EP2500491A1 - Passenger protection system - Google Patents

Passenger protection system Download PDF

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Publication number
EP2500491A1
EP2500491A1 EP12155734A EP12155734A EP2500491A1 EP 2500491 A1 EP2500491 A1 EP 2500491A1 EP 12155734 A EP12155734 A EP 12155734A EP 12155734 A EP12155734 A EP 12155734A EP 2500491 A1 EP2500491 A1 EP 2500491A1
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EP
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Prior art keywords
air
air duct
protection system
personal protection
lock
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Granted
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EP12155734A
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German (de)
French (fr)
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EP2500491B1 (en
Inventor
Dietmar Diercks
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Draeger Safety AG and Co KGaA
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Draeger Safety AG and Co KGaA
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Priority to PL12155734T priority Critical patent/PL2500491T3/en
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    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04HBUILDINGS OR LIKE STRUCTURES FOR PARTICULAR PURPOSES; SWIMMING OR SPLASH BATHS OR POOLS; MASTS; FENCING; TENTS OR CANOPIES, IN GENERAL
    • E04H1/00Buildings or groups of buildings for dwelling or office purposes; General layout, e.g. modular co-ordination or staggered storeys
    • E04H1/12Small buildings or other erections for limited occupation, erected in the open air or arranged in buildings, e.g. kiosks, waiting shelters for bus stops or for filling stations, roofs for railway platforms, watchmen's huts or dressing cubicles
    • E04H1/1277Shelters for decontamination
    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04HBUILDINGS OR LIKE STRUCTURES FOR PARTICULAR PURPOSES; SWIMMING OR SPLASH BATHS OR POOLS; MASTS; FENCING; TENTS OR CANOPIES, IN GENERAL
    • E04H9/00Buildings, groups of buildings or shelters adapted to withstand or provide protection against abnormal external influences, e.g. war-like action, earthquake or extreme climate
    • E04H9/04Buildings, groups of buildings or shelters adapted to withstand or provide protection against abnormal external influences, e.g. war-like action, earthquake or extreme climate against air-raid or other war-like actions
    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04HBUILDINGS OR LIKE STRUCTURES FOR PARTICULAR PURPOSES; SWIMMING OR SPLASH BATHS OR POOLS; MASTS; FENCING; TENTS OR CANOPIES, IN GENERAL
    • E04H9/00Buildings, groups of buildings or shelters adapted to withstand or provide protection against abnormal external influences, e.g. war-like action, earthquake or extreme climate
    • E04H9/16Buildings, groups of buildings or shelters adapted to withstand or provide protection against abnormal external influences, e.g. war-like action, earthquake or extreme climate against adverse conditions, e.g. extreme climate, pests
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F3/00Air-conditioning systems in which conditioned primary air is supplied from one or more central stations to distributing units in the rooms or spaces where it may receive secondary treatment; Apparatus specially designed for such systems
    • F24F3/12Air-conditioning systems in which conditioned primary air is supplied from one or more central stations to distributing units in the rooms or spaces where it may receive secondary treatment; Apparatus specially designed for such systems characterised by the treatment of the air otherwise than by heating and cooling
    • F24F3/16Air-conditioning systems in which conditioned primary air is supplied from one or more central stations to distributing units in the rooms or spaces where it may receive secondary treatment; Apparatus specially designed for such systems characterised by the treatment of the air otherwise than by heating and cooling by purification, e.g. by filtering; by sterilisation; by ozonisation
    • F24F3/167Clean rooms, i.e. enclosed spaces in which a uniform flow of filtered air is distributed
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F7/00Ventilation
    • F24F7/04Ventilation with ducting systems, e.g. by double walls; with natural circulation
    • F24F7/06Ventilation with ducting systems, e.g. by double walls; with natural circulation with forced air circulation, e.g. by fan positioning of a ventilator in or against a conduit
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F9/00Use of air currents for screening, e.g. air curtains
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F13/00Details common to, or for air-conditioning, air-humidification, ventilation or use of air currents for screening
    • F24F13/24Means for preventing or suppressing noise
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F9/00Use of air currents for screening, e.g. air curtains
    • F24F2009/005Use of air currents for screening, e.g. air curtains combined with a door
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F2221/00Details or features not otherwise provided for
    • F24F2221/44Protection from terrorism or theft

