Granulation Project 2 MECHANICAL SYSTEMS IN BUILDINGS IBN SENA HOSPITAL IBN SENA HOSPITAL Prepared by: Abdullah Hasayen Mazin Khalid Moath Ayyash Mohammad.

Slides:



Advertisements
Similar presentations
AN-NAJAH NATIONAL UNIVERSITY FACULTY OF ENGINEERING DEPARTMENT OF MECHANICAL ENGINEERING.
Advertisements

Five star hotel in Nablus
Heating, Ventilating, and Air-Conditioning
HVAC 101 The Basics of Heating, Ventilation and Air Conditioning
Heating, Ventilating, and Air-Conditioning (HVAC)
MECHANICAL SYSTEMS IN BUILDINGS selfeEt mall selfeEt mall Prepared by: Bilal Qzq Abdel Rahman Abu Salama Oraib Awad Moamen Hatab Supervisor: Dr. Ramiz.
Components of HVAC System
Heating and Air Conditioning I
AN-NAJAH NATIONAL UNIVERSITY FACULTY OF ENGINEERING DEPARTEMENT OF MECHANICAL ENGINEERING MECHANICAL SYSTEMS OF AL-OYOON HOSPITAL-NABLUS Graduation Project.
Introduction Enthalpy Wheel
The Three Tiered Philosophy
INTD 51 human environments building systems. heating/ventilation/air-conditioning (HVAC) maintain a comfortable indoor climate control temperature and.
HVAC SYSTEM DESIGN Businessmen Club Supervisor: Dr Salameh Abdulfattah
1 Meeting ASHRAE Fundamentals, Standard 55 & 62.1 with Chilled Beams Displacement Ventilation.
Outlines:-Outlines:- Environmental Design. Architectural Design Modifications. Structural Design Quantity compare Lighting and Mechanical Design.
PROJECT NAME: “Mechanical System for school of optical” (An-Najah university College) Prep ared by: Abdulla Alawneh Islam Salahat Mohammed Jaber Majdi.
AN-NAJAH NATIONAL UNIVERSITY FACULTY OF ENGINEERING MECHANICAL ENGINEERING DEPARTMANT Mechanical Systems for jenin headquarter building Supervisor:The.
The students: Mohammad Shabaro ( ) Mahmoud Mousa ( ) Yosri Asfour ( ) Supervisor: Dr. Iyad Assaf 1.
Keeping them Straight October 11,  Piping components come in two categories  Building Piping Components  Underground Piping Components.
Heat Loss and Gain Heat Loss and Gain
HVAC523 Heat Gain. Heat First law of thermal dynamics states that HEAT TRAVELS FROM HOT TO COLD. 95 degree outside air will flow through the building.
Lecture Objectives: Model HVAC Systems –HW3 Asignemnet Learn about eQUEST software –How to conduct parametric analysis of building envelope.
AIR QUANTITY REQUIRED TO TRANSFER HEAT IN A FORCED AIR SYSTEM In all four mechanical systems considered, the transfer of heat, either by taking it out.
1 HVACR116 – Trade Skills Plumbing, HVAC, Electrical Overview.
Residential Construction Unit 5 Energy Efficiencies and Mechanicals Mr. Todzia.
Ductwork Systems and Supply Arch 432. What You Need To Know Become familiar with the materials sizing ductwork Understand sizing units.
Prepared by : Hashem Ihasn Janajreh Mohammad Abu Sarah Sari Khaled Sobeh Ahmad Medhat Attiyah Supervisor : Dr. Iyad.
Lecture Objectives: Specify Exam Time Finish with HVAC systems –HW3 Introduce Projects 1 & 2 –eQUEST –other options.
Drugs Addicts Rehabilitation Center
Prepared by : Ameed mahmoud qzaih Mohammad mustafa yaseen Samer abdelrazaq khanfar Supervisor : Dr. Eyad Assaf.
Prepared by : Abd Aljabbar Rabaya Ammar Salloum Sameh Shawahni Supervisor : Dr. Eyad Assaf 1.
HVACR416 - Design Heat Loss / Heat Gain Part 1. Why? The primary function of Air Conditioning is to maintain conditions that are… o Conductive to human.
Graduation Project Mechanical system for Building of_ al Kuwait Surgery Specialized Hospital.
By : Bara Thaher Mohammad Sameer Osama Joma’a Supervisor : Dr Sameh Mona Climate Responsive Design For Administrative Building In different climate zones.
HEATING AND COOLING SYSTEMS
Ductwork Systems and Supply Arch 432. What You Need To Know Become familiar with the materials sizing ductwork Understand sizing units.
VENTILATION AND FENESTRATION
ESS KAY CONSULTANTS MEP CONSULTANTS. WHAT IS MEP ??? MECHANICAL ELECTRICAL MEP PLUMBING.
.  1.Leaderships in energy and environmental design (LEED). 2.Khalifa tower Environment friendly. 3.Elevators of Khalifa tower. 4.Evacuation and fire.
Chapter 14 Heating, Ventilation & Air conditioning (hvac)
Maria’s Restaurant Chapter 2 Section 9
}السلام عليكم ورحمة الله وبركاته{
Under floor Heating Graduation Project submitted By: Adli Mosleh
Heating Ventilation and Air Conditioning
Heating Ventilating and Air Conditioning
Redesigning of a Primary school
PROJECT NAME: “Mechanical System for school of optical” (An-Najah university College) Prepared by: Abdulla Alawneh Islam Salahat Mohammed.
HVAC SYSTEM DESIGN ALMAQASED HOSPITAL
Heat Loss and Gain Heat Transfer Winter Heat Loss Summer Heat Gain
Al-Najah National University Mechanical engineering department
Conduction Cooling Loads
Mechanical System For AL-Rehan Hospital
Electrical Gas Plumbing Heating & Cooling
Graduation Project – 2 Mini-Mall
ME444 ENGINEERING PIPING SYSTEM DESIGN
Psychrometry & Air-conditioning
Course Name: Air-conditioning: Introduction Prof. A. D. Kale
Heat Loss and Gain Heat Loss and Gain
Heat Loss and Gain Heat Loss and Gain
FBE03: Building Construction & Science
Heat Loss and Gain Civil Engineering and Architecture
Lecture Objectives Psychrometrics Define Heating and Cooling Loads
PROJECT NAME: HVAC AND MECHANICAL SYSTEMS DESIGN
Building standards Mr. Da Silva.
Mechanical Systems Design for Al-Bahrain Hospital
Mechanical Systems For Al-Zakah Hospital
Heat Loss and Gain Heat Loss and Gain
Maria’s Restaurant Chapter 2 Section 9
Heat Loss and Gain Heat Loss and Gain
Presentation transcript:

