ES2661542A1 - Support at three heights for equipment for measuring environmental parameters (Machine-translation by Google Translate, not legally binding) - Google Patents

Support at three heights for equipment for measuring environmental parameters (Machine-translation by Google Translate, not legally binding) Download PDF

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Publication number
ES2661542A1
ES2661542A1 ES201600846A ES201600846A ES2661542A1 ES 2661542 A1 ES2661542 A1 ES 2661542A1 ES 201600846 A ES201600846 A ES 201600846A ES 201600846 A ES201600846 A ES 201600846A ES 2661542 A1 ES2661542 A1 ES 2661542A1
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pinion
support
rack
equipment
mast
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ES2661542B1 (en
Inventor
Ángel Jesús CALLEJÓN FERRE
José Luis Blanco Claraco
José Pérez Alonso
Javier López Martínez
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Universidad de Almeria
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Universidad de Almeria
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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16MFRAMES, CASINGS OR BEDS OF ENGINES, MACHINES OR APPARATUS, NOT SPECIFIC TO ENGINES, MACHINES OR APPARATUS PROVIDED FOR ELSEWHERE; STANDS; SUPPORTS
    • F16M11/00Stands or trestles as supports for apparatus or articles placed thereon ; Stands for scientific apparatus such as gravitational force meters
    • F16M11/42Stands or trestles as supports for apparatus or articles placed thereon ; Stands for scientific apparatus such as gravitational force meters with arrangement for propelling the support stands on wheels
    • F16M11/425Stands or trestles as supports for apparatus or articles placed thereon ; Stands for scientific apparatus such as gravitational force meters with arrangement for propelling the support stands on wheels along guiding means

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  • Engineering & Computer Science (AREA)
  • General Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Testing Or Calibration Of Command Recording Devices (AREA)

Abstract

Support for equipment for measuring environmental parameters, of the type that allow the placement of measuring equipment in three heights and adjust these positions in height. The support incorporates a vertical mast (1) and three support bars (2) placed in horizontal position and at different heights. Said support bars (2) can be moved vertically by means of their respective rack-and-pinion mechanisms (3). The pinion-rack mechanism (3) incorporates a trigger (8) to prevent the displacement of the support bar (2) due to its own weight. The bar-support (2) presents in its entire length a multitude of holes (9) intended for the location of measuring instruments. (Machine-translation by Google Translate, not legally binding)

