CATEGORY: COMPRESSORS
PATENT
Industrial
compressor system
European Patent Application EP2423515
Inventors:
Gravdahl, Jan Tommy (Ullins veg 48, 7033, Trondheim, NO)
Uddin, Nur (Broeservegen 186B/L313, 7048, Trondheim, NO)
Application Number:
EP20100173999
Publication Date:
02/29/2012
Assignee:
Siemens Aktiengesellschaft (Wittelsbacherplatz 2, 80333 München, DE)
Abstract:
The
invention relates to an industrial compressor system (10), especially
industrial turbo compressor system (12), with at least one compressor (14)
comprising a pressure section (16) encasing a pressure volume (18) and an anti
surge device (20) having a first anti surge means (22) for counteracting a
surge condition of the compressor (14) by means of a passive mechanism.
It is provided that the anti surge device (20) comprises at least a
second anti surge means (24) comprising an active anti surge mechanism.
Description:
The invention relates to an industrial compressor system, especially an
industrial turbo compressor system, according to the preamble of claim 1 and to
a method for operating such an industrial compressor system according to the
preamble of claim 12.
A compressor is used in many applications to increase the fluid pressure which
passes through the compressor. A compressor flow rate is limited by surge and
stone wall phenomena at low and high mass flow, respectively. A compressor
operating area is bounded by surge line and stone wall in the left and right
sides of a compressor map, respectively. Surge line represents the operating
points where surge is occurring. It becomes the limit of stability of
compressor operation at low mass flow. Crossing the surge line causes the
compressor to enter surge and the turbo compressor becomes unstable. The surge
line is the limit of minimum mass flow in operating the compressor. Stone wall
is the limit of maximum mass flow in operating the compressor. The compressor
is only allowed to operate in between the surge line and stone wall and
therefore in the compressor operating area. However, the high efficiency
operating point of the compressor is laid close to the surge line. Operating at
that point may endanger the compressor crossing the surge line due to any
disturbance. To avoid that the compressor undergoes surge, it is usual practice
in the field of industrial compressors to use an anti surge system to keep the
compressor in the stable area when the compressor is operated near the surge
line. This system operates for example with a control line that is defined on
the right side of the surge line with certain margin. The control line becomes
the minimum mass flow in operating the compressor. The anti surge system is
working when the operating point cross the control line. It works by operating
a recycle device to reduce the pressure in a pressure section of the compressor
and thus increase the flow through the compressor. This will bring an operating
point back to the right side of the control line.
The problem addressed by the invention is that an industrial compressor with an
anti surge device should be provided which could be operated more efficiently
and safe near a surge line, and even cross the surge line.
The problem addressed by the invention is that invention by the features of
claim 1. Favourable embodiments and advantages of the invention result from the
further claims, the drawing, and the description.
The invention is directed to an industrial compressor system, especially an
industrial turbo compressor system, with at least one compressor comprising a
pressure section encasing a pressure volume and an anti surge device having a
first anti surge means for counteracting a surge condition of the compressor by
means of a passive mechanism.
It is provided that the anti surge device comprises at least a second anti
surge means comprising an active anti surge mechanism. "Provided" is
intended to mean specially equipped and/or designed. It is therefore
advantageously possible to provide an industrial compressor with an anti surge
system which is able to allow working near or on a surge line of the compressor
and even to obtain a new surge line which allows working in a more or high
efficient range with a high pressure and an advantageously low mass flow. Thus,
a compressor operating area can be advantageously enlarged. Therefore, costs
for operating the compressor can be reduced.
An "industrial compressor" is intended to mean, in particular, a
compressor, which is used in industrial plants, like an oil refinery, natural
gas production and distribution. Moreover, a "turbo compressor" is
intended to mean, in particular, a rotational machine. A "pressure section"
particularly defines a pipeline system which is arranged opponent from a
suction section located upstream of the compressor and/or has a higher pressure
as a pressure of the suction section and/or is located downstream of the
compressor and/or in, in particular, embodied as a plenum of the compressor. An
"anti surge device" particularly depicts a device by means of which a
surge condition of the compressor can be avoided and/or which stabilizes a
operating point of the compressor in a compressor operating area located
between a surge line and a stone wall of the compressor and/or stabilizes the
operating point on a right hand side of the surge line. Surge is a phenomenon
resulting from the inability of a compressor impeller to produce the amount of
required energy that the process system requires. The energy is produced by the
action of the vanes and flow between blade and vanes. The inability brings the
compressor operation to unstable condition. It can be a result of flow
separation, caused by low gas velocity, anywhere in a compressor stage (inlet
guide vane, impeller suction, impeller mid section, impeller discharge or
diffuser). Some facts concerning surge are that it is a high speed phenomena,
flow reversal can occur in less than 150 milliseconds, pressure rapidly fluctuates,
noise is generated, temperature increase can be very rapid and mechanical
damage can occur.
