nearly
    impossible to control.) I eventually overcame the problem by practicing to
    acquire an exceptionally smooth pedalling stroke, and I also began using
    slightly shorter cranks. At some point I simply "broke through" the 60 rpm
    barrier, and above the critical frequency the feedback disappeared.

    I was discussing descending on roads where centrifugal force from a
    change of direction counters the bike's tendency to topple when
    leaning. The longer wheelbase of a LWB recumbent causes a longer
    delay between the initiation of a lean and its correction. The lower
    center of gravity causes the lean to occur more quickly. Both of
    these factors make a low, LWB recumbent less stable at low speeds.
    For an upright bike the stall speed is close to zero. For a Gold
    Rush or similar, it is closer to 2 or 3 mph, depending on the skill
    of the operator. As speed increases the effect of this low-speed
    instability gradually disappears, which is why I believe descending
    skills have less to do with the bike (assuming the bike is high-speed
    stable) and more to do with the operator's state of mind.

    I believe that riding rollers is a low-speed stability issue,
    complicated perhaps by the factors you mention above. There is no
    change of direction when one initiates a "turn" on rollers, so the
    centrifugal force is absent. Once the bike starts to topple there is
    no countering force to right it. Those whom I have observed
    attempting to ride a recumbent on rollers have found doing so
    difficult at best.

    --
    Bill Bushnell
    http://pobox.com/~bushnell/

  7. Bill Bushnell said:

    Freewheeling <[email hidden]> wrote:

    I think you're both not acknowledging that an upright rider can use his
    legs to lean the bike, which applies some steering input. This is far
    less possible on a recumbent, since the legs are parallel to the roll
    axis.

    Have either of you tried to ride an upright on rollers equipped with
    one of the hornless "Easy Seat"-type seats? Or ridden one so equipped
    no-hands? Try it- you'll find out how much of upright's steering and
    balance can be input through the legs.

    Jeff

  8. "Bill Bushnell" <[email hidden]> wrote in message
    news:[email hidden]...

    Quoted message said:
    Freewheeling said:

    I'd also say that the idea that a modest increase in speed is all that's
    necessary to bring "handling" on rollers up to match that of a DF is just
    amusing, if you've ever actually tried it. Indeed, one factor that
    plays
    no role at all on DF bikes was nearly insurmountable on a recumbent. The
    regenerative feedback of the pedaling motion that tends to amplify and
    bounce both bike and rider off the rollers at certain frequencies (about
    60
    rpm for me on the V-Rex) takes quite awhile to overcome, since modulation
    of
    a translated horizontal motion seems to be a great deal trickier than
    modulation of and compensating for the feedback of a vertical motion.
    (The
    horizontal motion translated into a vertical amplitude that was nearly
    impossible to control.) I eventually overcame the problem by practicing
    to
    acquire an exceptionally smooth pedalling stroke, and I also began using
    slightly shorter cranks. At some point I simply "broke through" the 60
    rpm
    barrier, and above the critical frequency the feedback disappeared.

    I was discussing descending on roads where centrifugal force from a
    change of direction counters the bike's tendency to topple when
    leaning. The longer wheelbase of a LWB recumbent causes a longer
    delay between the initiation of a lean and its correction. The lower
    center of gravity causes the lean to occur more quickly. Both of
    these factors make a low, LWB recumbent less stable at low speeds.

    But if I understand the situation correctly, we're are talking here about
    high speeds, rather than low speeds. The issue is therefore more about
    "holding the road" than about low speed stability.

    Quoted message said:

    For an upright bike the stall speed is close to zero. For a Gold
    Rush or similar, it is closer to 2 or 3 mph, depending on the skill
    of the operator. As speed increases the effect of this low-speed
    instability gradually disappears, which is why I believe descending
    skills have less to do with the bike (assuming the bike is high-speed
    stable) and more to do with the operator's state of mind.

    Again, if the issue is "holding the road" then the objective would be to
    counter the centrifugal force without "leaning." Or, in other words, being
    able to "counte-lean." I think Brandt's point (and mine, if I follow him
    correctly) is that this is simply impossible on a recumbent.

    Quoted message said:


    I believe that riding rollers is a low-speed stability issue,
    complicated perhaps by the factors you mention above. There is no
    change of direction when one initiates a "turn" on rollers, so the
    centrifugal force is absent.

    One question: Have you ever ridden rollers? Very complicated situation.
    It's not that tough to get up to speed either on a recumbent or an upright
    (once you break through the feedback/amplitude problem).

    Quoted message said:

    Once the bike starts to topple there is
    no countering force to right it. Those whom I have observed
    attempting to ride a recumbent on rollers have found doing so
    difficult at best.

    You have to be much more vigilant, and correct much more quickly, that's for
    sure. But that's at both low and high speeds.

    Quoted message said:


    --
    Bill Bushnell
    http://pobox.com/~bushnell/

  9. <[email hidden]> wrote in message
    news:[email hidden]...

    Quoted message said:


    Bill Bushnell said:

    Freewheeling <[email hidden]> wrote:

    I think you're both not acknowledging that an upright rider can use his
    legs to lean the bike, which applies some steering input. This is far
    less possible on a recumbent, since the legs are parallel to the roll
    axis.

    Well, that's essentially what I mean by a "counter-lean." But it's not just
    steering, it's a matter of being able to steer without excessive lean so
    that the bike holds the road better in a technical turn at high speed.

    Quoted message said:


    Have either of you tried to ride an upright on rollers equipped with
    one of the hornless "Easy Seat"-type seats? Or ridden one so equipped
    no-hands? Try it- you'll find out how much of upright's steering and
    balance can be input through the legs.

    Good point. By the way, one way to stabilize a recumbent if you start to
    fall is to unclip and put your legs out to the side, and down. But be
    careful not to touch the ground because leg suck is no fun at all.

    Quoted message said:


    Jeff

  10. In article <gI6Yd.34058$QQ3.5636@trnddc02>,

    Freewheeling said:

    But if I understand the situation correctly, we're are talking here about
    high speeds, rather than low speeds. The issue is therefore more about
    "holding the road" than about low speed stability.

    Again, if the issue is "holding the road" then the objective would be to
    counter the centrifugal force without "leaning." Or, in other words, being
    able to "counte-lean." I think Brandt's point (and mine, if I follow him
    correctly) is that this is simply impossible on a recumbent.

    Single track vehicles must lean when cornering otherwise they would
    topple to the outside of the corner. Two-wheeled recumbents lean in
    high speed corners just like upright bikes.

    High speed cornering near the limit of traction is best done without any
    sticking out of the knees or other "body english" (or pedaling, for that
    matter). Brandt mentions this in his article under "Lean the Bicycle,
    the Rider, or Both":

    http://www.sheldonbrown.com/brandt/descending.html

    I'm not sure what your overall point is. Holding the road is a function
    of tire grip and road surface. Last time I checked, tires for
    recumbents were made of the same stuff as road bike tires, differing in
    some cases only by size, and roads are no different where recumbents are
    ridden.

    --
    Bill Bushnell
    http://www.pobox.com/~bushnell/

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