Granulation Project 2 MECHANICAL SYSTEMS IN BUILDINGS IBN SENA HOSPITAL IBN SENA HOSPITAL Prepared by: Abdullah Hasayen Mazin Khalid Moath Ayyash Mohammad Abu Al-Rub Supervisor: Dr. Ramiz Al Khaldi

In our project we will design the following mechanical systems:  Heat Ventilation and air conditioning (HVAC) system in IBN SENA Hospital.  Plumping system in IBN SENA Hospital.  Fire fighting in IBN SENA Hospital.

IBN SENA HOSPITAL building located in jenin city, which consists of four floors. Basement floor, ground floor, first floor, and second floor. Each floors have more one room such as patients rooms, doctors rooms, isolations rooms, and ICU rooms IBN SENA HOSPITAL building located in jenin city, which consists of four floors. Basement floor, ground floor, first floor, and second floor. Each floors have more one room such as patients rooms, doctors rooms, isolations rooms, and ICU rooms. Building Description

HVAC means that Heat Ventilation and Air Conditioning system. The main objective of air conditioning is to maintain the environment in enclosed space at conditions that achieve the feeling of comfort to human. HVAC System

winter: Outside temperature (To) be 5.7 ˚C. Inside temperature (Ti) be 22 ˚C. Outside Relative humidity (Ф o ) is 72%. Inside Relative humidity (Ф i ) is 50%. Outside Moisture content (W o ) is 8.2 g of water/ Kg of dry air. Inside Moisture content (W i ) is 4.2 g of water/ Kg of dry air. SUMMER : Outside temperature (To) be 31.9 ˚C. Inside temperature (Ti) be 24 ˚C. Outside Relative humidity (Ф o ) is 44. Inside Relative humidity (Ф i ) is 50%. Outside Moisture content (W o ) is 12.5 g of water/ Kg of dry air. Inside Moisture content (W i ) is 9.4 g of water/ Kg of dry air Inside and Outside Condition

The Required UVER All Heat Transfer

The following equations were used to calculated the heating load: Q s,cond = U A (T in – T o ). Q s,vent = 1.2 V vent (T in – T o ). Q l,vent = 3 V vent (W i - W o ).  Q total = Q s,cond + Q s,vent +Q l,vent. Heating Load Equations

No. of Q (total) Ton Q (total) CFM Floor kw Basement floor Ground floor First Floor Second Floor

The boiler is the main source of heating process, selection of boiler depends on its capacity. selection of boilers from De Dietrich company. The total amount of heat in our project equal to KW. Total heating = [Q) Heating load +Q) domestic ]*1.1 Total heating = ( )*1.1 = 1166 KW. From De Dietrich catalogue we choose the boiler GT530 DIEMATIC-m3