Moreover, the term "counteract" is intended to mean, in particular,
minimize and/or preferably suppress. The phrase "by means of a passive
mechanism" is intended to mean, in particular, that a surge line and/or a
course of the surge line, respectively, of the compressor is unaffected by the
action of the first anti surge means. Thus the first anti surge means is a
passive anti surge means. Furthermore, an "active mechanism" displays
a mechanism where the compressor operating area is enlarged and/or a course of
the surge line is shifted, in particular to a lower mass flow and/or in a
compressor map more to the left. Thus, an active feedback to stabilize a
compression system by modifying its dynamics is utilized. Due to the
second/active anti surge means the area on the left side of the surge line in
the compressor map can be stabilized in a certain range to provide a new surge
line. A new surge phenomenon will occur in the lower mass flow than the
original surge. Hence, the second anti surge means is an active anti surge
means. The active mechanism can work by controlling of the pressure of the
pressure section by actuating an exit throttle of the pressure section and/or
by controlling a couple valve located close to an outlet of the compressor.
Alternatively, the active mechanism can be intended to control the mass flow of
the compressor by injecting small volumes of extra fluid into the compressor or
an impeller, respectively, and/or the mechanism can influence surge by
controlling the torque of the electrical motor driving the compressor.
Moreover, it is possible to control a volume of the compressor or the volume of
the pressure section or the plenum, respectively, by means of a movable plenum
wall. Generally every other mechanism that is feasible to a person skilled in
the art could be intended.
The second anti surge means or the active anti surge means, respectively,
preferably comprises at least one sensor, which detects a condition and/or at
least a controller, which evaluates the condition and/or at least an actuator,
which adapts the condition according to a signal generated dependent to the
evaluated condition. The sensor detects advantageously a compressor duct mass
flow, a compressor face total mass flow, a compressor face static pressure, a
pressure in the pressure section (plenum), a suction temperature, a recooling
temperature and/or another parameter that is suitable to a person skilled in the
art. Furthermore, an "actuator" in this context is intended to mean,
in particular, a valve, a throttle, an injected gas flow, a wall, a temperature
controller and/or another device that is practical for a persons skilled in the
art. Preferably, the passive and the active anti surge means provide a control
system for the industrial compressor.
It is a further object of the present invention to provide that the second anti
surge means has at least one volume activator. A "volume activator"
is intended to mean, in particular, a device which is an actuator and/or which
changes through its own action the volume of the pressure section or the
plenum, respectively. It is favoured that the volume of the pressure section is
increased by the volume activator, which results advantageously in a reduction
of the pressure of the pressure section or the plenum and thus will take the
compressor back to a stable operating condition. Additionally an enlargement of
the compressor operating area is achieved. However, this enlargement is
depended e.g. of a volume capacity of the volume activator.
Advantageously, the volume activator has at least a moveable means for varying
the pressure volume of the pressure section. The moveable means in preferably
embodied as a moveable wall. Due to the moveable means it is constructively
easy to adjust a volume of the pressure section.
Moreover, it is provided that the volume activator is arranged outside of the
pressure section at a duct of the pressure section. The phrase "outside of
the pressure section" is intended to mean, in particular, that it is not
located in the volume of the pressure section and/or is not a structure or not
a part of a structure, like a wall of the pressure section/the plenum, of the
pressure section. By means of this arrangement the volume activator can be
easily connected with the pressure section and/or an action of the volume
activator can easily influence or adjust the volume of the pressure section.
Advantageously, the volume activator forms the dead end of the duct of the
pressure section, wherein the volume activator terminates advantageously the
duct of the pressure section.
Furthermore, it is advantageous when the volume activator possesses a piston as
the moveable means. Thus, the moveable means can be manufactured with minimum
costs and weight.
Moreover, it could be designed robustly and reliable. Favourably, the movable
means possesses a surface facing the duct of the pressure section, whereby a
good and efficient working surface could be provided.
In a further embodiment of the invention, the volume activator possesses a
barrel, by which the piston can be guided effortlessly. Advantageously, the
movable means is arranged inside a barrel of the volume activator, whereby the
moveable means or the piston, respectively, can be arranged and operated
loss-proof.
Additionally, it is a further object of the present invention that a volume,
which is encased by the surface of the moveable means and a barrel of the
volume activator, is at least 10 % of the pressure volume of the pressure
section. In other words, it is intended that the volume activator could enlarge
a volume of the pressure section at least up to 10 % and/or that the volume
activator has a storage capacity of a volume which is at least about 10 % of
the volume of the pressure section. It is generally possible, that the volume,
which is encased by the surface of the moveable means and a barrel of the
volume activator, has a different percentage of the pressure volume of the
pressure section than 10 %. A person skilled in the art would select a suitable
value in accordance to the properties and dimension of the used compressor.