Definitions

  • the invention relates to a personal protection system with an entrance lock and a lounge.
  • a personal protection system with an entrance lock and a lounge is from the DE 35 21 884 C1 known.
  • the known personal protection system also includes a ventilation system including a filter system.
  • Known personal protection systems are designed in such a way that persons entering the entry lock must remain there until potential contamination has been reduced to a permissible level.
  • an air conveyor system is provided, which flushes through the entrance lock and directs the gas through a noxious gas filter.
  • the degree of contamination can be determined by measuring the concentration of harmful gas in the entrance lock. Only then, if the contamination has been reduced to an acceptable level, the interior may be entered.
  • the entrance lock must be as small as possible, which means that only a few people can be in the entrance lock. This lock principle is not suitable for the disaster with highly toxic gases, as people who want to enter the entrance lock, carry an escape hood, which provides protection only for a very limited time.
  • the invention has for its object to improve a personal protection system in such a way that people can reach the lounge in a short time.
  • the personal protection system according to the invention has in front of the entrance door of the entrance lock an air curtain, which reduces the pollutant entry upon entering the entrance lock.
  • the personal contaminants are reduced to a calculated level during the passage through a high-performance filter device in the lock area. Persons arrive in the recreation room without delay and have to keep respiratory protection there as long as entrained contaminations are indicated. If required, respiratory masks can be put on, which can be supplied for a long period of time from self-sufficient breathing air accumulators.
  • the lounge When all persons have entered the room, the lounge is flushed with breathing air over a high rate of air exchange. After a few minutes, the pollutant concentrations are reduced to an acceptable level, and the respirators can be discontinued.
  • the air in the room is monitored by a gas detector and warned visually and acoustically when exceeding impermissible values. It is not only cleaned by means of a circulating air system and a noxious gas filter, the room air, but it is simultaneously passed by means of an air purifier from air storage fresh air into the interior of the common room to support the flushing by the recirculation system.
  • the respiratory masks which are carried by the people in the lounge, supplied with breathing air.
  • the air curtain system arranged in front of the entrance door of the entrance lock is designed with a closed air screen. This significantly reduces the thermal effect when opening the front door, which is caused by different temperatures. Light wind effects are reduced and slowed down by the invisible air curtain. Hereby the pollutant entry into the entrance lock is strongly reduced. The entry of pollutants occurs when the front door is opened due to thermal influences and contaminations introduced via persons.
  • the amount of pollutants introduced by the persons per time can be determined by a limit value analysis. It is assumed that each person introduces a volume of air corresponding to the body volume into the entrance lock. When thermal effects are eliminated by the air curtain, it can be assumed that only contaminants in the entrance lock have to be removed.
  • the filter system will be designed so that the pollutant concentration in the entrance lock is limited to a predetermined value.
  • the filter unit When a concentration of 400 ppm is reached in the inlet lock, the filter unit removes 4 L / min of harmful gas from the air. This corresponds to the assumed pollutant input.
  • the filter performance is set higher in the actual layout of the system.
  • the permissible room air concentration is 5 ppm.
  • the time can be significantly reduced.
  • the air purge and gas filtration can be used together in parallel and the time for cleaning the common room would be about 12 minutes.
  • This time is used as a minimum time for the design of the breathing system.
  • the actual breathing air capacity is designed so that in case of ineffective restraint systems in the shelter the higher concentrations of pollutants can be cleaned and the persons during the longer cleaning time have the appropriate air available for the mask supply.
  • FIG. 1 schematically illustrates the structure of a personal protection system 1, which has an air curtain 2 in front of an entrance door 3 to an entrance lock 4 and connected to the entrance lock 4 lounge 5. Between the entrance lock 4 and the recreation room 5 there is a passage door 6.
  • the air curtain 2 consists of a first supply air duct 7 with an outlet opening 8, a first return air duct 9 with return air openings 10 and a first blower 11.
  • the blower 11 is connected via a first gas channel 12 to the first supply air duct 7 and the first return air duct 9 and conveys ambient air from the first return air duct 9 to the first supply air duct 7.
  • the air curtain 2 can also be designed in an open design without return air duct.
  • a second blower 18 arranged in the second gas duct 17 conveys the interior air via a first harmful gas filter 19 from the second return air duct 15 to the second supply air duct 13.
  • the second blower duct via the second return air duct 15 aspirated indoor air is purified in the first harmful gas filter 19 and passes as decontaminated air via the second supply air duct 13 back into the interior.
  • the common room 5 has a third supply air duct 20 with outlet openings 21, a third return air channel 22 with inlet openings 23 and a third gas channel 24 with a third blower 26 and a second harmful gas filter 25 for conveying the interior air from the third return air duct 22 to the third supply air duct 20.
  • a breathing air line 27 for non-illustrated respirators.
  • the breathing air line is connected via an air switch panel 28 with a breathing air reservoir 29.
  • a supply line 30 extends from the air switch panel 28 via a silencer 31 to the third supply air duct 20.
  • the third supply air duct 20 is thus supplied both via the third blower 26 and via the breathing air reservoir 29 with gas, so that residual contamination both via the air circulation system and on the Air from the breathing air reservoir 29 are flushed out of the lounge 5. Excess gas is discharged via a spring-loaded pressure relief valve 32 from the common room 5.
  • the pressure relief valve 32 is set so that in the recreation room 5 always such an interior pressure prevails, which prevents the ingress of noxious gases from the environment.
  • FIG. 1 illustrates a first alternative personal protection system 40, in which, compared with the personal protection system 1 according to FIG. 1 , a common harmful gas filter 41 is used for filtering the indoor air in the entrance lock 4 and in the recreation room 5.
  • a switching valve 42 in the second gas channel 17 between the second fan 18 and the second supply air duct 13 and the muffler 31 is provided.
  • the second blower 18 is connected to the muffler 31 and the conveyed air passes through the muffler 31 in the third supply air duct 20.
  • the third return air duct 22 is connected via a fourth gas passage 44 with a discharge valve 43 designed as a pressure relief valve, which opens into the input lock 4.
  • the first alternative personal protection system 40 is characterized by a particularly rapid infiltration of persons into the recreation room 5. The persons pass through the entrance lock 4 and enter the common room 5. The switching valve 42 is initially in the first switching position and then in the second switching position transferred. The air circulation then takes place via the silencer 31 into the third supply air duct 20 and from the third return air duct 22, the fourth gas duct 44 and the outflow valve 43 into the input lock 4, where the room air is sucked in via the second return air duct 15. Air purge within the lounge 5 reduces entrained contaminants to a specified limit. Compared to the personal protection system 1 after the FIG. 1 In the first alternative personal protection system 40, a filter system is saved.
  • FIG. 3 shows a second alternative personal protection system 50, in which compared to the first alternative personal protection system 40 after FIG. 2 the air entering the common room 5 via the third supply air duct 20 is not collected in a return air duct, but is discharged directly into the intake lock 4 via the fourth gas duct 44 and the outflow valve 43.
  • This air duct can be selected if a targeted air return via the third return air duct 22 is required for air purification. This also increases the usable area in the lounge 5, since no return air duct must be installed.

Abstract

The personnel protection system has an entrance gate (4) connected with lounge (5), and air curtain device (2) at front door (3). A forced-air system for the entrance gate and the lounge enclosed interior space has air conveying system (18) and noxious gas filter (19), an air purge unit (20,28,30,31) from air storage section (29) for lounge, and gas supply channel (27) for respiratory protection products.