Cooling load calculated at summer season. Cooling design conditions (in summer): Outside temperature (T o ) be 31.9˚C. Inside temperature (T i ) be 24 ˚C. Outside Relative humidity (Ф o ) is 44%. Inside Relative humidity (Ф i ) is 50%. Outside Moisture content (W o ) is 12.5 g of water/ Kg of dry air. Inside Moisture content (W i ) is 9.4 g of water/ Kg of dry air. The wind speed at JENIN is (5 m/s). Cooling Load

 Qs = U * A * CLTD corc CLTD coro = ( CLTD + LM ) K +( Tin ) + ( To – 29.4 ). Qs) transmitted = A * SHG * SC * CLF. Qs) convection = U * A * ( CLTD ) correction. Qs) vent = 1.2 *A * ( To – T in ). Q latent = 3 * A ( W o –W in )  Qs) people = qs * n * CLF Ql) people = ql * n Qs) lighting = W * CLF Qs) equipment = qs * CLF Ql) equipment = ql Cooling Equations

Q : heat loss ( watt). U : over all heat transfer coefficient (w/m2.k). Tin : inside temperature (C). To : outside temperature ( C ). LM : Latitude correction factor. SHG: Solar heat gain. SC :shading coefficient. CLF : cooling load factor. CLTDcorr : The correction of cooling load temperature difference. n: number of people. W: lighting capacity. Q vent : the heat losses due to sensible ventilation. Definition for term of Previous Equations

No. of Q (total) Ton Q (total) CFM Floor kw Basement floor Ground floor First Floor Second Floor

The chiller is the main source of cooling process, our selection depends on PETRA COMPANY. The Total sum of cooling load =225.87*1.1= Ton So we select 435 ton R 134-a chiller it's manufactured with two compressors and with the same compressors type. The Chiller Code is: WPS a S

 Grills are calculated and distributed uniformly.  The duct is drawn and distributed before Calculations  The sensible heat of floor is calculated.  The initial velocity is 5 m/s.  And then we use ductulator software As shown in figure.

 The total cooling load was calculated for the floor.  The mass flow rate for the water calculated (m).  The pressure head was estimated in (Kpa).  The longest loop from the boiler to the far fan coil unit and return to the boiler was calculated multiplying by (1.5) due to fittings.  The pressure head per unit length is calculated and it should be between range from (200< ∆p/L<550).  Then the diameter of pipe entering to the floor is estimated

The fan coils units are selected from PETRA COMPANY, the catalogue of Petra Company are used to selections depending on the air flow rate (cfm) Selection Code from (catalogue I): This code from (catalogue I) used to selection the flow rate from (200 cfm to 1200 cfm). Fan coil for first room in second floor: V circulation = 476L\s = CFM, we select DC10 FCU..

There are many type of fixture that used in the building and there size of every pipe in the fixture are establishing from the international standard code. Plumping System in Building

The plumping fixture unit in building Type of fixture No. of fixture Size of pipe (in) Water closet ( w.c ) 51/2, 3/8 Lavatory21/2, 3/8 Kitchen sink21/2 Shower head41/2

In potable water system : 1-collector system were used in design of plumping system. 2-PVC were used for cold water services pipes in building. 3- CPVC were used for hot water services pipes in building.

There are many type of fixture that used in the building and there sizes of every pipe in the fixture are mentioned, they are establishing from the international standard code. Drainage System in the Building

Type of fixtureNo.of fixtureSize of pipe(in) Water closet 44 Lavatory 12 Kitchen sink 32 Shower head 22 Floor drain 32 Drainage Fixture Unit in the Building

The design of drainage system applied as follows : 1) Every stacks contains many fixture are groups and there are many no. of stacks in each floor, and every stack connected to the stories of the building because it is easily to work and collect waste, soil water from all stories. 2) The vent design of the stack pipes equal 2 in until reach the last floor it becomes equal 4 in, so that to obtain a good ventilation to drainage system in the building.

3)the floor drain were put in path room and kitchen it is for collecting waste water from drainage system and the wash water of each floor and connect to stack directly. 4) Many manholes were put in the design because they are used for collecting the all drainage water from stack and connected to main house drain from municipality for push drainage water system to the municipality net pipe.

Fire protection is the prevention and reduction of hazards associated with fire Fire protection has major goals : Life safety. Life safety. property protection. property protection. Fire Protection

The AFP falls into two categories.  Fire suppression: The fire is extinguished by manual or automatic means, such as a fire extinguisher.  Fire detection: The fire is detected either by locating the smoke or heat, and an alarm is sounded to enable emergency evacuation as well as to dispatch the local fire department. Active Fire Protection