Description

SOPORTE A TRES ALTURAS PARA EQUIPOS DE MEDIDA DE PARÁMETROS AMBIENTALES SECTOR DE LA TÉCNICA 5 La presente invención se enmarca de manera general en el sector de equipos y sistemas de medición. Específicamente, la presente invención está orientada al campo de la medición de parámetros ambientales. Concretamente aquellos parámetros que influyen en la ergonomía de los ambientes térmicos. 10 ANTECEDENTES DE LA INVENCiÓN La sensación térmica que experimenta un ser humano está relacionada, principalmente, con el equilibrio térmico global de su cuerpo, el cual depende, entre otros factores, de los parámetros ambientales: temperatura del aire, temperatura radiante media, humedad del aire y velocidad del aire. La sensación 15 térmica global del cuerpo en un determinado ambiente puede ser estimada a partir de la medición de estos parámetros. Existen diversos trabajos y normas internacionales que presentan métodos para la predicción de la sensación térmica y del grado de incomodidad (insatisfacción 20 térmica) de las personas expuestas a ambientes térmicos. La ISO 7730:2005 trata la ergonomía del ambiente térmico y describe el cálculo de los índices PMV (voto medio estimado) y PPD (porcentaje estimado de insatisfechos) y de los criterios de bienestar térmico local, para la evaluación del bienestar térmico'. 25 El índice PMV toma como datos de entrada la temperatura del aire la temperatura radiante media y la velocidad relativa del aire entre otros parámetros. La temperatura radiante media es la temperatura uniforme de un recinto imaginario en el que la transferencia de calor radiante desde el cuerpo humano es igual a la 1 ISO 7730:2005 -Ergonomía del ambiente térmico. Determinación analítica e interpretación del bienestar térmico mediante el cálculo de los índices PMV y PPD Y los criterios de bienestar térmico local. DESCRIPCIÓN efectuada en un recinto real no uniforme; pudiendo ser obtenida a partir de la temperatura de globo y la temperatura del aire. El índice PPD se obtiene a partir del valor del PMV. 5 Los criterios de bienestar térmico local tienen en consideración la incomodidad 10 térmica causada por el calentamiento o enfriamiento local indeseado del cuerpo. La ISO 7730 recoge como factores de incomodidad local más comunes la asimetría de la temperatura radiante, las corrientes de aire, la diferencia en vertical de la temperatura del aire y la presencia de suelos fríos o calientes. Las características mínimas de los instrumentos de medida de las magnitudes físicas que definen un ambiente (temperatura del aire, temperatura radiante media, humedad del aire, velocidad del aire y temperatura superficial) y la metodología a llevar a cabo en la toma de estas medidas se especifica en la norma 15 internacional ISO 7726:1998 2. En dicha norma, se hace además distinción entre ambientes "homogéneos" y "heterogéneos". Indicando que en ambientes heterogéneos las magnitudes físicas deben medirse en diferentes situaciones alrededor del sujeto y más concretamente a tres alturas: a nivel de cabeza, a nivel de abdomen y a nivel de tobillo; diferenciando además si el sujeto se encuentra 20 en posición sentada o de pie. Es necesario tener en cuenta que la altura de la cabeza, abdomen y tobillo puede variar según los valores antropométricos de las distintas poblaciones de individuos, por lo que un dispositivo de medición destinado a tomar medidas en estos tres niveles debería poder ajustar la posición en altura de los instrumentos de medida que incorpore. 25 La presente invención se plantea como una solución a la toma de medidas ambientales a tres alturas cumpliendo con los requisitos de la norma ISO 7726:1998. 2 ISO 7730:2005 -Ergonomía del ambiente térmico. Determinación analítica e interpretación del bienestar térmico mediante el cálculo de los índices PMV y PPD Y los criterios de bienestar térmico local. EXPLICACIÓN DE LA INVENCIÓN La invención objeto de la presente memoria se refiere a un soporte para equipos de medida de parámetros ambientales, de entre aquellos que permiten la toma de 5 medidas a tres alturas. Caracteriza esta invención un especial sistema que permite la instalación de un número variable de instrumentos de medida o sensores y ajustar la altura de los mismos respecto del suelo. De esta forma, la principal novedad de la presente 10 invención es que sobre un mismo soporte se pueden instalar sensores a tres alturas distintas, donde la cota respecto al suelo de cada grupo de sensores es ajustable y puede ser tal que un primer grupo esté a nivel de tobillo de una persona, un segundo grupo a nivel de abdomen y un tercer grupo de sensores a nivel de cabeza, siendo estos tres niveles de altura distintos en función de las características 15 antropométricas de cada población de individuos. El soporte objeto de la presente invención consta de un mástil sobre el cual puede desplazarse verticalmente una barra-soporte colocada en posición horizontal a modo de cruz. Esta barra-soporte se encuentra interrumpida en su parte central 20 por el armazón de un mecanismo de piñón-cremallera que permite el desplazamiento vertical de la misma a lo largo del mástil. En el interior del armazón se encuentra alojado un piñón, el cual gira accionado mediante una llave apropiada que se acopla a uno de los extremos del eje del piñón. La cremallera del mencionado mecanismo es solidaria al mástil y está dispuesta a lo largo de 25 toda su longitud. De esta manera, al hacer girar el piñón, éste engrana sobre la cremallera desplazándose verticalmente la barra-soporte. Para fijar la posición de esta barra-soporte y evitar la caída debida a su propio peso, el armazón dispone de un gatillo cuyo extremo hace tope con uno de los dientes del piñón, evitando así el giro indeseado del. mismo. La función de la barra-soporte es posicionar y sustentar los diversos instrumentos de medida que permitirán la toma de medidas de los parámetros ambientales. La barra-soporte presenta en toda su longitud una serie de agujeros, a modo