Description

Die Erfindung betrifft eine Personenschutzsystem mit einer Eingangsschleuse und einem Aufenthaltsraum.The invention relates to a personal protection system with an entrance lock and a lounge.

Eine Personenschutzsystem mit einer Eingangsschleuse und einem Aufenthaltsraum ist aus der DE 35 21 884 C1 bekannt. Die bekannte Personenschutzanlage umfasst auch ein Be- und Entlüftungssystem einschließlich einer Filteranlage.A personal protection system with an entrance lock and a lounge is from the DE 35 21 884 C1 known. The known personal protection system also includes a ventilation system including a filter system.

Bekannte Personenschutzsysteme sind so konzipiert, dass Personen, die in die Eingangsschleuse eintreten, in dieser solange verweilen müssen, bis mögliche Kontaminationen auf ein zulässiges Maß reduziert worden sind. Zur Dekontamination ist eine Luftförderanlage vorgesehen, die die Eingangsschleuse durchspült und das Gas über ein Schadgasfilter leitet. Durch Messung der Schadgaskonzentration in der Eingangsschleuse lässt sich der Kontaminationsgrad ermitteln. Erst dann, wenn die Kontaminationen auf ein zulässiges Maß reduziert worden sind, darf der Innenraum betreten werden. Für eine schnelle Dekontamination muss die Eingangsschleuse möglicht klein sein, was bedeutet, dass sich nur wenige Personen in der Eingangsschleuse aufhalten können. Dieses Schleusenprinzip ist für den Katastrophenfall mit hochtoxischen Gasen nicht geeignet, da Personen, die die Eingangsschleuse betreten wollen, eine Fluchthaube tragen, die nur für eine sehr begrenzte Zeit Schutz bietet. Das bedeutet, dass Personen aufgrund der Zeitbegrenzung nicht an der Außentür der Anlage auf die Einschleusung warten können. Die Nutzungsdauer einer Fluchthaube ist häufig auf einen Zeitraum von 30 Minuten beschränkt. Im Katastrophenfall ist damit zu rechnen, dass eine größere Anzahl von Personen gleichzeitig den Aufenthaltsraum betreten will.Known personal protection systems are designed in such a way that persons entering the entry lock must remain there until potential contamination has been reduced to a permissible level. For decontamination, an air conveyor system is provided, which flushes through the entrance lock and directs the gas through a noxious gas filter. The degree of contamination can be determined by measuring the concentration of harmful gas in the entrance lock. Only then, if the contamination has been reduced to an acceptable level, the interior may be entered. For fast decontamination, the entrance lock must be as small as possible, which means that only a few people can be in the entrance lock. This lock principle is not suitable for the disaster with highly toxic gases, as people who want to enter the entrance lock, carry an escape hood, which provides protection only for a very limited time. This means that due to the time limit, people can not wait for the infiltration at the outside door of the plant. The service life of an escape hood is often limited to a period of 30 minutes. In the event of a disaster it is to be expected that a larger number of people will enter the recreation room at the same time.

Der Erfindung liegt die Aufgabe zugrunde, ein Personenschutzsystem in der Weise zu verbessern, dass Personen in kurzer Zeit den Aufenthaltsraum erreichen können.The invention has for its object to improve a personal protection system in such a way that people can reach the lounge in a short time.

Die Lösung der Aufgabe ergibt sich aus den Merkmalen des Patentanspruchs 1.The solution of the problem arises from the features of claim 1.

Vorteilhafte Ausgestaltungen der erfindungsgemäßen Vorrichtung sind in den Unteransprüchen angegeben.Advantageous embodiments of the device according to the invention are specified in the subclaims.

Das erfindungsgemäße Personenschutzsystem besitzt vor der Eingangstür der Eingangsschleuse ein Luftschleiergerät, welches den Schadstoffeintrag beim Betreten der Eingangsschleuse reduziert. Die personenweise eingetragenen Kontaminationen werden im Schleusensbereich während des Durchlaufens über ein Hochleistungs-Filtergerät auf ein kalkuliertes Maß reduziert. Personen gelangen ohne Verzögerung in den Aufenthaltsraum und müssen dort noch so lange den Atemschutz aufbehalten, wie eingeschleppte Kontaminationen angezeigt sind. Bei Bedarf können Atemschutzmasken aufgesetzt werden, welche für einen langen Zeitraum aus autarken Atemluftspeichern versorgt werden können.The personal protection system according to the invention has in front of the entrance door of the entrance lock an air curtain, which reduces the pollutant entry upon entering the entrance lock. The personal contaminants are reduced to a calculated level during the passage through a high-performance filter device in the lock area. Persons arrive in the recreation room without delay and have to keep respiratory protection there as long as entrained contaminations are indicated. If required, respiratory masks can be put on, which can be supplied for a long period of time from self-sufficient breathing air accumulators.

Wenn alle Personen den Raum betreten haben, wird der Aufenthaltsraum über eine hohe Luftwechselrate mit Atemluft gespült. Nach einigen Minuten sind die Schadstoffkonzentrationen auf ein zulässiges Maß reduziert, und die Atemschutzmasken können abgesetzt werden. Die Raumluft wird über ein Gasmessgerät überwacht und es wird beim Überschreiten unzulässiger Werte optisch und akustisch gewarnt. Es wird dabei nicht nur mittels eines Umluftsystems und einem Schadgasfilter die Raumluft gereinigt, sondern es wird gleichzeitig mittels einer Luftspüleinrichtung aus Luftspeichern frische Atemluft in den Innenraum des Aufenthaltsraumes geleitet, um die Spülung durch das Umluftsystem zu unterstützen.When all persons have entered the room, the lounge is flushed with breathing air over a high rate of air exchange. After a few minutes, the pollutant concentrations are reduced to an acceptable level, and the respirators can be discontinued. The air in the room is monitored by a gas detector and warned visually and acoustically when exceeding impermissible values. It is not only cleaned by means of a circulating air system and a noxious gas filter, the room air, but it is simultaneously passed by means of an air purifier from air storage fresh air into the interior of the common room to support the flushing by the recirculation system.