This results in the enlargement of the pressure volume at least up to 10 % and
therefore in an advantageous enlargement of the compressor operating area.
Safe performance of the active anti surge means or reliable avoidance of surge
by using the piston is limited by the storage capacity or the volume,
respectively, of the volume activator. Thus it is furthermore provided that the
first anti surge means is embodied as a security means to ensure a safe
operation of the compressor in case of failure of the second anti surge means.
The term "failure" is intended to mean particularly, a situation in
which the active anti surge means is destroyed and/or is defect and/or in which
the capacity of the volume actuator is insufficient. With the usage of the
first anti surge means as security feature an already existing structure could
easily accomplish a second function, wherein manufacturing costs and components
can be reduced. Moreover, the security means could be realized in a space
saving manner.
In addition, it is advantageous when the security means has a switch. In this
case a "switch" defines a means which is intended to change a mode of
the compressor e.g. a mode operating solemnly with the active anti surge means
to a mode operating with both anti surge means and/or to change an arrangement
of parts of the security means relative to one another. By means of the switch the
performance of the security means could be effortlessly activated.
Preferably the switch is activated when at least one detected parameter exceeds
a predetermined value and the moveable means is at rest. In case of surge, the
volume activator is activated and increases due to its movement the pressure
volume of the pressure section. The activation is triggered by a signal from
the controller, wherein the controller had evaluated a sensor detected
parameter or parameters referring to the current work point or work condition,
respectively, of the compressor. The controller compares the detected parameter
value(s) with a threshold or with a predetermined value representing a
dangerous condition of the compressor. The predetermined value could e.g. be
represented by parameter pairs belonging to the surge line in dependence of the
pressure and the mass flow and/or by any other condition or parameter which is
feasible to a person skilled in the art. When the controller detects, that at
least one detected parameter exceeds the predetermined value and therefore that
the working condition of the compressor is at risk to go into surge and/or that
the operating point is near or on or even left of the surge line, it triggers
the volume activator. Thus, also a command signal for the volume activator
exceeds a predetermined value, namely 0. When the compressor is working in the
mode with solemnly the active anti surge means, as described above, this has
the first priority to suppress the surge phenomenon. However, if the piston is
at its maximum stroke and/or is unmoving or at rest and therefore the volume
activator is out of its work area and the detected parameter still exceeds the
predetermined value, the security means takes effect. By means of the inventive
embodiment a precise adjustment could be archived and it is ensured that the
compressor works at all times both safely and highly efficient.
Alternatively, the security means could be embodied as a second active anti
surge means, which is intended to function in parallel to the first active anti
surge means. This second active anti surge means could be designed after any
active mechanism, which is feasible to a person skilled in the art.
Advantageously, the first anti surge means is embodied as a recycle valve configuration,
wherein the security means or the first anti surge means, respectively, could
be constructed constructively easy after an already used and well-proved idea.
A valve of the recycle valve configuration is preferably controlled by the
switch of the security means. Therefore, an activation of the security means is
performed easily and trouble-free.
An effective and easily constructed surge device can be achieved when the first
anti surge means possesses a recycle line. A "recycle line" is intended
to mean, in particular, a passage which connects at least two areas which have
at least one concordant parameter, such as the same pressure, the same volume,
a same temperature and/or preferably the same composition of a fluid or a gas,
respectively. Preferably, the recycle line connects at least two volumes, which
have the same composition of a fluid or a gas. Moreover, it is preferable when
the recycle line connects a region located downstream of the compressor with a
region located upstream of the compressor. Thus, a surplus fluid/gas volume
accumulated downstream of the compressor could be used an additional time.
Furthermore the recycle line may be connected to the valve.
Particularly advantageously, the first and/or the second anti surge means are
controlled by means of a control law, by which the turbo compressor could be
controlled easily and reliably. A person skilled in the art will chose the type
of control law single handed according to the properties of the used compressor
and its components.
The invention is directed to a method for operating a compressor system,
especially a turbo compressor system, with a compressor comprising a pressure
section encasing a pressure volume and an anti surge device having a first anti
surge means for counteract a surge condition of the compressor by means of a
passive mechanism.
It is provided that the anti surge device comprises at least a second anti
surge means working with an active anti surge mechanism and wherein the second
anti surge means has at least one volume activator with a moveable means that
varies the pressure volume of the pressure section. Thus, with this method an
industrial compressor or a turbo compressor, respectively, could be operated
with an anti surge device which allows a working condition of the compressor
near or on a surge line of the latter and even to obtain a new surge line which
allows working in a more or high efficient range with a high pressure and an
advantageously low mass flow. Therefore, a compressor operating area can be
advantageously enlarged, which additionally results in a reduction of costs for
operating the compressor. Moreover, due to the increase of the volume of the
pressure section by the volume activator, the pressure of the pressure section
or the plenum could be advantageously decreased and hence will stabilize
compressor.
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