de alojamientos, para la ubicación de los distintos instrumentos de medida. Entre 5 otros instrumentos de medida, pueden ser instalados .sensores de: temperatura del aire, temperatura de globo, humedad relativa, velocidad del viento y rayos ultravioleta. Un número de tres barras-soporte idénticas son instaladas sobre el mástil a 10 distintas alturas, de manera que cada grupo de sensores de una misma barra-soporte tomarán datos ambientales a una misma cota sobre el nivel del suelo. El presente invento está orientado preferiblemente a su uso en recintos interiores para la medida de los parámetros ambientales que influyen en la ergonomía de los 15 ambientes térmicos, pero igualmente tiene aplicación en otros campos en los que sea necesaria la toma de medidas ambientales a distintas alturas. BREVE DESCRIPCiÓN DE LAS FIGURAS La presente invención se entenderá mejor con referencia a los siguientes dibujos 20 que ilustran realizaciones preferidas de la invención, proporcionadas a modo de ejemplo, y que no deben interpretarse como limitativas de la invención de ninguna manera. La figura 1 muestra una vista en perspectiva del modo de realización preferente 25 del soporte a tres alturas para equipos de medida de parámetros ambientales; La figura 2 muestra un detalle del mecanismo piñón-cremallera. REALIZACiÓN PREFERENTE DE LA INVENCIÓN A la vista de lo anteriormente enunciado, la presente invención se refiere a un 30 soporte para equipos de medida de parámetros ambientales de entre aquellos que permiten la colocación de equipos de medida en tres alturas y ajustar dichas posiciones en altura. Está esencialmente caracterizado por incorporar un mástil (1) Y tres barras-soporte (2) iguales. El mástil (7) está fijado al suelo y colocado en posición vertical. La barra-soporte (2) ubicada en posición horizontal y 5 perpendicular al mástil (1) puede desplazarse verticalmente a lo largo éste por medio de un mecanismo de piñón-cremallera (3). La barra-soporte (2) está interrumpida en su parte media por el armazón (4) del mecanismo piñón-cremallera (3). Este meéanismo piñón-cremallera (3) incorpora un piñón (5), un eje (6) del piñón (5), una cremallera (7) y un gatillo (8). El piñón (5), alojado en el 10 interior del armazón (4), puede girar accionado desde el extremo del eje (6) mediante una llave apropiada. La cremallera (7) es solidaria al mástil (1) Y se prolonga en toda su longitud. De esta manera, al hacer girar el piñón (5), la barra-soporte (2) se desplaza verticalmente. Sobre el armazón (4) articula un gatillo (9) que permite el bloqueo del piñón (5), de forma que la barra-soporte (2) no se 15 desplace hacia abajo a causa de su propio peso. La barra-soporte (2) presenta en toda su longitud una multitud de agujeros (9) que permiten la ubicación de instrumentos de medida. Para la colocación de instrumentos de medida a tres alturas distintas, un número de tres barras-soporte 20 (2) iguales se encuentran montadas sobre el mástil (1), donde la misma cremallera (7) es compartida por las tres barras-soporte (2). No altera la esencialidad de esta invención variaciones en materiales, forma, tamaño y disposición de los elementos componentes descritos de manera no 25 limitativa, bastando ésta para proceder a su reproducción por un experto.   SUPPORT AT THREE HEIGHTS FOR ENVIRONMENTAL PARAMETER MEASUREMENT EQUIPMENT SECTOR OF THE TECHNIQUE 5 The present invention is generally framed in the equipment and measurement systems sector. Specifically, the present invention is oriented to the field of measuring environmental parameters. Specifically those parameters that influence the ergonomics of thermal environments. 10 BACKGROUND OF THE INVENTION The thermal sensation that a human being experiences is mainly related to the global thermal equilibrium of his body, which depends, among other factors, on the environmental parameters: air temperature, average radiant temperature, humidity of the air and air speed. The overall thermal sensation of the body in a given environment can be estimated from the measurement of these parameters. There are several international works and standards that present methods for predicting the thermal sensation and the degree of discomfort (thermal dissatisfaction) of people exposed to thermal environments. ISO 7730: 2005 addresses the ergonomics of the thermal environment and describes the calculation of the PMV (estimated average vote) and PPD (estimated percentage of dissatisfied) and local thermal well-being criteria for the evaluation of thermal well-being '. 25 The PMV index takes as input data the air temperature, the average radiant temperature and the relative air velocity among other parameters. The average radiant temperature is the uniform temperature of an imaginary enclosure in which the transfer of radiant heat from the human body is equal to 1 ISO 7730: 2005 -Ergonomics of the thermal environment. Analytical determination and interpretation of thermal well-being by calculating the PMV and PPD indices and local thermal well-being criteria. DESCRIPTION carried out in a real non-uniform enclosure; It can be obtained from the balloon temperature and the air temperature. The PPD index is obtained from the value of the PMV. 5 The criteria of local thermal well-being take into account thermal discomfort 10 caused by unwanted local heating or cooling of the body. The ISO 7730 includes asymmetry of the radiant temperature, the air currents, the vertical difference of the air temperature and the presence of cold or hot soils as the most common local discomfort factors. The minimum characteristics of the measuring instruments of the physical quantities that define an environment (air temperature, average radiant temperature, air humidity, air velocity and surface temperature) and the methodology to be carried out in the taking of these measures are specified in international standard ISO 7726: 1998 2. In said standard, a distinction is also made between "homogeneous" and "heterogeneous" environments. Indicating that in heterogeneous environments the physical quantities must be measured in different situations around the subject and more specifically at three heights: at the head level, at the abdomen level and at the ankle level; further differentiating if the subject is 20 in a sitting or standing position. It is necessary to take into account that the height of the head, abdomen and ankle may vary according to the anthropometric values of the different populations of individuals, so that a measuring device intended to take measurements at these three levels should be able to adjust the position in height of the measuring instruments that it incorporates. The present invention is proposed as a solution to the taking of environmental measures at three heights complying with the requirements of ISO 7726: 1998. 