Während der Luftspülung werden auch die Atemmasken, welche von den Personen im Aufenthaltsraum getragen werden, mit Atemluft versorgt.During the air purge, the respiratory masks, which are carried by the people in the lounge, supplied with breathing air.

Die vor der Eingangstür der Eingangsschleuse angeordnete Luftschleieranlage ist mit einem geschlossenen Luftschirm ausgeführt. Dieser reduziert deutlich den thermischen Effekt beim Öffnen der Eingangstür, welcher durch unterschiedliche Temperaturen entsteht. Leichte Windeinflüssen werden durch den unsichtbaren Luftschleier abgemindert und gebremst. Hiermit wird der Schadstoffeintrag in die Eingangsschleuse stark reduziert. Der Schadstoffeintrag entsteht beim Öffnen der Eingangstür durch thermische Einflüsse und durch über Personen eingeschleppte Kontaminationen.The air curtain system arranged in front of the entrance door of the entrance lock is designed with a closed air screen. This significantly reduces the thermal effect when opening the front door, which is caused by different temperatures. Light wind effects are reduced and slowed down by the invisible air curtain. Hereby the pollutant entry into the entrance lock is strongly reduced. The entry of pollutants occurs when the front door is opened due to thermal influences and contaminations introduced via persons.

Die von den Personen eingeschleppte Schadstoffmenge pro Zeit lässt sich durch eine Grenzwertbetrachtung bestimmen. Es wird angenommen, dass jede Person eine dem Körpervolumen entsprechende Luftmenge in die Eingangsschleuse einbringt. Wenn thermische Einflüsse durch das Luftschleiergerät eliminiert sind, kann man davon ausgehen, dass nur durch Kontaminationen in der Eingangsschleuse entfernt werden müssen.The amount of pollutants introduced by the persons per time can be determined by a limit value analysis. It is assumed that each person introduces a volume of air corresponding to the body volume into the entrance lock. When thermal effects are eliminated by the air curtain, it can be assumed that only contaminants in the entrance lock have to be removed.

Beispiel: 100 Personen (P) sollen in 10 Minuten einschleusen, Annahme 80 Liter Körpervolumen pro Person, 5000 ppm Außenkontamination, entsprechend 0,5 Vol%.Example: 100 people (P) are to infiltrate in 10 minutes, assuming 80 liters of body volume per person, 5000 ppm of external contamination, corresponding to 0.5% by volume.

Eingeschleppte kontaminierte Luft : 100 P x 80 Liter / 10 Minuten = 800 Liter pro Minute

Figure imgb0001
Trapped contaminated air: 100 P x 80 liter / 10 minutes = 800 Liters per minute
Figure imgb0001

Eingeschlepptes Schadgas : 100 P x 80 Liter / 10 Minuten = 800 Liter pro Minute * 0 , 5 % = 4 L / min

Figure imgb0002
Trapped noxious gas: 100 P x 80 liter / 10 minutes = 800 Liters per minute * 0 . 5 % = 4 L / min
Figure imgb0002

Die Filteranlage wird so ausgelegt werden, dass die Schadstoffkonzentration in der Eingangsschleuse auf einen vorbestimmten Wert begrenzt wird.The filter system will be designed so that the pollutant concentration in the entrance lock is limited to a predetermined value.

Beispiel: Bei einem Schadgaseintrag von 4 L/min soll die Schadgaskonzentration in der Eingangsschleuse auf 0,04 %, entsprechend 400 ppm begrenzt werden. Der Filterwirkungsgrad beträgt 90%.Example: With a pollutant gas input of 4 L / min, the pollutant gas concentration in the inlet lock should be limited to 0.04%, corresponding to 400 ppm. The filter efficiency is 90%.

Der erforderliche Filter - Luftdurchsatz beträgt 4 L/min / 0,04%*0,9 = 667 m3/hThe required filter - air flow rate is 4 L / min / 0.04% * 0.9 = 667 m 3 / h

Wenn in der Eingangsschleuse eine Konzentration von 400 ppm erreicht wird, beseitigt die Filteranlage 4 L/min Schadgas aus der Luft. Dieses entspricht dem angenommenen Schadstoffeintrag. Die Filterleistung wird bei der tatsächlichen Auslegung der Anlage höher gewählt.When a concentration of 400 ppm is reached in the inlet lock, the filter unit removes 4 L / min of harmful gas from the air. This corresponds to the assumed pollutant input. The filter performance is set higher in the actual layout of the system.

Bei Zugrundelegung des gleichen Rechenbeispiels erfolgt ein reduzierter Schadstoffeintrag in den Aufenthaltsraum, da jede Person eine 400 ppm entsprechende Schadstoffmenge einschleppt und nicht mehr 5.000 ppm.On the basis of the same calculation example, there is a reduced pollutant entry into the recreation room, since each person drags in a 400 ppm corresponding amount of pollutants and no longer 5,000 ppm.

