HP HPE0-J82 : HPE Storage Architect

  • Exam Code: HPE0-J82
  • Exam Name: HPE Storage Architect
  • Updated: Jun 28, 2026
  • Q & A: 82 Questions and Answers

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HPE Storage Architect Sample Questions:

1. An Infrastructure Planner is reviewing an HPE Alletra MP sizing assessment.
Current Metrics:
Physical Used: 240 TB
Logical Used: 1.1 PB
Current Reduction Ratio: 4.6:1
Forecast Growth: 35% Annually
Which THREE sizing principles should be followed? (Choose 3.)

A) Future sizing should be based primarily on physical consumption and projected growth
B) Performance growth should be considered independently from capacity growth
C) Logical consumption alone should determine hardware purchases
D) Existing reduction ratios should be validated rather than assumed to remain constant
E) Data reduction guarantees can be assumed across all future workloads


2. A customer is evaluating HPE GreenLake for File Storage for an AI training platform.
Application Requirements:
Linux compute cluster
15 PB of unstructured training data
POSIX compliance
Multi-GB/s throughput per node
Minimal application modifications
Which THREE architectural statements are accurate? (Choose 3.)

A) Fibre Channel is mandatory for AI environments larger than 10 PB
B) SMB provides superior performance for Linux-based AI training workloads
C) NFS over RDMA can preserve POSIX semantics while reducing traditional TCP/IP overhead
D) Existing applications can continue utilizing standard file APIs without requiring object-storage rewrites
E) RDMA-capable networking can improve throughput efficiency and reduce CPU overhead


3. An HPE InfoSight predictive analytics report identifies a rapidly deteriorating capacity forecast.
[Capacity Forecast Dashboard]
Physical Capacity Used: 560 TB
Physical Capacity Free: 34 TB
Forecasted Exhaustion: 21 Days
Application Growth: 0.9 TB/Month
Snapshot Growth: 24 TB/Month
Recent Changes:
Immutable Snapshot Policy Enabled
Retention Increased from 14 Days to 365 Days
Ransomware Protection Policy Applied
Which THREE conclusions are supported by the available telemetry? (Choose 3.)

A) Snapshot retention changes are contributing more significantly to capacity growth than application growth
B) Enabling ransomware protection automatically disables data reduction technologies
C) Retention policies should be reviewed before purchasing additional storage capacity
D) Fibre Channel congestion is preventing snapshot metadata cleanup operations
E) Long-lived immutable recovery points are likely retaining changed blocks that would otherwise be reclaimed


4. A Backup and Recovery Engineer is attempting to right-size the storage capacity for an aging hybrid array. The primary application owner claims their database only grows by 100 GB per week, yet the storage array telemetry indicates the volume's physical footprint is expanding by
1.5 TB per week.
[Telemetry Logs - Volume: Fin_DB_01]
Mon 02:00 - Array Snap Created (Retention: 30 Days)
Tue 02:00 - Array Snap Created (Retention: 30 Days)
...
[Analytics Profile]
Host Data Change Rate: 2% Daily (Highly random overwrites)
Inline Deduplication: Disabled (Encrypted Payload)
Space Reclamation (UNMAP): Enabled & Active
Which TWO diagnostic conclusions accurately explain the massive discrepancy between the application owner's perceived growth and the actual physical capacity consumption? (Choose 2.)

A) The application's 2% daily random overwrite rate forces the array's 30-day snapshot retention policy to permanently lock massive amounts of modified physical blocks
B) The host application is transmitting an encrypted payload, which mathematically neutralizes the storage array's ability to deduplicate the snapshot differentials
C) The application owner's calculation of 100 GB/week represents pure logical net-new data insertion, ignoring the storage-level retention overhead of their own highly volatile overwrites
D) The Space Reclamation (UNMAP) protocol is malfunctioning, trapping deleted database tables as
"active" physical blocks on the backend storage
E) The storage controllers are suffering from severe CPU contention, which artificially inflates the physical capacity metrics reported to the telemetry engine


5. A Storage Procurement Specialist is reviewing an HPE InfoSight wellness report for a recently deployed entry-level all-NVMe storage array. The customer purchased top-tier PCIe Gen4 NVMe drives (rated at 7,000 MB/s read throughput), but the array is capping out at half that speed per drive.
[InfoSight Wellness Report - Hardware Bottleneck]
Component: Drive Enclosure 01, Slots 1-12
Drive Type: 3.84TB U.2 NVMe SSD (PCIe Gen4 x4)
Observed Peak Drive Throughput: ~3,400 MB/s per drive
Root Cause: Backplane Interface Negotiation Downgrade
Based on the telemetry provided, what is the specific architectural hardware limitation causing the drives to operate at half their rated throughput?

A) The drives lack the mandatory Advanced Data Services E-LTU license required to unlock the full Gen4 PCIe bandwidth capabilities
B) The U.2 NVMe drives are configured in a single-port mode, immediately halving their available throughput to the storage controllers
C) The array's internal drive backplane is only physically wired or negotiated for PCIe Gen3, restricting the Gen4 x4 drives to a maximum theoretical bandwidth of roughly 4 GB/s
D) The storage array's internal SAS expander is artificially throttling the NVMe drives to match the
12Gbps speed limit of the adjacent legacy SAS drives


Solutions:

Question # 1
Answer: A,B,D
Question # 2
Answer: C,D,E
Question # 3
Answer: A,C,E
Question # 4
Answer: A,C
Question # 5
Answer: C

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