2 ISO 7730: 2005 -Ergonomics of the thermal environment. Analytical determination and interpretation of thermal well-being by calculating the PMV and PPD indices and local thermal well-being criteria. EXPLANATION OF THE INVENTION The invention object of the present report refers to a support for measuring equipment of environmental parameters, among those that allow the taking of 5 measurements at three heights. This invention characterizes a special system that allows the installation of a variable number of measuring instruments or sensors and adjusting their height relative to the ground. Thus, the main novelty of the present invention is that sensors on three different heights can be installed on the same support, where the height of each group of sensors is adjustable to the ground and it can be such that a first group is Ankle level of a person, a second group at the level of the abdomen and a third group of sensors at the level of the head, these three levels of height being different depending on the anthropometric characteristics of each population of individuals. The support object of the present invention consists of a mast on which a support bar placed horizontally as a cross can be moved vertically. This support bar is interrupted in its central part 20 by the framework of a rack-and-pinion mechanism that allows its vertical movement along the mast. Inside the frame a pinion is housed, which rotates actuated by means of an appropriate key that is coupled to one of the ends of the pinion shaft. The zipper of said mechanism is integral with the mast and is arranged along its entire length. In this way, by rotating the pinion, it engages on the rack by moving the support bar vertically. To fix the position of this support bar and avoid the fall due to its own weight, the frame has a trigger whose end abuts a pinion of the teeth of the pinion, thus avoiding unwanted rotation of the. same. The function of the support bar is to position and support the various measuring instruments that will allow the measurement of environmental parameters. The support bar has a full length of holes, as housings, for the location of the different measuring instruments. Among 5 other measuring instruments, sensors of: air temperature, balloon temperature, relative humidity, wind speed and ultraviolet rays can be installed. A number of three identical support bars are installed on the mast at 10 different heights, so that each group of sensors of the same support bar will take environmental data at the same level above ground level. The present invention is preferably oriented to its use in indoor enclosures for the measurement of environmental parameters that influence the ergonomics of the thermal environments, but also has application in other fields where it is necessary to take environmental measurements at different heights . BRIEF DESCRIPTION OF THE FIGURES The present invention will be better understood with reference to the following drawings 20 which illustrate preferred embodiments of the invention, provided by way of example, and which should not be construed as limiting the invention in any way. Figure 1 shows a perspective view of the preferred embodiment 25 of the support at three heights for equipment for measuring environmental parameters; Figure 2 shows a detail of the pinion-rack mechanism. PREFERRED EMBODIMENT OF THE INVENTION In view of the foregoing, the present invention relates to a support for equipment for measuring environmental parameters among those who They allow the placement of measuring equipment at three heights and adjust these positions in height. It is essentially characterized by incorporating a mast (1) and three equal support bars (2). The mast (7) is fixed to the ground and placed in an upright position. The support bar (2) located horizontally and 5 perpendicular to the mast (1) can be moved vertically along it by means of a rack-and-pinion mechanism (3). The support bar (2) is interrupted in its middle part by the frame (4) of the pinion-rack mechanism (3). This pinion-rack mechanism (3) incorporates a pinion (5), a shaft (6) of the pinion (5), a rack (7) and a trigger (8). The pinion (5), housed inside the frame (4), can be turned actuated from the end of the shaft (6) by means of an appropriate wrench. The zipper (7) is integral with the mast (1) and extends over its entire length. In this way, by rotating the pinion (5), the support bar (2) moves vertically. On the frame (4) articulates a trigger (9) that allows the pinion (5) to be blocked, so that the support bar (2) does not move down due to its own weight. The support bar (2) has a full length of holes (9) that allow the location of measuring instruments. For the placement of measuring instruments at three different heights, a number of three equal support bars 20 (2) are mounted on the mast (1), where the same rack (7) is shared by the three support bars ( 2). It does not alter the essentiality of this invention variations in materials, shape, size and arrangement of the component elements described in a non-limiting manner, this being sufficient to be reproduced by an expert.  