Das Volumen der eingeschleppten Schadgasmenge beträgt:

  • Eingeschlepptes Schadgas: 100 P x 80 Liter / 10 Minuten = 800 Liter pro Minute * 0 , 04 % = 0 , 32 L / min
    Figure imgb0003
  • Raumluftkonzentration nach dem Betreten aller Personen: 0 , 32 L / min * 10 Minuten = 3 , 2 Liter
    Figure imgb0004
The volume of entrained noxious gas is:
  • Trapped noxious gas: 100 P x 80 liter / 10 minutes = 800 Liters per minute * 0 . 04 % = 0 . 32 L / min
    Figure imgb0003
  • Indoor air concentration after entering all persons: 0 . 32 L / min * 10 minutes = 3 . 2 liter
    Figure imgb0004

Raumluftkonzentration im Aufenthaltsraum nach dem Betreten aller Personen:

  • Raumgröße: 111 m3 Raumluftkonzentration : 3 , 2 / 111.000 = 28 ppm
    Figure imgb0005
Indoor air concentration in the lounge after entering all persons:
  • Room size: 111 m 3 Airborne concentration : 3 . 2 / 111000 = 28 ppm
    Figure imgb0005

Die zulässige Raumluftkonzentration beträgt 5 ppm.The permissible room air concentration is 5 ppm.

Folglich müssen die Personen für eine gewisse Übergangszeit noch über eine zentrale Atemanlage mit Masken mit Atemgas versorgt werden.Consequently, for a certain transitional period, people still need to be supplied with respiratory gas via a central breathing system.

Für die Reinigung auf den zulässigen Wert von 5 ppm sind folgende Reinigungsfunktionen einsetzbar:

  • Filtration über den CO2 - Absorber: Reinigungsleistung von 600 m3/h.
  • Umluftfiltration über die Gasfilteranlage, welche wahlweise für jeden Raum vorgesehen wird, oder als zentrale umschaltbare Filteranlage.
  • Luftspülung mit Atemluft aus Speicherflaschen.
The following cleaning functions can be used for cleaning to the permissible value of 5 ppm:
  • Filtration via the CO2 absorber: cleaning capacity of 600 m 3 / h.
  • Recirculation filtration via the gas filtration system, which is optionally provided for each room, or as a central switchable filter system.
  • Air purge with breathing air from storage bottles.

Für die Reinigung von 28 ppm Schadgas (a) auf 5 ppm (b) wird folgende Luftmenge benötigt: In ppm a / ppm b * Raumvolumen = ln 28 / 5 * 111 = 191 , 2 m 3 und bei einem Filterwirkungsgrad von 80 % , 239 m 3 ; mit ln = natürlicher Logarithmus .

Figure imgb0006
For the purification of 28 ppm of harmful gas (a) to 5 ppm (b), the following amount of air is required: In ppm a / ppm b * volume = ln 28 / 5 * 111 = 191 . 2 m 3 and at one Filter efficiency of 80 % . 239 m 3 ; with ln = natural logarithm ,
Figure imgb0006

Zeit für die Reinigung im Aufenthaltsraum:

  1. a) Reinigung über Luftspülung aus Luftspeichern: Es werden 17 Flaschen a' 14.000 Liter Nutzvolumen benötigt. Bei einer Spülluftmenge von 600 m3/h beträgt die Reinigungszeit ca. 24 Minuten.
  2. b) Reinigung über die Gas-Filteranlage: Mit dem ausgelegten Volumenstrom von 667 m3/h wird in etwa die gleiche Zeit benötigt.
  3. c) Reinigung über die Absorber - Kalkpatronen: Mit dem Nennvolumenstrom von 600 m3/h wird in etwa die gleiche Zeit benötigt.
Time for cleaning in the lounge:
  1. a) Purge via air purge from air storage: 17 bottles of a 14,000 liter useful volume are required. At a purge air volume of 600 m 3 / h, the cleaning time is approximately 24 minutes.
  2. b) Cleaning via the gas filter system: The designed volume flow of 667 m 3 / h will take about the same time.
  3. c) Cleaning via the absorber - lime cartridges: The nominal volume flow of 600 m 3 / h will take about the same time.

Beim Zusammenwirken aller Wirkungsmechanismen - Luftspülung, Filtration und Absorbernutzung - kann die Zeit erheblich reduziert werden. In jedem Fall lassen sich die Luftspülung und Gas - Filtration parallel gemeinsam einsetzen und die Zeit für die Reinigung des Aufenthaltsraumes würde ca. 12 Minuten betragen.In the interaction of all mechanisms of action - air purge, filtration and Absorber usage - the time can be significantly reduced. In any case, the air purge and gas filtration can be used together in parallel and the time for cleaning the common room would be about 12 minutes.

Diese Zeit wird für die Auslegung der Atemanlage als Mindestzeit zugrunde gelegt. Die tatsächliche Atemluftkapazität wird so ausgelegt, dass bei nicht wirksamen Rückhaltesystemen im Schutzraum die höheren Schadgaskonzentrationen gereinigt werden können und die Personen während der länger dauernden Reinigungszeit die entsprechende Luft für die Maskenversorgung verfügbar haben.This time is used as a minimum time for the design of the breathing system. The actual breathing air capacity is designed so that in case of ineffective restraint systems in the shelter the higher concentrations of pollutants can be cleaned and the persons during the longer cleaning time have the appropriate air available for the mask supply.

Ein Ausführungsbeispiel der erfindungsgemäßen Vorrichtung ist in der Figur gezeigt und im Folgenden näher erläutert.An embodiment of the device according to the invention is shown in the figure and explained in more detail below.

Es zeigen:

Figur 1:
den Pneumatikschaltplan eines Personenschutzsystems,
Figur 2:
eine erste Alternative zum Personenschutzsystem nach der Figur 1,
Figur 3:
eine zweite Alternative zum Personenschutzsystem nach der Figur 2.
Show it:
FIG. 1:
the pneumatic circuit diagram of a personal protection system,
FIG. 2:
a first alternative to the personal protection system according to the FIG. 1 .
FIG. 3:
a second alternative to the personal protection system according to the FIG. 2 ,

Figur 1 veranschaulicht schematisch den Aufbau eines Personenschutzsystems 1, welches ein Luftschleiergerät 2 vor einer Eingangstür 3 zu einer Eingangsschleuse 4 und einen mit der Eingangsschleuse 4 verbundenen Aufenthaltsraum 5 aufweist. Zwischen der Eingangsschleuse 4 und dem Aufenthaltsraum 5 befindet sich eine Durchgangstür 6. Das Luftschleiergerät 2 besteht aus einem ersten Zuluftkanal 7
mit einer Austrittsöffnung 8, einem ersten Rückluftkanal 9 mit Rückluftöffnungen 10 und einem ersten Gebläse 11. Das Gebläse 11 ist über einen ersten Gaskanal 12 mit dem ersten Zuluftkanal 7 und dem ersten Rückluftkanal 9 verbunden und fördert Umgebungsluft vom ersten Rückluftkanal 9 zum ersten Zuluftkanal 7. Das Luftschleiergerät 2 kann auch in offener Bauweise ohne Rückluftkanal ausgeführt sein.
FIG. 1 schematically illustrates the structure of a personal protection system 1, which has an air curtain 2 in front of an entrance door 3 to an entrance lock 4 and connected to the entrance lock 4 lounge 5. Between the entrance lock 4 and the recreation room 5 there is a passage door 6. The air curtain 2 consists of a first supply air duct 7
with an outlet opening 8, a first return air duct 9 with return air openings 10 and a first blower 11. The blower 11 is connected via a first gas channel 12 to the first supply air duct 7 and the first return air duct 9 and conveys ambient air from the first return air duct 9 to the first supply air duct 7. The air curtain 2 can also be designed in an open design without return air duct.

In der Eingangsschleuse 4 befinden sich ein zweiter Zuluftkanal 13 mit Austrittsöffnungen 14, ein zweiter Rückluftkanal 15 mit Eingangsöffnungen 16, welche über einen zweiten Gaskanal 17 miteinander verbunden sind. Ein im zweiten Gaskanal 17 angeordnetes zweites Gebläse 18 fördert die Innenraumluft über ein erstes Schadgasfilter 19 vom zweiten Rückluftkanal 15 zum zweiten Zuluftkanal 13. Die über den zweiten Rückluftkanal 15 angesaugte Innenraumluft wird im ersten Schadgasfilter 19 gereinigt und gelangt als dekontaminierte Luft über den zweiten Zuluftkanal 13 zurück in den Innenraum.In the entrance lock 4 there is a second supply air duct 13 with outlet openings 14, a second return air duct 15 with inlet openings 16, which are connected to one another via a second gas channel 17. A second blower 18 arranged in the second gas duct 17 conveys the interior air via a first harmful gas filter 19 from the second return air duct 15 to the second supply air duct 13. The second blower duct via the second return air duct 15 aspirated indoor air is purified in the first harmful gas filter 19 and passes as decontaminated air via the second supply air duct 13 back into the interior.

Der Aufenthaltsraum 5 besitzt einen dritten Zuluftkanal 20 mit Austrittsöffnungen 21, einen dritten Rückluftkanal 22 mit Eingangsöffnungen 23 und einen dritten Gaskanal 24 mit einem dritten Gebläse 26 und einem zweiten Schadgasfilter 25 zur Förderung der Innenraumluft vom dritten Rückluftkanal 22 zum dritten Zuluftkanal 20. In der Raummitte des Aufenthaltsraumes 5 verläuft ein Atemluftleitung 27 für nicht näher dargestellte Atemschutzmasken. Die Atemluftleitung ist über eine Luftschalttafel 28 mit einem Atemluftspeicher 29 verbunden. Eine Versorgungsleitung 30 verläuft von der Luftschalttafel 28 über einen Schalldämpfer 31 zum dritten Zuluftkanal 20. Der dritte Zuluftkanal 20 wird somit sowohl über das dritte Gebläse 26 als auch über den Atemluftspeicher 29 mit Gas versorgt, so dass Restkontaminationen sowohl über das Umluftsystem als auch über die Luft aus dem Atemluftspeicher 29 aus dem Aufenthaltsraum 5 ausgespült werden. Überschüssiges Gas wird über ein federbelastetes Überdruckventil 32 aus dem Aufenthaltsraum 5 abgelassen. Das Überdruckventil 32 ist so eingestellt, dass in dem Aufenthaltsraum 5 immer ein derartiger Innenraumdruck herrscht, der das Eindringen von Schadgasen aus der Umgebung verhindert.The common room 5 has a third supply air duct 20 with outlet openings 21, a third return air channel 22 with inlet openings 23 and a third gas channel 24 with a third blower 26 and a second harmful gas filter 25 for conveying the interior air from the third return air duct 22 to the third supply air duct 20. In the middle of the room of the common room 5 is a breathing air line 27 for non-illustrated respirators. The breathing air line is connected via an air switch panel 28 with a breathing air reservoir 29. A supply line 30 extends from the air switch panel 28 via a silencer 31 to the third supply air duct 20. The third supply air duct 20 is thus supplied both via the third blower 26 and via the breathing air reservoir 29 with gas, so that residual contamination both via the air circulation system and on the Air from the breathing air reservoir 29 are flushed out of the lounge 5. Excess gas is discharged via a spring-loaded pressure relief valve 32 from the common room 5. The pressure relief valve 32 is set so that in the recreation room 5 always such an interior pressure prevails, which prevents the ingress of noxious gases from the environment.