Claims (1)

REIVINDICACIONES 1. Soporte para equipos d~ medida de parámetros ambientales, del tipo de los que permiten ajustar la altura de colocación de los equipos de medida, que consta de 5 un mástil (1) colocado en posición vertical y tres barras-soporte (2) iguales ubicadas en posición horizontal, esencialmente caracterizado por, que la barra-soporte (2) puede desplazarse verticalmente a lo largo del mástil (1) por medio de un mecanismo de piñón-cremallera (3). La barra-soporte (2) se encuentra interrumpida en su parte media por el armazón (4) del mecanismo piñón-10 cremallera (3). El mecanismo piñón-cremallera (3) comprende un piñón (5), un eje (6), una cremallera (7) y un gatillo (8). El piñón (5) se encuentra montado sobre el eje (6), el cual está alojado en el interior del armazón (4). La cremallera (7) se extiende a lo largo de todo el mástil (1), siendo solidaria a éste. La cremallera (7) es compartida por las tres barras-soporte (2) situadas a distintas alturas sobre el 15 mástil (1). El eje (6) pue~e ser accionado mediante una llave apropiada, donde el giro de este eje (6), y por consiguiente del piñón (5), provocan el desplazamiento vertical de la barra-soporte (2). El gatillo (8) es de accionamiento manual y se encuentra articulado al armazón (4). Uno de los extremos del gatillo (8) hace contacto con el diente correspondiente del piñón (5), evitando así el giro no 20 deseado de dicho piñón (5). La barra-soporte (2) presenta en toda su longitud una multitud de agujeros (9) destinados a la ubicación de instrumentos de medida. CLAIMS 1. Support for equipment for measuring environmental parameters, of the type that allows adjusting the height of the measurement equipment, consisting of 5 a mast (1) placed in a vertical position and three support bars (2 ) equal located in a horizontal position, essentially characterized in that the support bar (2) can move vertically along the mast (1) by means of a rack and pinion mechanism (3). The support bar (2) is interrupted in its middle part by the frame (4) of the rack-pinion-10 mechanism (3). The rack and pinion mechanism (3) comprises a pinion (5), a shaft (6), a rack (7) and a trigger (8). The pinion (5) is mounted on the shaft (6), which is housed inside the frame (4). The rack (7) extends along the entire length of the mast (1), being integral with it. The rack (7) is shared by the three support bars (2) located at different heights on the mast (1). The shaft (6) can be actuated by means of an appropriate key, where the rotation of this shaft (6), and consequently of the pinion (5), causes the vertical displacement of the support bar (2). The trigger (8) is manually operated and is articulated to the frame (4). One of the ends of the trigger (8) makes contact with the corresponding tooth of the pinion (5), thus avoiding the unwanted rotation of said pinion (5). The support bar (2) has a multitude of holes (9) throughout its length for the location of measuring instruments.
ES201600846A 2016-09-29 2016-09-29 Support at three heights for equipment for measuring environmental parameters Active ES2661542B1 (en)

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Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP0163438A2 (en) * 1984-05-22 1985-12-04 Paul Lloyd Dixon Height adjustable apparatus
US5232035A (en) * 1991-08-15 1993-08-03 Adams Jr Joseph E Tire changing tool and workstand
US5971348A (en) * 1996-10-03 1999-10-26 Corning Incorporated Adjustable stand for a cantilevered load

Patent Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP0163438A2 (en) * 1984-05-22 1985-12-04 Paul Lloyd Dixon Height adjustable apparatus
US5232035A (en) * 1991-08-15 1993-08-03 Adams Jr Joseph E Tire changing tool and workstand
US5971348A (en) * 1996-10-03 1999-10-26 Corning Incorporated Adjustable stand for a cantilevered load

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