Figur 2 veranschaulicht ein erstes alternatives Personenschutzsystem 40, bei dem gegenüber dem Personenschutzsystem 1 nach der Figur 1, ein gemeinsames Schadgasfilter 41 zur Filterung der Innenraumluft in der Eingangsschleuse 4 und im Aufenthaltsraum 5 verwendet wird. Gleiche Komponenten sind mit gleichen Bezugsziffern der Figur 1 versehen. Zur Umlenkung der Spülluft zwischen der Eingangsschleuse 4 und dem Aufenthaltsraum 5 ist ein Umschaltventil 42 im zweiten Gaskanal 17 zwischen dem zweiten Gebläse 18 und dem zweiten Zuluftkanal 13 und dem Schalldämpfer 31 vorgesehen. In der in der Figur 2 gezeigten ersten Schaltstellung des Umschaltventils 42 fördert das zweite Gebläse 18 die über das erste Schadgasfilter 19 angesaugte Luft in den zweiten Zuluftkanal 13. In einer zweiten Schaltstellung des Umschaltventils 42 ist das zweite Gebläse 18 mit dem Schalldämpfer 31 verbunden und die geförderte Luft gelangt über den Schalldämpfer 31 in den dritten Zuluftkanal 20. Der dritte Rückluftkanal 22 ist über einen vierten Gaskanal 44 mit einem als Überdruckventil ausgeführten Abströmventil 43 verbunden, das in die Eingangsschleuse 4 mündet. Das erste alternative Personenschutzsystem 40 zeichnet sich durch ein besonders schnelles Einschleusen von Personen in den Aufenthaltsraum 5 aus. Die Personen passieren die Eingangsschleuse 4 und betreten den Aufenthaltsraum 5. Das Umschaltventil 42 befindet sich zunächst in der ersten Schaltstellung und wird dann in die zweite Schaltstellung umgelegt. Der Luftkreislauf erfolgt dann über den Schalldämpfer 31 in den dritten Zuluftkanal 20 und vom dritten Rückluftkanal 22, den vierten Gaskanal 44 und das Abströmventil 43 in die Eingangsschleuse 4, wo die Raumluft über den zweiten Rückluftkanal 15 angesaugt wird. Durch Luftspülung innerhalb des Aufenthaltsraumes 5 werden eingeschleppte Kontaminationen auf einen festgelegten Grenzwert reduziert. Gegenüber dem Personenschutzsystem 1 nach der Figur 1 wird bei dem ersten alternativen Personenschutzsystem 40 eine Filteranlage eingespart. FIG. 2 FIG. 1 illustrates a first alternative personal protection system 40, in which, compared with the personal protection system 1 according to FIG FIG. 1 , a common harmful gas filter 41 is used for filtering the indoor air in the entrance lock 4 and in the recreation room 5. The same components are given the same reference numbers FIG. 1 Mistake. To divert the scavenging air between the entrance lock 4 and the common room 5, a switching valve 42 in the second gas channel 17 between the second fan 18 and the second supply air duct 13 and the muffler 31 is provided. In the in the FIG. 2 In a second switching position of the switching valve 42, the second blower 18 is connected to the muffler 31 and the conveyed air passes through the muffler 31 in the third supply air duct 20. The third return air duct 22 is connected via a fourth gas passage 44 with a discharge valve 43 designed as a pressure relief valve, which opens into the input lock 4. The first alternative personal protection system 40 is characterized by a particularly rapid infiltration of persons into the recreation room 5. The persons pass through the entrance lock 4 and enter the common room 5. The switching valve 42 is initially in the first switching position and then in the second switching position transferred. The air circulation then takes place via the silencer 31 into the third supply air duct 20 and from the third return air duct 22, the fourth gas duct 44 and the outflow valve 43 into the input lock 4, where the room air is sucked in via the second return air duct 15. Air purge within the lounge 5 reduces entrained contaminants to a specified limit. Compared to the personal protection system 1 after the FIG. 1 In the first alternative personal protection system 40, a filter system is saved.

Figur 3 zeigt ein zweites alternatives Personenschutzsystem 50, bei dem gegenüber dem ersten alternativen Personenschutzsystem 40 nach der Figur 2 die über den dritten Zuluftkanal 20 in den Aufenthaltsraum 5 eintretende Luft nicht in einem Rückluftkanal gesammelt wird, sondern über den vierten Gaskanal 44 und das Abströmventil 43 direkt in die Eingangsschleuse 4 abgeleitet wird. Diese Luftführung kann gewählt werden, wenn für eine Luftreinigung eine gezielte Luftrückführung über den dritten Rückluftkanal 22 erforderlich ist. Hierdurch vergrößert sich auch die nutzbare Fläche im Aufenthaltsraum 5, da kein Rückluftkanal eingebaut werden muss. FIG. 3 shows a second alternative personal protection system 50, in which compared to the first alternative personal protection system 40 after FIG. 2 the air entering the common room 5 via the third supply air duct 20 is not collected in a return air duct, but is discharged directly into the intake lock 4 via the fourth gas duct 44 and the outflow valve 43. This air duct can be selected if a targeted air return via the third return air duct 22 is required for air purification. This also increases the usable area in the lounge 5, since no return air duct must be installed.

BezugszeichenlisteLIST OF REFERENCE NUMBERS

11
PersonenschutzsystemPersonal Protection System
22
LuftschleiergerätAir curtain
33
Eingangstürentrance
44
Eingangsschleuseentry lock
55
Aufenthaltsraumsitting room
66
DurchgangstürPassdoor
77
erster Zuluftkanalfirst supply air duct
88th
Austrittsöffnungoutlet opening
99
erster Rückluftkanalfirst return air duct
1010
Eingangsöffnungentrance opening
1111
erstes Gebläsefirst blower
1212
erster Gaskanalfirst gas channel
1313
zweiter Zuluftkanalsecond supply air duct
1414
Austrittsöffnungoutlet opening
1515
zweiter Rückluftkanalsecond return air duct
1616
Eingangsöffnungentrance opening
1717
zweiter Gaskanalsecond gas channel
1818
zweites Gebläsesecond blower
1919
erstes Schadgasfilterfirst harmful gas filter
2020
dritter Zuluftkanalthird supply air duct
2121
Austrittsöffnungoutlet opening
2222
dritter Rückluftkanalthird return air duct
2323
Eingangsöffnungentrance opening
2424
dritter Gaskanalthird gas channel
2525
zweites Schadgasfiltersecond harmful gas filter
2626
drittes Gebläsethird blower
2727
Versorgungskanalsupply channel
2828
Gasverteilergas distributor
2929
AtemluftspeicherBreathing air storage
3030
Versorgungsleitungsupply line
3131
Schalldämpfersilencer
3232
ÜberdruckventilPressure relief valve
4040
erstes alternatives Personenschutzsystemfirst alternative personal protection system
4242
Umschaltventilswitching valve
4343
Abströmventiloutflow valve
4444
vierter Gaskanalfourth gas channel
5050
zweites alternatives Personenschutzsystemsecond alternative personal protection system

Claims (7)

Personenschutzsystem mit
einer Eingangsschleuse (4),
einem mit der Eingangsschleuse (4) verbundenem Aufenthaltsraum (5),
einem Luftschleiergerät (2) an der Eingangstür (3) der Eingangsschleuse (4),
einem Umluftsystem (13, 15, 18, 19, 20, 22, 25, 26) für den von der Eingangschleuse (4) und dem Aufenthaltsraum (5) umschlossenen Innenraum, umfassend mindestens eine Luftförderanlage (18) und ein Schadgasfilter (19),
einer Luftspüleinrichtung (28, 30, 31, 20) aus Luftspeichern (29) für den Aufenthaltsraum (5), und
einem Gasversorgungskanal (27) für Atemschutzprodukte.
Personal protection system with
an entrance lock (4),
a lounge (5) connected to the entrance lock (4),
an air curtain device (2) on the entrance door (3) of the entrance lock (4),
a circulating air system (13, 15, 18, 19, 20, 22, 25, 26) for the interior space enclosed by the inlet lock (4) and the common room (5), comprising at least one air conveying system (18) and a harmful gas filter (19),
an air purge device (28, 30, 31, 20) from air reservoirs (29) for the common room (5), and
a gas supply duct (27) for respiratory protection products.
Personenschutzsystem nach Anspruch 1, dadurch gekennzeichnet, dass das Luftschleiergerät (2) einen ersten Zuluftkanal (7), einen ersten Rückluftkanal (9) und ein erstes Gebläse (11) umfasst.Personal protection system according to claim 1, characterized in that the air curtain device (2) comprises a first supply air duct (7), a first return air duct (9) and a first blower (11). Personenschutzsystem nach Anspruch 1 oder 2, dadurch gekennzeichnet, dass das Umluftsystem für die Eingangsschleuse (4) einen zweiten Zuluftkanal (13), einen zweiten Rückluftkanal (15) ein zweites Gebläse (18) mit einem ersten Schadgasfilter (19) umfasst.Personal protection system according to claim 1 or 2, characterized in that the circulating air system for the input lock (4) comprises a second supply air duct (13), a second return air duct (15) comprises a second blower (18) with a first harmful gas filter (19). Personenschutzsystem nach einem der Ansprüche 1 bis 3, dadurch gekennzeichnet, dass das Umluftsystem für den Aufenthaltsraum (5) aus einem dritten Zuluftkanal (20), einem dritten Rückluftkanal (22), sowie einem dritten Gebläse (26) mit einem zweiten Schadgasfilter (25) besteht.Personal protection system according to one of claims 1 to 3, characterized in that the recirculation system for the recreation room (5) from a third supply air duct (20), a third return air duct (22), and a third blower (26) with a second harmful gas filter (25) consists. Personenschutzsystem nach Anspruch 1 oder 2, dadurch gekennzeichnet, dass ein gemeinsames Umluftsystem für die Eingangsschleuse (4) und den Aufenthaltsraum (5) einen zweiten Zuluftkanal (13) und einen zweiten Rückluftkanal (15) in der Eingangsschleuse (4) ein zweites Gebläse 18 mit einem ersten Schadgasfilter (19) zwischen dem Rückluftkanal (15) und dem Zuluftkanal (13) sowie ein Umschaltventil (42) abströmseitig des Gebläses (18) aufweist, wobei das Umschaltventil (42) in einer ersten Schaltstellung einen Gasweg zum zweiten Zuluftkanal (13) und in einer zweiten Schaltstellung einen Gasweg zu einem dritten Zuluftkanal (20) im Aufenthaltsraum (5) herstellt.Personal protection system according to claim 1 or 2, characterized in that a common air circulation system for the entrance lock (4) and the recreation room (5) has a second supply air duct (13) and a second return air duct (15) in the entrance lock (4) a second blower 18 one The first Schadgasfilter (19) between the return air duct (15) and the supply air duct (13) and a switching valve (42) downstream of the blower (18), wherein the switching valve (42) in a first switching position, a gas path to the second supply air duct (13) and in a second switching position produces a gas path to a third supply air duct (20) in the common room (5). Personenschutzsystem nach einem der Ansprüche 1 bis 5, dadurch gekennzeichnet, dass die Luftspeicher 29 der Luftspüleinrichtung (28, 30, 31, 20) mit dem dritten Zuluftkanal (20) im Aufenthaltsraum (5) verbunden sind.Personal protection system according to one of claims 1 to 5, characterized in that the air reservoirs 29 of the air flushing device (28, 30, 31, 20) are connected to the third supply air duct (20) in the recreation room (5). Personenschutzsystem nach einem der Ansprüche 1 bis 6, dadurch gekennzeichnet, dass die Luftspüleinrichtung und / oder das Umluftsystem für eine Spülluftmenge von mindestens 600 m3/h ausgelegt sind.Personal protection system according to one of claims 1 to 6, characterized in that the air purge device and / or the recirculation system are designed for a purge air quantity of at least 600 m 3 / h.
EP12155734.2A 2011-03-16 2012-02-16 Passenger protection system Not-in-force EP2500491B1 (en)

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PL2500491T3 (en) 2015-12-31
DE102011014104B3 (en) 2012-06-21
US20120233923A1 (en) 2012-09-20
EP2500491B1 (en) 2015-07-08

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